SPR-502 Search Results


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DSMZ escherichia coli
Figure 6. E. coli inactivation on AgNPs–TiO2 ceramic tiles under low intensity solar simulated light (50 mW/cm2) at different E. coli initial concentrations.
Escherichia Coli, supplied by DSMZ, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/SPR-502/10__3390_slash_surfaces3010002-74-9-22?v=DSMZ
Average 96 stars, based on 1 article reviews
escherichia coli - by Bioz Stars, 2026-08
96/100 stars
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HIRA CRISPRa kit CRISPR gene activation of human histone cell cycle regulator
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AFG3L2 CRISPRa kit CRISPR gene activation of human AFG3 like matrix AAA peptidase subunit 2
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Ap3m2 CRISPRa kit CRISPR gene activation of mouse adaptor related protein complex 3 mu 2 subunit
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FCRLB CRISPRa kit CRISPR gene activation of human Fc receptor like B
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C1orf131 CRISPRa kit CRISPR gene activation of human chromosome 1 open reading frame 131
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Monoclonal mouse antibody, cultured in vitro under conditions free from animal-derived components.
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A powerful 1-step cleaner and disinfectant that starts killing on contact, Protex® Ultra eliminates 99.9% of bacteria in 15 seconds and disinfects in just 4 minutes. It is effective against a broad spectrum of pathogens,
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CRISPR/Cas9 KO Plasmids consists of TMEM95-specific 20 nt guide RNA sequences derived from the GeCKO (v2) library. For CRISPR gene knockout, gRNA sequences direct the Cas9 protein to induce a site-specific double strand break (DSB)
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CRISPR/Cas9 KO Plasmids consists of RWDD4A-specific 20 nt guide RNA sequences derived from the GeCKO (v2) library. For CRISPR gene knockout, gRNA sequences direct the Cas9 protein to induce a site-specific double strand break (DSB)
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Target species: mouse. CRISPR/Cas9 KO Plasmids consists of Olfr1502-specific 20 nt guide RNA sequences derived from the GeCKO (v2) library. For CRISPR gene knockout, gRNA sequences direct the Cas9 protein to induce a site-specific double
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CRISPR/Cas9 KO Plasmids consists of EVC2-specific 20 nt guide RNA sequences derived from the GeCKO (v2) library. For CRISPR gene knockout, gRNA sequences direct the Cas9 protein to induce a site-specific double strand break (DSB)
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Image Search Results


Figure 6. E. coli inactivation on AgNPs–TiO2 ceramic tiles under low intensity solar simulated light (50 mW/cm2) at different E. coli initial concentrations.

Journal: Surfaces

Article Title: Digitally Printed AgNPs Doped TiO2 on Commercial Porcelain-Grès Tiles: Synergistic Effects and Continuous Photocatalytic Antibacterial Activity

doi: 10.3390/surfaces3010002

Figure Lengend Snippet: Figure 6. E. coli inactivation on AgNPs–TiO2 ceramic tiles under low intensity solar simulated light (50 mW/cm2) at different E. coli initial concentrations.

Article Snippet: Bacterial Inactivation and Used Light Sources The samples of Escherichia coli (E. coli) were obtained from the Deutsche Sammlung von Mikroorganismen und Zellkulturen GmbH (DSMZ) ATCC23716, Braunschweig, Germany, to test the antibacterial activity of the Ag-coated tiles.

Techniques:

Figure 8. E. coli inactivation on ceramic tiles under low intensity solar light (50 mW/cm2).

Journal: Surfaces

Article Title: Digitally Printed AgNPs Doped TiO2 on Commercial Porcelain-Grès Tiles: Synergistic Effects and Continuous Photocatalytic Antibacterial Activity

doi: 10.3390/surfaces3010002

Figure Lengend Snippet: Figure 8. E. coli inactivation on ceramic tiles under low intensity solar light (50 mW/cm2).

Article Snippet: Bacterial Inactivation and Used Light Sources The samples of Escherichia coli (E. coli) were obtained from the Deutsche Sammlung von Mikroorganismen und Zellkulturen GmbH (DSMZ) ATCC23716, Braunschweig, Germany, to test the antibacterial activity of the Ag-coated tiles.

Techniques:

Figure 11. Plausible mechanistic pathways for the photocatalytic inactivation of E. coli on AgNPs–TiO2 ceramic tiles. SPR, surface plasmon resonance.

Journal: Surfaces

Article Title: Digitally Printed AgNPs Doped TiO2 on Commercial Porcelain-Grès Tiles: Synergistic Effects and Continuous Photocatalytic Antibacterial Activity

doi: 10.3390/surfaces3010002

Figure Lengend Snippet: Figure 11. Plausible mechanistic pathways for the photocatalytic inactivation of E. coli on AgNPs–TiO2 ceramic tiles. SPR, surface plasmon resonance.

Article Snippet: Bacterial Inactivation and Used Light Sources The samples of Escherichia coli (E. coli) were obtained from the Deutsche Sammlung von Mikroorganismen und Zellkulturen GmbH (DSMZ) ATCC23716, Braunschweig, Germany, to test the antibacterial activity of the Ag-coated tiles.

Techniques: SPR Assay