asm¬b  (ATCC)


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    ATCC asm¬b
    Asm¬B, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    bacillus subtilis strain asm 1  (ATCC)


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    ATCC bacillus subtilis strain asm 1
    Bacillus Subtilis Strain Asm 1, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    radiosensitive bacterial strains asm 9  (ATCC)


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    ATCC radiosensitive bacterial strains asm 9
    The selected fractions obtained from ASM-1 extracts were evaluated for their antioxidant potential via DPPH free-radical scavenging assay ( A ), hydrogen peroxide assay ( B ). Similarly, the biofilm formation potential for both isolates (ASM-1, and <t>ASM-9)</t> are depicted in the bar graph ( C ). The data expressed here was calculated as a mean value obtained from the triplicates showing ± SDs.
    Radiosensitive Bacterial Strains Asm 9, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/result/radiosensitive bacterial strains asm 9/product/ATCC
    Average 86 stars, based on 1 article reviews
    Price from $9.99 to $1999.99
    radiosensitive bacterial strains asm 9 - by Bioz Stars, 2024-04
    86/100 stars

    Images

    1) Product Images from "Unraveling the Radioprotective Mechanisms of UV-Resistant Bacillus subtilis ASM-1 Extracted Compounds through Molecular Docking"

    Article Title: Unraveling the Radioprotective Mechanisms of UV-Resistant Bacillus subtilis ASM-1 Extracted Compounds through Molecular Docking

    Journal: Pharmaceuticals

    doi: 10.3390/ph16081139

    The selected fractions obtained from ASM-1 extracts were evaluated for their antioxidant potential via DPPH free-radical scavenging assay ( A ), hydrogen peroxide assay ( B ). Similarly, the biofilm formation potential for both isolates (ASM-1, and ASM-9) are depicted in the bar graph ( C ). The data expressed here was calculated as a mean value obtained from the triplicates showing ± SDs.
    Figure Legend Snippet: The selected fractions obtained from ASM-1 extracts were evaluated for their antioxidant potential via DPPH free-radical scavenging assay ( A ), hydrogen peroxide assay ( B ). Similarly, the biofilm formation potential for both isolates (ASM-1, and ASM-9) are depicted in the bar graph ( C ). The data expressed here was calculated as a mean value obtained from the triplicates showing ± SDs.

    Techniques Used: H2O2 Assay

    Growth and survivability rate of radiosensitive strains ( E. coli and ASM-9) under UVB radiation with no ASM-1 extracts ( A ). The second figure shows survivability of radiosensitive strains after the addition of ASM-1 extracts ( B ). The data are expressed as mean values of the triplicates ± SDs.
    Figure Legend Snippet: Growth and survivability rate of radiosensitive strains ( E. coli and ASM-9) under UVB radiation with no ASM-1 extracts ( A ). The second figure shows survivability of radiosensitive strains after the addition of ASM-1 extracts ( B ). The data are expressed as mean values of the triplicates ± SDs.

    Techniques Used:

    Growth and survivability rate of radiosensitive strains ( E. coli and ASM-9) under UVB radiation with no ASM-1 extracts ( A ). The second figure shows survivability of radiosensitive strains after the addition of ASM-1 extracts ( B ). The data are expressed as mean values of the triplicates ± SDs. ( C ) Depicts the survival of ASM 9 under UV radiation without the addition of ASM 1 extracts. Whereas, ( D ) shows the survival of ASM 9 under UV radiation after the addition of ASM 1 extracts.
    Figure Legend Snippet: Growth and survivability rate of radiosensitive strains ( E. coli and ASM-9) under UVB radiation with no ASM-1 extracts ( A ). The second figure shows survivability of radiosensitive strains after the addition of ASM-1 extracts ( B ). The data are expressed as mean values of the triplicates ± SDs. ( C ) Depicts the survival of ASM 9 under UV radiation without the addition of ASM 1 extracts. Whereas, ( D ) shows the survival of ASM 9 under UV radiation after the addition of ASM 1 extracts.

    Techniques Used:

    bacillus altitudinis asm 9  (ATCC)


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    ATCC bacillus altitudinis asm 9
    The selected fractions obtained from ASM-1 extracts were evaluated for their antioxidant potential via DPPH free-radical scavenging assay ( A ), hydrogen peroxide assay ( B ). Similarly, the biofilm formation potential for both isolates (ASM-1, and <t>ASM-9)</t> are depicted in the bar graph ( C ). The data expressed here was calculated as a mean value obtained from the triplicates showing ± SDs.
    Bacillus Altitudinis Asm 9, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/result/bacillus altitudinis asm 9/product/ATCC
    Average 86 stars, based on 1 article reviews
    Price from $9.99 to $1999.99
    bacillus altitudinis asm 9 - by Bioz Stars, 2024-04
    86/100 stars

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    1) Product Images from "Unraveling the Radioprotective Mechanisms of UV-Resistant Bacillus subtilis ASM-1 Extracted Compounds through Molecular Docking"

    Article Title: Unraveling the Radioprotective Mechanisms of UV-Resistant Bacillus subtilis ASM-1 Extracted Compounds through Molecular Docking

    Journal: Pharmaceuticals

    doi: 10.3390/ph16081139

    The selected fractions obtained from ASM-1 extracts were evaluated for their antioxidant potential via DPPH free-radical scavenging assay ( A ), hydrogen peroxide assay ( B ). Similarly, the biofilm formation potential for both isolates (ASM-1, and ASM-9) are depicted in the bar graph ( C ). The data expressed here was calculated as a mean value obtained from the triplicates showing ± SDs.
    Figure Legend Snippet: The selected fractions obtained from ASM-1 extracts were evaluated for their antioxidant potential via DPPH free-radical scavenging assay ( A ), hydrogen peroxide assay ( B ). Similarly, the biofilm formation potential for both isolates (ASM-1, and ASM-9) are depicted in the bar graph ( C ). The data expressed here was calculated as a mean value obtained from the triplicates showing ± SDs.

    Techniques Used: H2O2 Assay

    Growth and survivability rate of radiosensitive strains ( E. coli and ASM-9) under UVB radiation with no ASM-1 extracts ( A ). The second figure shows survivability of radiosensitive strains after the addition of ASM-1 extracts ( B ). The data are expressed as mean values of the triplicates ± SDs.
    Figure Legend Snippet: Growth and survivability rate of radiosensitive strains ( E. coli and ASM-9) under UVB radiation with no ASM-1 extracts ( A ). The second figure shows survivability of radiosensitive strains after the addition of ASM-1 extracts ( B ). The data are expressed as mean values of the triplicates ± SDs.

    Techniques Used:

    Growth and survivability rate of radiosensitive strains ( E. coli and ASM-9) under UVB radiation with no ASM-1 extracts ( A ). The second figure shows survivability of radiosensitive strains after the addition of ASM-1 extracts ( B ). The data are expressed as mean values of the triplicates ± SDs. ( C ) Depicts the survival of ASM 9 under UV radiation without the addition of ASM 1 extracts. Whereas, ( D ) shows the survival of ASM 9 under UV radiation after the addition of ASM 1 extracts.
    Figure Legend Snippet: Growth and survivability rate of radiosensitive strains ( E. coli and ASM-9) under UVB radiation with no ASM-1 extracts ( A ). The second figure shows survivability of radiosensitive strains after the addition of ASM-1 extracts ( B ). The data are expressed as mean values of the triplicates ± SDs. ( C ) Depicts the survival of ASM 9 under UV radiation without the addition of ASM 1 extracts. Whereas, ( D ) shows the survival of ASM 9 under UV radiation after the addition of ASM 1 extracts.

    Techniques Used:

    radiosensitive bacterial strains asm 9  (ATCC)


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    ATCC radiosensitive bacterial strains asm 9
    Radiosensitive Bacterial Strains Asm 9, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    strain asm  (ATCC)


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    ATCC strain asm
    The selected fractions obtained from ASM-1 extracts were evaluated for their antioxidant potential via DPPH free-radical scavenging assay ( A ), hydrogen peroxide assay ( B ). Similarly, the biofilm formation potential for both isolates (ASM-1, and <t>ASM-9)</t> are depicted in the bar graph ( C ). The data expressed here was calculated as a mean value obtained from the triplicates showing ± SDs.
    Strain Asm, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/result/strain asm/product/ATCC
    Average 86 stars, based on 1 article reviews
    Price from $9.99 to $1999.99
    strain asm - by Bioz Stars, 2024-04
    86/100 stars

    Images

    1) Product Images from "Unraveling the Radioprotective Mechanisms of UV-Resistant Bacillus subtilis ASM-1 Extracted Compounds through Molecular Docking"

    Article Title: Unraveling the Radioprotective Mechanisms of UV-Resistant Bacillus subtilis ASM-1 Extracted Compounds through Molecular Docking

    Journal: Pharmaceuticals

    doi: 10.3390/ph16081139

    The selected fractions obtained from ASM-1 extracts were evaluated for their antioxidant potential via DPPH free-radical scavenging assay ( A ), hydrogen peroxide assay ( B ). Similarly, the biofilm formation potential for both isolates (ASM-1, and ASM-9) are depicted in the bar graph ( C ). The data expressed here was calculated as a mean value obtained from the triplicates showing ± SDs.
    Figure Legend Snippet: The selected fractions obtained from ASM-1 extracts were evaluated for their antioxidant potential via DPPH free-radical scavenging assay ( A ), hydrogen peroxide assay ( B ). Similarly, the biofilm formation potential for both isolates (ASM-1, and ASM-9) are depicted in the bar graph ( C ). The data expressed here was calculated as a mean value obtained from the triplicates showing ± SDs.

    Techniques Used: H2O2 Assay

    Growth and survivability rate of radiosensitive strains ( E. coli and ASM-9) under UVB radiation with no ASM-1 extracts ( A ). The second figure shows survivability of radiosensitive strains after the addition of ASM-1 extracts ( B ). The data are expressed as mean values of the triplicates ± SDs.
    Figure Legend Snippet: Growth and survivability rate of radiosensitive strains ( E. coli and ASM-9) under UVB radiation with no ASM-1 extracts ( A ). The second figure shows survivability of radiosensitive strains after the addition of ASM-1 extracts ( B ). The data are expressed as mean values of the triplicates ± SDs.

    Techniques Used:

    Growth and survivability rate of radiosensitive strains ( E. coli and ASM-9) under UVB radiation with no ASM-1 extracts ( A ). The second figure shows survivability of radiosensitive strains after the addition of ASM-1 extracts ( B ). The data are expressed as mean values of the triplicates ± SDs. ( C ) Depicts the survival of ASM 9 under UV radiation without the addition of ASM 1 extracts. Whereas, ( D ) shows the survival of ASM 9 under UV radiation after the addition of ASM 1 extracts.
    Figure Legend Snippet: Growth and survivability rate of radiosensitive strains ( E. coli and ASM-9) under UVB radiation with no ASM-1 extracts ( A ). The second figure shows survivability of radiosensitive strains after the addition of ASM-1 extracts ( B ). The data are expressed as mean values of the triplicates ± SDs. ( C ) Depicts the survival of ASM 9 under UV radiation without the addition of ASM 1 extracts. Whereas, ( D ) shows the survival of ASM 9 under UV radiation after the addition of ASM 1 extracts.

    Techniques Used:

    bacillus altitudinis asm 9  (ATCC)


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    ATCC bacillus altitudinis asm 9
    Bacillus Altitudinis Asm 9, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    86/100 stars

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    radioresistant asm 1 strain  (ATCC)


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    ATCC radioresistant asm 1 strain
    The phylogenetic tree was constructed for <t>ASM-1</t> using the Neighbor-Joining approach using Molecular Evolutionary Genetics Analysis (MEGA-X) software with a bootstrap value (1000 replicates) of 100 to Bacillus subtilis strain ASM-1(OK559666).
    Radioresistant Asm 1 Strain, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/result/radioresistant asm 1 strain/product/ATCC
    Average 86 stars, based on 1 article reviews
    Price from $9.99 to $1999.99
    radioresistant asm 1 strain - by Bioz Stars, 2024-04
    86/100 stars

    Images

    1) Product Images from "Unraveling the Radioprotective Mechanisms of UV-Resistant Bacillus subtilis ASM-1 Extracted Compounds through Molecular Docking"

    Article Title: Unraveling the Radioprotective Mechanisms of UV-Resistant Bacillus subtilis ASM-1 Extracted Compounds through Molecular Docking

    Journal: Pharmaceuticals

    doi: 10.3390/ph16081139

    The phylogenetic tree was constructed for ASM-1 using the Neighbor-Joining approach using Molecular Evolutionary Genetics Analysis (MEGA-X) software with a bootstrap value (1000 replicates) of 100 to Bacillus subtilis strain ASM-1(OK559666).
    Figure Legend Snippet: The phylogenetic tree was constructed for ASM-1 using the Neighbor-Joining approach using Molecular Evolutionary Genetics Analysis (MEGA-X) software with a bootstrap value (1000 replicates) of 100 to Bacillus subtilis strain ASM-1(OK559666).

    Techniques Used: Construct, Software

    Survivability rate determination for Bacillus subtilis strain ASM-1 under UVB radiation ( A ), and Mitomycin-C ( B ). The data is calculated and expressed from the average of three replicates ± SDs.
    Figure Legend Snippet: Survivability rate determination for Bacillus subtilis strain ASM-1 under UVB radiation ( A ), and Mitomycin-C ( B ). The data is calculated and expressed from the average of three replicates ± SDs.

    Techniques Used:

    The selected fractions obtained from ASM-1 extracts were evaluated for their antioxidant potential via DPPH free-radical scavenging assay ( A ), hydrogen peroxide assay ( B ). Similarly, the biofilm formation potential for both isolates (ASM-1, and ASM-9) are depicted in the bar graph ( C ). The data expressed here was calculated as a mean value obtained from the triplicates showing ± SDs.
    Figure Legend Snippet: The selected fractions obtained from ASM-1 extracts were evaluated for their antioxidant potential via DPPH free-radical scavenging assay ( A ), hydrogen peroxide assay ( B ). Similarly, the biofilm formation potential for both isolates (ASM-1, and ASM-9) are depicted in the bar graph ( C ). The data expressed here was calculated as a mean value obtained from the triplicates showing ± SDs.

    Techniques Used: H2O2 Assay

    Growth and survivability rate of radiosensitive strains ( E. coli and ASM-9) under UVB radiation with no ASM-1 extracts ( A ). The second figure shows survivability of radiosensitive strains after the addition of ASM-1 extracts ( B ). The data are expressed as mean values of the triplicates ± SDs.
    Figure Legend Snippet: Growth and survivability rate of radiosensitive strains ( E. coli and ASM-9) under UVB radiation with no ASM-1 extracts ( A ). The second figure shows survivability of radiosensitive strains after the addition of ASM-1 extracts ( B ). The data are expressed as mean values of the triplicates ± SDs.

    Techniques Used:

    A schematic representation of the stepwise extraction, fractionation, and evaluation process for the extracellular crude extracts obtained from strain ASM-1.
    Figure Legend Snippet: A schematic representation of the stepwise extraction, fractionation, and evaluation process for the extracellular crude extracts obtained from strain ASM-1.

    Techniques Used: Fractionation

    Growth and survivability rate of radiosensitive strains ( E. coli and ASM-9) under UVB radiation with no ASM-1 extracts ( A ). The second figure shows survivability of radiosensitive strains after the addition of ASM-1 extracts ( B ). The data are expressed as mean values of the triplicates ± SDs. ( C ) Depicts the survival of ASM 9 under UV radiation without the addition of ASM 1 extracts. Whereas, ( D ) shows the survival of ASM 9 under UV radiation after the addition of ASM 1 extracts.
    Figure Legend Snippet: Growth and survivability rate of radiosensitive strains ( E. coli and ASM-9) under UVB radiation with no ASM-1 extracts ( A ). The second figure shows survivability of radiosensitive strains after the addition of ASM-1 extracts ( B ). The data are expressed as mean values of the triplicates ± SDs. ( C ) Depicts the survival of ASM 9 under UV radiation without the addition of ASM 1 extracts. Whereas, ( D ) shows the survival of ASM 9 under UV radiation after the addition of ASM 1 extracts.

    Techniques Used:

    asm 1 supernatant  (ATCC)


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    ATCC asm 1 supernatant
    Asm 1 Supernatant, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    radiosensitive microbial strains bacillus altitudinis asm 9  (ATCC)


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    ATCC radiosensitive microbial strains bacillus altitudinis asm 9
    The selected fractions obtained from ASM-1 extracts were evaluated for their antioxidant potential via DPPH free-radical scavenging assay ( A ), hydrogen peroxide assay ( B ). Similarly, the biofilm formation potential for both isolates (ASM-1, and <t>ASM-9)</t> are depicted in the bar graph ( C ). The data expressed here was calculated as a mean value obtained from the triplicates showing ± SDs.
    Radiosensitive Microbial Strains Bacillus Altitudinis Asm 9, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/result/radiosensitive microbial strains bacillus altitudinis asm 9/product/ATCC
    Average 86 stars, based on 1 article reviews
    Price from $9.99 to $1999.99
    radiosensitive microbial strains bacillus altitudinis asm 9 - by Bioz Stars, 2024-04
    86/100 stars

    Images

    1) Product Images from "Unraveling the Radioprotective Mechanisms of UV-Resistant Bacillus subtilis ASM-1 Extracted Compounds through Molecular Docking"

    Article Title: Unraveling the Radioprotective Mechanisms of UV-Resistant Bacillus subtilis ASM-1 Extracted Compounds through Molecular Docking

    Journal: Pharmaceuticals

    doi: 10.3390/ph16081139

    The selected fractions obtained from ASM-1 extracts were evaluated for their antioxidant potential via DPPH free-radical scavenging assay ( A ), hydrogen peroxide assay ( B ). Similarly, the biofilm formation potential for both isolates (ASM-1, and ASM-9) are depicted in the bar graph ( C ). The data expressed here was calculated as a mean value obtained from the triplicates showing ± SDs.
    Figure Legend Snippet: The selected fractions obtained from ASM-1 extracts were evaluated for their antioxidant potential via DPPH free-radical scavenging assay ( A ), hydrogen peroxide assay ( B ). Similarly, the biofilm formation potential for both isolates (ASM-1, and ASM-9) are depicted in the bar graph ( C ). The data expressed here was calculated as a mean value obtained from the triplicates showing ± SDs.

    Techniques Used: H2O2 Assay

    Growth and survivability rate of radiosensitive strains ( E. coli and ASM-9) under UVB radiation with no ASM-1 extracts ( A ). The second figure shows survivability of radiosensitive strains after the addition of ASM-1 extracts ( B ). The data are expressed as mean values of the triplicates ± SDs.
    Figure Legend Snippet: Growth and survivability rate of radiosensitive strains ( E. coli and ASM-9) under UVB radiation with no ASM-1 extracts ( A ). The second figure shows survivability of radiosensitive strains after the addition of ASM-1 extracts ( B ). The data are expressed as mean values of the triplicates ± SDs.

    Techniques Used:

    Growth and survivability rate of radiosensitive strains ( E. coli and ASM-9) under UVB radiation with no ASM-1 extracts ( A ). The second figure shows survivability of radiosensitive strains after the addition of ASM-1 extracts ( B ). The data are expressed as mean values of the triplicates ± SDs. ( C ) Depicts the survival of ASM 9 under UV radiation without the addition of ASM 1 extracts. Whereas, ( D ) shows the survival of ASM 9 under UV radiation after the addition of ASM 1 extracts.
    Figure Legend Snippet: Growth and survivability rate of radiosensitive strains ( E. coli and ASM-9) under UVB radiation with no ASM-1 extracts ( A ). The second figure shows survivability of radiosensitive strains after the addition of ASM-1 extracts ( B ). The data are expressed as mean values of the triplicates ± SDs. ( C ) Depicts the survival of ASM 9 under UV radiation without the addition of ASM 1 extracts. Whereas, ( D ) shows the survival of ASM 9 under UV radiation after the addition of ASM 1 extracts.

    Techniques Used:

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  • asm¬b  (ATCC)
    86
    ATCC asm¬b
    Asm¬B, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    ATCC bacillus subtilis strain asm 1
    Bacillus Subtilis Strain Asm 1, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/result/bacillus subtilis strain asm 1/product/ATCC
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    ATCC radiosensitive bacterial strains asm 9
    The selected fractions obtained from ASM-1 extracts were evaluated for their antioxidant potential via DPPH free-radical scavenging assay ( A ), hydrogen peroxide assay ( B ). Similarly, the biofilm formation potential for both isolates (ASM-1, and <t>ASM-9)</t> are depicted in the bar graph ( C ). The data expressed here was calculated as a mean value obtained from the triplicates showing ± SDs.
    Radiosensitive Bacterial Strains Asm 9, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/result/radiosensitive bacterial strains asm 9/product/ATCC
    Average 86 stars, based on 1 article reviews
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    86
    ATCC bacillus altitudinis asm 9
    The selected fractions obtained from ASM-1 extracts were evaluated for their antioxidant potential via DPPH free-radical scavenging assay ( A ), hydrogen peroxide assay ( B ). Similarly, the biofilm formation potential for both isolates (ASM-1, and <t>ASM-9)</t> are depicted in the bar graph ( C ). The data expressed here was calculated as a mean value obtained from the triplicates showing ± SDs.
    Bacillus Altitudinis Asm 9, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/result/bacillus altitudinis asm 9/product/ATCC
    Average 86 stars, based on 1 article reviews
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    bacillus altitudinis asm 9 - by Bioz Stars, 2024-04
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    86
    ATCC strain asm
    The selected fractions obtained from ASM-1 extracts were evaluated for their antioxidant potential via DPPH free-radical scavenging assay ( A ), hydrogen peroxide assay ( B ). Similarly, the biofilm formation potential for both isolates (ASM-1, and <t>ASM-9)</t> are depicted in the bar graph ( C ). The data expressed here was calculated as a mean value obtained from the triplicates showing ± SDs.
    Strain Asm, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    ATCC radioresistant asm 1 strain
    The phylogenetic tree was constructed for <t>ASM-1</t> using the Neighbor-Joining approach using Molecular Evolutionary Genetics Analysis (MEGA-X) software with a bootstrap value (1000 replicates) of 100 to Bacillus subtilis strain ASM-1(OK559666).
    Radioresistant Asm 1 Strain, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    86
    ATCC asm 1 supernatant
    The phylogenetic tree was constructed for <t>ASM-1</t> using the Neighbor-Joining approach using Molecular Evolutionary Genetics Analysis (MEGA-X) software with a bootstrap value (1000 replicates) of 100 to Bacillus subtilis strain ASM-1(OK559666).
    Asm 1 Supernatant, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/result/asm 1 supernatant/product/ATCC
    Average 86 stars, based on 1 article reviews
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    asm 1 supernatant - by Bioz Stars, 2024-04
    86/100 stars
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    86
    ATCC radiosensitive microbial strains bacillus altitudinis asm 9
    The selected fractions obtained from ASM-1 extracts were evaluated for their antioxidant potential via DPPH free-radical scavenging assay ( A ), hydrogen peroxide assay ( B ). Similarly, the biofilm formation potential for both isolates (ASM-1, and <t>ASM-9)</t> are depicted in the bar graph ( C ). The data expressed here was calculated as a mean value obtained from the triplicates showing ± SDs.
    Radiosensitive Microbial Strains Bacillus Altitudinis Asm 9, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/result/radiosensitive microbial strains bacillus altitudinis asm 9/product/ATCC
    Average 86 stars, based on 1 article reviews
    Price from $9.99 to $1999.99
    radiosensitive microbial strains bacillus altitudinis asm 9 - by Bioz Stars, 2024-04
    86/100 stars
      Buy from Supplier

    Image Search Results


    The selected fractions obtained from ASM-1 extracts were evaluated for their antioxidant potential via DPPH free-radical scavenging assay ( A ), hydrogen peroxide assay ( B ). Similarly, the biofilm formation potential for both isolates (ASM-1, and ASM-9) are depicted in the bar graph ( C ). The data expressed here was calculated as a mean value obtained from the triplicates showing ± SDs.

    Journal: Pharmaceuticals

    Article Title: Unraveling the Radioprotective Mechanisms of UV-Resistant Bacillus subtilis ASM-1 Extracted Compounds through Molecular Docking

    doi: 10.3390/ph16081139

    Figure Lengend Snippet: The selected fractions obtained from ASM-1 extracts were evaluated for their antioxidant potential via DPPH free-radical scavenging assay ( A ), hydrogen peroxide assay ( B ). Similarly, the biofilm formation potential for both isolates (ASM-1, and ASM-9) are depicted in the bar graph ( C ). The data expressed here was calculated as a mean value obtained from the triplicates showing ± SDs.

    Article Snippet: Two radiosensitive bacterial strains ASM-9 and E. coli (ATCC 10536) were spread on TGY agar plates (90 mm) and followed by spreading of 100 µL of liquid mixture containing E-2 fraction (1 mg/mL) and supernatant (24-hour-old culture) of a radioresistant ASM-1 strain in a ratio of (2:1).

    Techniques: H2O2 Assay

    Growth and survivability rate of radiosensitive strains ( E. coli and ASM-9) under UVB radiation with no ASM-1 extracts ( A ). The second figure shows survivability of radiosensitive strains after the addition of ASM-1 extracts ( B ). The data are expressed as mean values of the triplicates ± SDs.

    Journal: Pharmaceuticals

    Article Title: Unraveling the Radioprotective Mechanisms of UV-Resistant Bacillus subtilis ASM-1 Extracted Compounds through Molecular Docking

    doi: 10.3390/ph16081139

    Figure Lengend Snippet: Growth and survivability rate of radiosensitive strains ( E. coli and ASM-9) under UVB radiation with no ASM-1 extracts ( A ). The second figure shows survivability of radiosensitive strains after the addition of ASM-1 extracts ( B ). The data are expressed as mean values of the triplicates ± SDs.

    Article Snippet: Two radiosensitive bacterial strains ASM-9 and E. coli (ATCC 10536) were spread on TGY agar plates (90 mm) and followed by spreading of 100 µL of liquid mixture containing E-2 fraction (1 mg/mL) and supernatant (24-hour-old culture) of a radioresistant ASM-1 strain in a ratio of (2:1).

    Techniques:

    Growth and survivability rate of radiosensitive strains ( E. coli and ASM-9) under UVB radiation with no ASM-1 extracts ( A ). The second figure shows survivability of radiosensitive strains after the addition of ASM-1 extracts ( B ). The data are expressed as mean values of the triplicates ± SDs. ( C ) Depicts the survival of ASM 9 under UV radiation without the addition of ASM 1 extracts. Whereas, ( D ) shows the survival of ASM 9 under UV radiation after the addition of ASM 1 extracts.

    Journal: Pharmaceuticals

    Article Title: Unraveling the Radioprotective Mechanisms of UV-Resistant Bacillus subtilis ASM-1 Extracted Compounds through Molecular Docking

    doi: 10.3390/ph16081139

    Figure Lengend Snippet: Growth and survivability rate of radiosensitive strains ( E. coli and ASM-9) under UVB radiation with no ASM-1 extracts ( A ). The second figure shows survivability of radiosensitive strains after the addition of ASM-1 extracts ( B ). The data are expressed as mean values of the triplicates ± SDs. ( C ) Depicts the survival of ASM 9 under UV radiation without the addition of ASM 1 extracts. Whereas, ( D ) shows the survival of ASM 9 under UV radiation after the addition of ASM 1 extracts.

    Article Snippet: Two radiosensitive bacterial strains ASM-9 and E. coli (ATCC 10536) were spread on TGY agar plates (90 mm) and followed by spreading of 100 µL of liquid mixture containing E-2 fraction (1 mg/mL) and supernatant (24-hour-old culture) of a radioresistant ASM-1 strain in a ratio of (2:1).

    Techniques:

    The selected fractions obtained from ASM-1 extracts were evaluated for their antioxidant potential via DPPH free-radical scavenging assay ( A ), hydrogen peroxide assay ( B ). Similarly, the biofilm formation potential for both isolates (ASM-1, and ASM-9) are depicted in the bar graph ( C ). The data expressed here was calculated as a mean value obtained from the triplicates showing ± SDs.

    Journal: Pharmaceuticals

    Article Title: Unraveling the Radioprotective Mechanisms of UV-Resistant Bacillus subtilis ASM-1 Extracted Compounds through Molecular Docking

    doi: 10.3390/ph16081139

    Figure Lengend Snippet: The selected fractions obtained from ASM-1 extracts were evaluated for their antioxidant potential via DPPH free-radical scavenging assay ( A ), hydrogen peroxide assay ( B ). Similarly, the biofilm formation potential for both isolates (ASM-1, and ASM-9) are depicted in the bar graph ( C ). The data expressed here was calculated as a mean value obtained from the triplicates showing ± SDs.

    Article Snippet: A combination of ASM-1 supernatant with E-2 fraction (50 µL in a ratio of 2:1) provided substantial protection to radiosensitive cell types, Bacillus altitudinis ASM-9 (MT722073) and E. coli (ATCC 10536), under UVB radiation.

    Techniques: H2O2 Assay

    Growth and survivability rate of radiosensitive strains ( E. coli and ASM-9) under UVB radiation with no ASM-1 extracts ( A ). The second figure shows survivability of radiosensitive strains after the addition of ASM-1 extracts ( B ). The data are expressed as mean values of the triplicates ± SDs.

    Journal: Pharmaceuticals

    Article Title: Unraveling the Radioprotective Mechanisms of UV-Resistant Bacillus subtilis ASM-1 Extracted Compounds through Molecular Docking

    doi: 10.3390/ph16081139

    Figure Lengend Snippet: Growth and survivability rate of radiosensitive strains ( E. coli and ASM-9) under UVB radiation with no ASM-1 extracts ( A ). The second figure shows survivability of radiosensitive strains after the addition of ASM-1 extracts ( B ). The data are expressed as mean values of the triplicates ± SDs.

    Article Snippet: A combination of ASM-1 supernatant with E-2 fraction (50 µL in a ratio of 2:1) provided substantial protection to radiosensitive cell types, Bacillus altitudinis ASM-9 (MT722073) and E. coli (ATCC 10536), under UVB radiation.

    Techniques:

    Growth and survivability rate of radiosensitive strains ( E. coli and ASM-9) under UVB radiation with no ASM-1 extracts ( A ). The second figure shows survivability of radiosensitive strains after the addition of ASM-1 extracts ( B ). The data are expressed as mean values of the triplicates ± SDs. ( C ) Depicts the survival of ASM 9 under UV radiation without the addition of ASM 1 extracts. Whereas, ( D ) shows the survival of ASM 9 under UV radiation after the addition of ASM 1 extracts.

    Journal: Pharmaceuticals

    Article Title: Unraveling the Radioprotective Mechanisms of UV-Resistant Bacillus subtilis ASM-1 Extracted Compounds through Molecular Docking

    doi: 10.3390/ph16081139

    Figure Lengend Snippet: Growth and survivability rate of radiosensitive strains ( E. coli and ASM-9) under UVB radiation with no ASM-1 extracts ( A ). The second figure shows survivability of radiosensitive strains after the addition of ASM-1 extracts ( B ). The data are expressed as mean values of the triplicates ± SDs. ( C ) Depicts the survival of ASM 9 under UV radiation without the addition of ASM 1 extracts. Whereas, ( D ) shows the survival of ASM 9 under UV radiation after the addition of ASM 1 extracts.

    Article Snippet: A combination of ASM-1 supernatant with E-2 fraction (50 µL in a ratio of 2:1) provided substantial protection to radiosensitive cell types, Bacillus altitudinis ASM-9 (MT722073) and E. coli (ATCC 10536), under UVB radiation.

    Techniques:

    The selected fractions obtained from ASM-1 extracts were evaluated for their antioxidant potential via DPPH free-radical scavenging assay ( A ), hydrogen peroxide assay ( B ). Similarly, the biofilm formation potential for both isolates (ASM-1, and ASM-9) are depicted in the bar graph ( C ). The data expressed here was calculated as a mean value obtained from the triplicates showing ± SDs.

    Journal: Pharmaceuticals

    Article Title: Unraveling the Radioprotective Mechanisms of UV-Resistant Bacillus subtilis ASM-1 Extracted Compounds through Molecular Docking

    doi: 10.3390/ph16081139

    Figure Lengend Snippet: The selected fractions obtained from ASM-1 extracts were evaluated for their antioxidant potential via DPPH free-radical scavenging assay ( A ), hydrogen peroxide assay ( B ). Similarly, the biofilm formation potential for both isolates (ASM-1, and ASM-9) are depicted in the bar graph ( C ). The data expressed here was calculated as a mean value obtained from the triplicates showing ± SDs.

    Article Snippet: With no extracts added, E. coli (ATCC 10536) exhibited 19.69% survivability, while strain ASM-9 showed 0.33% survivability under an energy dose of 3.390 × 10 3 J/m 2 (5 min) ( A).

    Techniques: H2O2 Assay

    Growth and survivability rate of radiosensitive strains ( E. coli and ASM-9) under UVB radiation with no ASM-1 extracts ( A ). The second figure shows survivability of radiosensitive strains after the addition of ASM-1 extracts ( B ). The data are expressed as mean values of the triplicates ± SDs.

    Journal: Pharmaceuticals

    Article Title: Unraveling the Radioprotective Mechanisms of UV-Resistant Bacillus subtilis ASM-1 Extracted Compounds through Molecular Docking

    doi: 10.3390/ph16081139

    Figure Lengend Snippet: Growth and survivability rate of radiosensitive strains ( E. coli and ASM-9) under UVB radiation with no ASM-1 extracts ( A ). The second figure shows survivability of radiosensitive strains after the addition of ASM-1 extracts ( B ). The data are expressed as mean values of the triplicates ± SDs.

    Article Snippet: With no extracts added, E. coli (ATCC 10536) exhibited 19.69% survivability, while strain ASM-9 showed 0.33% survivability under an energy dose of 3.390 × 10 3 J/m 2 (5 min) ( A).

    Techniques:

    Growth and survivability rate of radiosensitive strains ( E. coli and ASM-9) under UVB radiation with no ASM-1 extracts ( A ). The second figure shows survivability of radiosensitive strains after the addition of ASM-1 extracts ( B ). The data are expressed as mean values of the triplicates ± SDs. ( C ) Depicts the survival of ASM 9 under UV radiation without the addition of ASM 1 extracts. Whereas, ( D ) shows the survival of ASM 9 under UV radiation after the addition of ASM 1 extracts.

    Journal: Pharmaceuticals

    Article Title: Unraveling the Radioprotective Mechanisms of UV-Resistant Bacillus subtilis ASM-1 Extracted Compounds through Molecular Docking

    doi: 10.3390/ph16081139

    Figure Lengend Snippet: Growth and survivability rate of radiosensitive strains ( E. coli and ASM-9) under UVB radiation with no ASM-1 extracts ( A ). The second figure shows survivability of radiosensitive strains after the addition of ASM-1 extracts ( B ). The data are expressed as mean values of the triplicates ± SDs. ( C ) Depicts the survival of ASM 9 under UV radiation without the addition of ASM 1 extracts. Whereas, ( D ) shows the survival of ASM 9 under UV radiation after the addition of ASM 1 extracts.

    Article Snippet: With no extracts added, E. coli (ATCC 10536) exhibited 19.69% survivability, while strain ASM-9 showed 0.33% survivability under an energy dose of 3.390 × 10 3 J/m 2 (5 min) ( A).

    Techniques:

    The phylogenetic tree was constructed for ASM-1 using the Neighbor-Joining approach using Molecular Evolutionary Genetics Analysis (MEGA-X) software with a bootstrap value (1000 replicates) of 100 to Bacillus subtilis strain ASM-1(OK559666).

    Journal: Pharmaceuticals

    Article Title: Unraveling the Radioprotective Mechanisms of UV-Resistant Bacillus subtilis ASM-1 Extracted Compounds through Molecular Docking

    doi: 10.3390/ph16081139

    Figure Lengend Snippet: The phylogenetic tree was constructed for ASM-1 using the Neighbor-Joining approach using Molecular Evolutionary Genetics Analysis (MEGA-X) software with a bootstrap value (1000 replicates) of 100 to Bacillus subtilis strain ASM-1(OK559666).

    Article Snippet: Two radiosensitive bacterial strains ASM-9 and E. coli (ATCC 10536) were spread on TGY agar plates (90 mm) and followed by spreading of 100 µL of liquid mixture containing E-2 fraction (1 mg/mL) and supernatant (24-hour-old culture) of a radioresistant ASM-1 strain in a ratio of (2:1).

    Techniques: Construct, Software

    Survivability rate determination for Bacillus subtilis strain ASM-1 under UVB radiation ( A ), and Mitomycin-C ( B ). The data is calculated and expressed from the average of three replicates ± SDs.

    Journal: Pharmaceuticals

    Article Title: Unraveling the Radioprotective Mechanisms of UV-Resistant Bacillus subtilis ASM-1 Extracted Compounds through Molecular Docking

    doi: 10.3390/ph16081139

    Figure Lengend Snippet: Survivability rate determination for Bacillus subtilis strain ASM-1 under UVB radiation ( A ), and Mitomycin-C ( B ). The data is calculated and expressed from the average of three replicates ± SDs.

    Article Snippet: Two radiosensitive bacterial strains ASM-9 and E. coli (ATCC 10536) were spread on TGY agar plates (90 mm) and followed by spreading of 100 µL of liquid mixture containing E-2 fraction (1 mg/mL) and supernatant (24-hour-old culture) of a radioresistant ASM-1 strain in a ratio of (2:1).

    Techniques:

    The selected fractions obtained from ASM-1 extracts were evaluated for their antioxidant potential via DPPH free-radical scavenging assay ( A ), hydrogen peroxide assay ( B ). Similarly, the biofilm formation potential for both isolates (ASM-1, and ASM-9) are depicted in the bar graph ( C ). The data expressed here was calculated as a mean value obtained from the triplicates showing ± SDs.

    Journal: Pharmaceuticals

    Article Title: Unraveling the Radioprotective Mechanisms of UV-Resistant Bacillus subtilis ASM-1 Extracted Compounds through Molecular Docking

    doi: 10.3390/ph16081139

    Figure Lengend Snippet: The selected fractions obtained from ASM-1 extracts were evaluated for their antioxidant potential via DPPH free-radical scavenging assay ( A ), hydrogen peroxide assay ( B ). Similarly, the biofilm formation potential for both isolates (ASM-1, and ASM-9) are depicted in the bar graph ( C ). The data expressed here was calculated as a mean value obtained from the triplicates showing ± SDs.

    Article Snippet: Two radiosensitive bacterial strains ASM-9 and E. coli (ATCC 10536) were spread on TGY agar plates (90 mm) and followed by spreading of 100 µL of liquid mixture containing E-2 fraction (1 mg/mL) and supernatant (24-hour-old culture) of a radioresistant ASM-1 strain in a ratio of (2:1).

    Techniques: H2O2 Assay

    Growth and survivability rate of radiosensitive strains ( E. coli and ASM-9) under UVB radiation with no ASM-1 extracts ( A ). The second figure shows survivability of radiosensitive strains after the addition of ASM-1 extracts ( B ). The data are expressed as mean values of the triplicates ± SDs.

    Journal: Pharmaceuticals

    Article Title: Unraveling the Radioprotective Mechanisms of UV-Resistant Bacillus subtilis ASM-1 Extracted Compounds through Molecular Docking

    doi: 10.3390/ph16081139

    Figure Lengend Snippet: Growth and survivability rate of radiosensitive strains ( E. coli and ASM-9) under UVB radiation with no ASM-1 extracts ( A ). The second figure shows survivability of radiosensitive strains after the addition of ASM-1 extracts ( B ). The data are expressed as mean values of the triplicates ± SDs.

    Article Snippet: Two radiosensitive bacterial strains ASM-9 and E. coli (ATCC 10536) were spread on TGY agar plates (90 mm) and followed by spreading of 100 µL of liquid mixture containing E-2 fraction (1 mg/mL) and supernatant (24-hour-old culture) of a radioresistant ASM-1 strain in a ratio of (2:1).

    Techniques:

    A schematic representation of the stepwise extraction, fractionation, and evaluation process for the extracellular crude extracts obtained from strain ASM-1.

    Journal: Pharmaceuticals

    Article Title: Unraveling the Radioprotective Mechanisms of UV-Resistant Bacillus subtilis ASM-1 Extracted Compounds through Molecular Docking

    doi: 10.3390/ph16081139

    Figure Lengend Snippet: A schematic representation of the stepwise extraction, fractionation, and evaluation process for the extracellular crude extracts obtained from strain ASM-1.

    Article Snippet: Two radiosensitive bacterial strains ASM-9 and E. coli (ATCC 10536) were spread on TGY agar plates (90 mm) and followed by spreading of 100 µL of liquid mixture containing E-2 fraction (1 mg/mL) and supernatant (24-hour-old culture) of a radioresistant ASM-1 strain in a ratio of (2:1).

    Techniques: Fractionation

    Growth and survivability rate of radiosensitive strains ( E. coli and ASM-9) under UVB radiation with no ASM-1 extracts ( A ). The second figure shows survivability of radiosensitive strains after the addition of ASM-1 extracts ( B ). The data are expressed as mean values of the triplicates ± SDs. ( C ) Depicts the survival of ASM 9 under UV radiation without the addition of ASM 1 extracts. Whereas, ( D ) shows the survival of ASM 9 under UV radiation after the addition of ASM 1 extracts.

    Journal: Pharmaceuticals

    Article Title: Unraveling the Radioprotective Mechanisms of UV-Resistant Bacillus subtilis ASM-1 Extracted Compounds through Molecular Docking

    doi: 10.3390/ph16081139

    Figure Lengend Snippet: Growth and survivability rate of radiosensitive strains ( E. coli and ASM-9) under UVB radiation with no ASM-1 extracts ( A ). The second figure shows survivability of radiosensitive strains after the addition of ASM-1 extracts ( B ). The data are expressed as mean values of the triplicates ± SDs. ( C ) Depicts the survival of ASM 9 under UV radiation without the addition of ASM 1 extracts. Whereas, ( D ) shows the survival of ASM 9 under UV radiation after the addition of ASM 1 extracts.

    Article Snippet: Two radiosensitive bacterial strains ASM-9 and E. coli (ATCC 10536) were spread on TGY agar plates (90 mm) and followed by spreading of 100 µL of liquid mixture containing E-2 fraction (1 mg/mL) and supernatant (24-hour-old culture) of a radioresistant ASM-1 strain in a ratio of (2:1).

    Techniques:

    The selected fractions obtained from ASM-1 extracts were evaluated for their antioxidant potential via DPPH free-radical scavenging assay ( A ), hydrogen peroxide assay ( B ). Similarly, the biofilm formation potential for both isolates (ASM-1, and ASM-9) are depicted in the bar graph ( C ). The data expressed here was calculated as a mean value obtained from the triplicates showing ± SDs.

    Journal: Pharmaceuticals

    Article Title: Unraveling the Radioprotective Mechanisms of UV-Resistant Bacillus subtilis ASM-1 Extracted Compounds through Molecular Docking

    doi: 10.3390/ph16081139

    Figure Lengend Snippet: The selected fractions obtained from ASM-1 extracts were evaluated for their antioxidant potential via DPPH free-radical scavenging assay ( A ), hydrogen peroxide assay ( B ). Similarly, the biofilm formation potential for both isolates (ASM-1, and ASM-9) are depicted in the bar graph ( C ). The data expressed here was calculated as a mean value obtained from the triplicates showing ± SDs.

    Article Snippet: Furthermore, the radioprotective properties of the extracted bioactive compounds isolated from strain ASM-1 were also assessed using a new approach, i.e., protecting radiosensitive microbial strains Bacillus altitudinis ASM-9 and E. coli (ATCC 10536) from radiation-induced damage.

    Techniques: H2O2 Assay

    Growth and survivability rate of radiosensitive strains ( E. coli and ASM-9) under UVB radiation with no ASM-1 extracts ( A ). The second figure shows survivability of radiosensitive strains after the addition of ASM-1 extracts ( B ). The data are expressed as mean values of the triplicates ± SDs.

    Journal: Pharmaceuticals

    Article Title: Unraveling the Radioprotective Mechanisms of UV-Resistant Bacillus subtilis ASM-1 Extracted Compounds through Molecular Docking

    doi: 10.3390/ph16081139

    Figure Lengend Snippet: Growth and survivability rate of radiosensitive strains ( E. coli and ASM-9) under UVB radiation with no ASM-1 extracts ( A ). The second figure shows survivability of radiosensitive strains after the addition of ASM-1 extracts ( B ). The data are expressed as mean values of the triplicates ± SDs.

    Article Snippet: Furthermore, the radioprotective properties of the extracted bioactive compounds isolated from strain ASM-1 were also assessed using a new approach, i.e., protecting radiosensitive microbial strains Bacillus altitudinis ASM-9 and E. coli (ATCC 10536) from radiation-induced damage.

    Techniques:

    Growth and survivability rate of radiosensitive strains ( E. coli and ASM-9) under UVB radiation with no ASM-1 extracts ( A ). The second figure shows survivability of radiosensitive strains after the addition of ASM-1 extracts ( B ). The data are expressed as mean values of the triplicates ± SDs. ( C ) Depicts the survival of ASM 9 under UV radiation without the addition of ASM 1 extracts. Whereas, ( D ) shows the survival of ASM 9 under UV radiation after the addition of ASM 1 extracts.

    Journal: Pharmaceuticals

    Article Title: Unraveling the Radioprotective Mechanisms of UV-Resistant Bacillus subtilis ASM-1 Extracted Compounds through Molecular Docking

    doi: 10.3390/ph16081139

    Figure Lengend Snippet: Growth and survivability rate of radiosensitive strains ( E. coli and ASM-9) under UVB radiation with no ASM-1 extracts ( A ). The second figure shows survivability of radiosensitive strains after the addition of ASM-1 extracts ( B ). The data are expressed as mean values of the triplicates ± SDs. ( C ) Depicts the survival of ASM 9 under UV radiation without the addition of ASM 1 extracts. Whereas, ( D ) shows the survival of ASM 9 under UV radiation after the addition of ASM 1 extracts.

    Article Snippet: Furthermore, the radioprotective properties of the extracted bioactive compounds isolated from strain ASM-1 were also assessed using a new approach, i.e., protecting radiosensitive microbial strains Bacillus altitudinis ASM-9 and E. coli (ATCC 10536) from radiation-induced damage.

    Techniques: