human growth hormone elisa kit Search Results


92
Multi Sciences (Lianke) Biotech Co Ltd human growth hormone elisa kit
Human Growth Hormone Elisa Kit, supplied by Multi Sciences (Lianke) Biotech Co Ltd, used in various techniques. Bioz Stars score: 92/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Guangzhou JET Bio-Filtration human gh (growth hormone) elisa kit
Human Gh (Growth Hormone) Elisa Kit, supplied by Guangzhou JET Bio-Filtration, used in various techniques. Bioz Stars score: 94/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Novus Biologicals human growth hormone
Human Growth Hormone, supplied by Novus Biologicals, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Danaher Inc human gh elisa assay
Rotenone treatment reduced cell viability <t>in</t> <t>SH-SY5Y</t> wt cells more than in human autocrine GH-gained SH-SY5Y cells. A. GH secretion of SH-SY5Y following GH-pcDNA3.1 plasmid transfection was determined as 1.98 pg/mL by <t>ELISA</t> assay. B. MTT cell viability assay was performed in rotenone treated-SH-SY5Y and SK-N-AS cells with/without GH in a dose-dependent manner (0.1, 0.5, 1, 5, and 10 μM). * p < 0.05, **p < 0.01, ***p < 0.001. C. The effect of rotenone on MMP loss-induced cell death was determined by DiOC6, PI, and DAPI staining in both SH-SY5Y wt and GH+ cells. D. Cell survival assay was performed to show the effect of rotenone in a time-dependent manner in both SH-SY5Y and SK-N-AS wt (upper figure) and GH+ (lower figure) cells. E–F. The effect of 0.5 μM rotenone on anchorage-independent cell growth was examined by soft agar assay in SH-SY5Y (magnification: 40×) and SK-N-AS (magnification: 10×) cell lines. Scale bar: 200 μm. Average diameter of spheroids for both Figures E and F was analyzed by Olympus Image Analyzing program.
Human Gh Elisa Assay, supplied by Danaher Inc, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Proteintech theauthentikinetmhumangrowthhormoneelisakit
Rotenone treatment reduced cell viability <t>in</t> <t>SH-SY5Y</t> wt cells more than in human autocrine GH-gained SH-SY5Y cells. A. GH secretion of SH-SY5Y following GH-pcDNA3.1 plasmid transfection was determined as 1.98 pg/mL by <t>ELISA</t> assay. B. MTT cell viability assay was performed in rotenone treated-SH-SY5Y and SK-N-AS cells with/without GH in a dose-dependent manner (0.1, 0.5, 1, 5, and 10 μM). * p < 0.05, **p < 0.01, ***p < 0.001. C. The effect of rotenone on MMP loss-induced cell death was determined by DiOC6, PI, and DAPI staining in both SH-SY5Y wt and GH+ cells. D. Cell survival assay was performed to show the effect of rotenone in a time-dependent manner in both SH-SY5Y and SK-N-AS wt (upper figure) and GH+ (lower figure) cells. E–F. The effect of 0.5 μM rotenone on anchorage-independent cell growth was examined by soft agar assay in SH-SY5Y (magnification: 40×) and SK-N-AS (magnification: 10×) cell lines. Scale bar: 200 μm. Average diameter of spheroids for both Figures E and F was analyzed by Olympus Image Analyzing program.
Theauthentikinetmhumangrowthhormoneelisakit, supplied by Proteintech, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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R&D Systems immunosorbent assay elisa
Rotenone treatment reduced cell viability <t>in</t> <t>SH-SY5Y</t> wt cells more than in human autocrine GH-gained SH-SY5Y cells. A. GH secretion of SH-SY5Y following GH-pcDNA3.1 plasmid transfection was determined as 1.98 pg/mL by <t>ELISA</t> assay. B. MTT cell viability assay was performed in rotenone treated-SH-SY5Y and SK-N-AS cells with/without GH in a dose-dependent manner (0.1, 0.5, 1, 5, and 10 μM). * p < 0.05, **p < 0.01, ***p < 0.001. C. The effect of rotenone on MMP loss-induced cell death was determined by DiOC6, PI, and DAPI staining in both SH-SY5Y wt and GH+ cells. D. Cell survival assay was performed to show the effect of rotenone in a time-dependent manner in both SH-SY5Y and SK-N-AS wt (upper figure) and GH+ (lower figure) cells. E–F. The effect of 0.5 μM rotenone on anchorage-independent cell growth was examined by soft agar assay in SH-SY5Y (magnification: 40×) and SK-N-AS (magnification: 10×) cell lines. Scale bar: 200 μm. Average diameter of spheroids for both Figures E and F was analyzed by Olympus Image Analyzing program.
Immunosorbent Assay Elisa, supplied by R&D Systems, used in various techniques. Bioz Stars score: 94/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Elabscience Biotechnology ghrh elisa assay
A <t>GHRH</t> (1–44) expression of bacterial colonies expressing His- and His-GHRH vectors demonstrated by immunoblotting. 1 E . coli HB101 His vector clone, 2 E . coli HB101 His-GHRH vector clone. B Purified His tagged bacterial GHRH 1–44 ligand was demonstrated by immunoblotting via anti-GHRH and anti-His tag antibodies, respectively. 1 His-GHRH expressing total bacterial lysate, 2 His-GHRH expressing solubilized pellets. Eukaryotic GHRH NH2 (1–44) expression in His-GHRH vector-transfected HEK293 cells was identified by C qRT-PCR, D immunoblotting, and E immunofluorescence. 1 HEK293 wt 2 HEK293 His-transfected 3 HEK293 His-GHRH transfected. F GHRH 1–44 concentration in the media of HEK293 cells was measured by Human GHRH <t>ELISA.</t> GAPDH was used as a loading control. 18S was used as an internal control. DAPI was used to indicate the nuclei of the cells.
Ghrh Elisa Assay, supplied by Elabscience Biotechnology, used in various techniques. Bioz Stars score: 92/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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R&D Systems interpolation
A <t>GHRH</t> (1–44) expression of bacterial colonies expressing His- and His-GHRH vectors demonstrated by immunoblotting. 1 E . coli HB101 His vector clone, 2 E . coli HB101 His-GHRH vector clone. B Purified His tagged bacterial GHRH 1–44 ligand was demonstrated by immunoblotting via anti-GHRH and anti-His tag antibodies, respectively. 1 His-GHRH expressing total bacterial lysate, 2 His-GHRH expressing solubilized pellets. Eukaryotic GHRH NH2 (1–44) expression in His-GHRH vector-transfected HEK293 cells was identified by C qRT-PCR, D immunoblotting, and E immunofluorescence. 1 HEK293 wt 2 HEK293 His-transfected 3 HEK293 His-GHRH transfected. F GHRH 1–44 concentration in the media of HEK293 cells was measured by Human GHRH <t>ELISA.</t> GAPDH was used as a loading control. 18S was used as an internal control. DAPI was used to indicate the nuclei of the cells.
Interpolation, supplied by R&D Systems, used in various techniques. Bioz Stars score: 94/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Elabscience Biotechnology elisa kits
A <t>GHRH</t> (1–44) expression of bacterial colonies expressing His- and His-GHRH vectors demonstrated by immunoblotting. 1 E . coli HB101 His vector clone, 2 E . coli HB101 His-GHRH vector clone. B Purified His tagged bacterial GHRH 1–44 ligand was demonstrated by immunoblotting via anti-GHRH and anti-His tag antibodies, respectively. 1 His-GHRH expressing total bacterial lysate, 2 His-GHRH expressing solubilized pellets. Eukaryotic GHRH NH2 (1–44) expression in His-GHRH vector-transfected HEK293 cells was identified by C qRT-PCR, D immunoblotting, and E immunofluorescence. 1 HEK293 wt 2 HEK293 His-transfected 3 HEK293 His-GHRH transfected. F GHRH 1–44 concentration in the media of HEK293 cells was measured by Human GHRH <t>ELISA.</t> GAPDH was used as a loading control. 18S was used as an internal control. DAPI was used to indicate the nuclei of the cells.
Elisa Kits, supplied by Elabscience Biotechnology, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/human+growth+hormone+elisa+kit/Human+GH+(Growth+Hormone)+ELISA+Kit/pmc11414129-150-21-24
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R&D Systems human growth hormone elisa kit
A <t>GHRH</t> (1–44) expression of bacterial colonies expressing His- and His-GHRH vectors demonstrated by immunoblotting. 1 E . coli HB101 His vector clone, 2 E . coli HB101 His-GHRH vector clone. B Purified His tagged bacterial GHRH 1–44 ligand was demonstrated by immunoblotting via anti-GHRH and anti-His tag antibodies, respectively. 1 His-GHRH expressing total bacterial lysate, 2 His-GHRH expressing solubilized pellets. Eukaryotic GHRH NH2 (1–44) expression in His-GHRH vector-transfected HEK293 cells was identified by C qRT-PCR, D immunoblotting, and E immunofluorescence. 1 HEK293 wt 2 HEK293 His-transfected 3 HEK293 His-GHRH transfected. F GHRH 1–44 concentration in the media of HEK293 cells was measured by Human GHRH <t>ELISA.</t> GAPDH was used as a loading control. 18S was used as an internal control. DAPI was used to indicate the nuclei of the cells.
Human Growth Hormone Elisa Kit, supplied by R&D Systems, used in various techniques. Bioz Stars score: 91/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/human+growth+hormone+elisa+kit/Human+Growth+Hormone+R+ELISA+Kit+(Colorimetric)/pmc08479855-38-14-22
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Boster Bio elabscience
A <t>GHRH</t> (1–44) expression of bacterial colonies expressing His- and His-GHRH vectors demonstrated by immunoblotting. 1 E . coli HB101 His vector clone, 2 E . coli HB101 His-GHRH vector clone. B Purified His tagged bacterial GHRH 1–44 ligand was demonstrated by immunoblotting via anti-GHRH and anti-His tag antibodies, respectively. 1 His-GHRH expressing total bacterial lysate, 2 His-GHRH expressing solubilized pellets. Eukaryotic GHRH NH2 (1–44) expression in His-GHRH vector-transfected HEK293 cells was identified by C qRT-PCR, D immunoblotting, and E immunofluorescence. 1 HEK293 wt 2 HEK293 His-transfected 3 HEK293 His-GHRH transfected. F GHRH 1–44 concentration in the media of HEK293 cells was measured by Human GHRH <t>ELISA.</t> GAPDH was used as a loading control. 18S was used as an internal control. DAPI was used to indicate the nuclei of the cells.
Elabscience, supplied by Boster Bio, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/human+growth+hormone+elisa+kit/Human+Growth+Hormone%2FGH1+ELISA+Kit+PicoKine/pm28028076-78-11-19
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Shanghai Korain Biotech Co Ltd immunosorbent assay
A <t>GHRH</t> (1–44) expression of bacterial colonies expressing His- and His-GHRH vectors demonstrated by immunoblotting. 1 E . coli HB101 His vector clone, 2 E . coli HB101 His-GHRH vector clone. B Purified His tagged bacterial GHRH 1–44 ligand was demonstrated by immunoblotting via anti-GHRH and anti-His tag antibodies, respectively. 1 His-GHRH expressing total bacterial lysate, 2 His-GHRH expressing solubilized pellets. Eukaryotic GHRH NH2 (1–44) expression in His-GHRH vector-transfected HEK293 cells was identified by C qRT-PCR, D immunoblotting, and E immunofluorescence. 1 HEK293 wt 2 HEK293 His-transfected 3 HEK293 His-GHRH transfected. F GHRH 1–44 concentration in the media of HEK293 cells was measured by Human GHRH <t>ELISA.</t> GAPDH was used as a loading control. 18S was used as an internal control. DAPI was used to indicate the nuclei of the cells.
Immunosorbent Assay, supplied by Shanghai Korain Biotech Co Ltd, used in various techniques. Bioz Stars score: 94/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/human+growth+hormone+elisa+kit/Human+Catestatin+ELISA+Kit/10__15587_slash_2519___4798__2023__291591-57-10-13
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Image Search Results


Rotenone treatment reduced cell viability in SH-SY5Y wt cells more than in human autocrine GH-gained SH-SY5Y cells. A. GH secretion of SH-SY5Y following GH-pcDNA3.1 plasmid transfection was determined as 1.98 pg/mL by ELISA assay. B. MTT cell viability assay was performed in rotenone treated-SH-SY5Y and SK-N-AS cells with/without GH in a dose-dependent manner (0.1, 0.5, 1, 5, and 10 μM). * p < 0.05, **p < 0.01, ***p < 0.001. C. The effect of rotenone on MMP loss-induced cell death was determined by DiOC6, PI, and DAPI staining in both SH-SY5Y wt and GH+ cells. D. Cell survival assay was performed to show the effect of rotenone in a time-dependent manner in both SH-SY5Y and SK-N-AS wt (upper figure) and GH+ (lower figure) cells. E–F. The effect of 0.5 μM rotenone on anchorage-independent cell growth was examined by soft agar assay in SH-SY5Y (magnification: 40×) and SK-N-AS (magnification: 10×) cell lines. Scale bar: 200 μm. Average diameter of spheroids for both Figures E and F was analyzed by Olympus Image Analyzing program.

Journal: Turkish Journal of Biology

Article Title: The protective impact of growth hormone against rotenone-induced apoptotic cell death via acting on endoplasmic reticulum stress and autophagy axis

doi: 10.55730/1300-0152.2639

Figure Lengend Snippet: Rotenone treatment reduced cell viability in SH-SY5Y wt cells more than in human autocrine GH-gained SH-SY5Y cells. A. GH secretion of SH-SY5Y following GH-pcDNA3.1 plasmid transfection was determined as 1.98 pg/mL by ELISA assay. B. MTT cell viability assay was performed in rotenone treated-SH-SY5Y and SK-N-AS cells with/without GH in a dose-dependent manner (0.1, 0.5, 1, 5, and 10 μM). * p < 0.05, **p < 0.01, ***p < 0.001. C. The effect of rotenone on MMP loss-induced cell death was determined by DiOC6, PI, and DAPI staining in both SH-SY5Y wt and GH+ cells. D. Cell survival assay was performed to show the effect of rotenone in a time-dependent manner in both SH-SY5Y and SK-N-AS wt (upper figure) and GH+ (lower figure) cells. E–F. The effect of 0.5 μM rotenone on anchorage-independent cell growth was examined by soft agar assay in SH-SY5Y (magnification: 40×) and SK-N-AS (magnification: 10×) cell lines. Scale bar: 200 μm. Average diameter of spheroids for both Figures E and F was analyzed by Olympus Image Analyzing program.

Article Snippet: Secreted GH levels were determined in a filtered medium of 24 h serum-starved SH-SY5Y wt and GH+ cells by human GH ELISA Assay (Abcam, 190811) according to the manufacturer’s instructions.

Techniques: Plasmid Preparation, Transfection, Enzyme-linked Immunosorbent Assay, Viability Assay, Staining, Clonogenic Cell Survival Assay, Soft Agar Assay

A GHRH (1–44) expression of bacterial colonies expressing His- and His-GHRH vectors demonstrated by immunoblotting. 1 E . coli HB101 His vector clone, 2 E . coli HB101 His-GHRH vector clone. B Purified His tagged bacterial GHRH 1–44 ligand was demonstrated by immunoblotting via anti-GHRH and anti-His tag antibodies, respectively. 1 His-GHRH expressing total bacterial lysate, 2 His-GHRH expressing solubilized pellets. Eukaryotic GHRH NH2 (1–44) expression in His-GHRH vector-transfected HEK293 cells was identified by C qRT-PCR, D immunoblotting, and E immunofluorescence. 1 HEK293 wt 2 HEK293 His-transfected 3 HEK293 His-GHRH transfected. F GHRH 1–44 concentration in the media of HEK293 cells was measured by Human GHRH ELISA. GAPDH was used as a loading control. 18S was used as an internal control. DAPI was used to indicate the nuclei of the cells.

Journal: PLoS ONE

Article Title: Synthesis and characterization of novel ssDNA X-aptamers targeting Growth Hormone Releasing Hormone (GHRH)

doi: 10.1371/journal.pone.0260144

Figure Lengend Snippet: A GHRH (1–44) expression of bacterial colonies expressing His- and His-GHRH vectors demonstrated by immunoblotting. 1 E . coli HB101 His vector clone, 2 E . coli HB101 His-GHRH vector clone. B Purified His tagged bacterial GHRH 1–44 ligand was demonstrated by immunoblotting via anti-GHRH and anti-His tag antibodies, respectively. 1 His-GHRH expressing total bacterial lysate, 2 His-GHRH expressing solubilized pellets. Eukaryotic GHRH NH2 (1–44) expression in His-GHRH vector-transfected HEK293 cells was identified by C qRT-PCR, D immunoblotting, and E immunofluorescence. 1 HEK293 wt 2 HEK293 His-transfected 3 HEK293 His-GHRH transfected. F GHRH 1–44 concentration in the media of HEK293 cells was measured by Human GHRH ELISA. GAPDH was used as a loading control. 18S was used as an internal control. DAPI was used to indicate the nuclei of the cells.

Article Snippet: 100 μL of concentrated cellular media were used for GHRH ELISA assay (Elabscience, E-EL-H1146) according to the manufacturer’s instructions and were measured at 450 nm wavelength by a microplate reader (Multiskan, Thermo Scientific).

Techniques: Expressing, Western Blot, Plasmid Preparation, Purification, Transfection, Quantitative RT-PCR, Immunofluorescence, Concentration Assay, Enzyme-linked Immunosorbent Assay, Control

A First bead based aptamer selection against GHRH NH2 (1–44) target and B second bead based aptamer selection against GHRH NH2 (1–29) target was performed by using the X-aptamer kit. Tube #1: Cleaved oligunucleotide pool, Tube #2: Cleaved oligonucleotide pool+Magnetic beads+Prokaryotic GHRH (1–44) target, Tube #3: Cleaved oligonucleotide pool+Magnetic beads+Eukaryotic GHRH (1–44) target, Tube #7: Cleaved oligonucleotide pool+Magnetic beads. Cycle course PCR (up) and last PCR (down) amplification of the x-aptamer selection process were given. C Sequences of putative x-aptamers were determined by next-generation sequencing. D. Analysis for all 24 putative aptamers were performed by using MEME program ( https://meme-suite.org/meme/ ).

Journal: PLoS ONE

Article Title: Synthesis and characterization of novel ssDNA X-aptamers targeting Growth Hormone Releasing Hormone (GHRH)

doi: 10.1371/journal.pone.0260144

Figure Lengend Snippet: A First bead based aptamer selection against GHRH NH2 (1–44) target and B second bead based aptamer selection against GHRH NH2 (1–29) target was performed by using the X-aptamer kit. Tube #1: Cleaved oligunucleotide pool, Tube #2: Cleaved oligonucleotide pool+Magnetic beads+Prokaryotic GHRH (1–44) target, Tube #3: Cleaved oligonucleotide pool+Magnetic beads+Eukaryotic GHRH (1–44) target, Tube #7: Cleaved oligonucleotide pool+Magnetic beads. Cycle course PCR (up) and last PCR (down) amplification of the x-aptamer selection process were given. C Sequences of putative x-aptamers were determined by next-generation sequencing. D. Analysis for all 24 putative aptamers were performed by using MEME program ( https://meme-suite.org/meme/ ).

Article Snippet: 100 μL of concentrated cellular media were used for GHRH ELISA assay (Elabscience, E-EL-H1146) according to the manufacturer’s instructions and were measured at 450 nm wavelength by a microplate reader (Multiskan, Thermo Scientific).

Techniques: Selection, Magnetic Beads, Amplification, Next-Generation Sequencing

The binding affinity of putative X-aptamers was determined by dot blot assay against A GHRH NH2 (1–44) target and B GHRH NH2 (1–29) target. C Dose-dependent dot blot assay was performed in increasing doses (0–1000 nM) of X-aptamers. The scramble aptamer was used a negative control for dot-blot analysis. Dot intensities were measured by Image J (imagej.nih.gov/ij/) and analyzed by GraphPad Prism 8.0. Nonlinear regression analysis was performed by Sigma Plot v14.0 and K d was calculated. D. The specific binding affinity of selected aptamers against GHRH peptide was determined by both GHRH sandwich ELISA assay (left panel) and dot-blot analysis (right panel) in a dose-dependent manner.

Journal: PLoS ONE

Article Title: Synthesis and characterization of novel ssDNA X-aptamers targeting Growth Hormone Releasing Hormone (GHRH)

doi: 10.1371/journal.pone.0260144

Figure Lengend Snippet: The binding affinity of putative X-aptamers was determined by dot blot assay against A GHRH NH2 (1–44) target and B GHRH NH2 (1–29) target. C Dose-dependent dot blot assay was performed in increasing doses (0–1000 nM) of X-aptamers. The scramble aptamer was used a negative control for dot-blot analysis. Dot intensities were measured by Image J (imagej.nih.gov/ij/) and analyzed by GraphPad Prism 8.0. Nonlinear regression analysis was performed by Sigma Plot v14.0 and K d was calculated. D. The specific binding affinity of selected aptamers against GHRH peptide was determined by both GHRH sandwich ELISA assay (left panel) and dot-blot analysis (right panel) in a dose-dependent manner.

Article Snippet: 100 μL of concentrated cellular media were used for GHRH ELISA assay (Elabscience, E-EL-H1146) according to the manufacturer’s instructions and were measured at 450 nm wavelength by a microplate reader (Multiskan, Thermo Scientific).

Techniques: Binding Assay, Dot Blot, Negative Control, Sandwich ELISA

A GHRH expression was figured out in MIA PaCa-2 pancreatic cancer, HT-29 colorectal cancer, PC3 prostate cancer, and PNT1a normal prostate epithelium cell lines by immunofluorescence. DAPI was used to observe the nuclei of the cells. B Translational expression of GHRH in MIA PaCa-2, HT-29, PC3, and PNT1a cells was determined by immunoblotting. ß-actin was used as a loading control. C. GHRH concentrations in media of MIA PaCa-2, HT-29, PC3, and PNT1a cells determined by Human GHRH ELISA.

Journal: PLoS ONE

Article Title: Synthesis and characterization of novel ssDNA X-aptamers targeting Growth Hormone Releasing Hormone (GHRH)

doi: 10.1371/journal.pone.0260144

Figure Lengend Snippet: A GHRH expression was figured out in MIA PaCa-2 pancreatic cancer, HT-29 colorectal cancer, PC3 prostate cancer, and PNT1a normal prostate epithelium cell lines by immunofluorescence. DAPI was used to observe the nuclei of the cells. B Translational expression of GHRH in MIA PaCa-2, HT-29, PC3, and PNT1a cells was determined by immunoblotting. ß-actin was used as a loading control. C. GHRH concentrations in media of MIA PaCa-2, HT-29, PC3, and PNT1a cells determined by Human GHRH ELISA.

Article Snippet: 100 μL of concentrated cellular media were used for GHRH ELISA assay (Elabscience, E-EL-H1146) according to the manufacturer’s instructions and were measured at 450 nm wavelength by a microplate reader (Multiskan, Thermo Scientific).

Techniques: Expressing, Immunofluorescence, Western Blot, Control, Enzyme-linked Immunosorbent Assay

The binding position of A TKY2.T1.08, C TKY2.T1.13, E TKY.T2.08, G TKY.T2.09 x-aptamers were investigated by immunofluorescence. Streptavidin-Alexa Fluor 488 conjugate was used to specify biotin-labelled x-aptamers. Cells were treated with X-aptamers in a dose-dependent manner (0–500 nM). Following incubation, cells were examined under a fluorescence microscope (Olympus) and images were taken and analyzed. The binding position of B TKY2.T1.08, D TKY2.T1.13, F TKY.T2.08, H TKY.T2.09 x-aptamers investigated by co-immunofluorescence. Streptavidin-Alexa Fluor 488 conjugate was used to specify biotin-labelled X-aptamers. Streptavidin-Alexa Fluor 588 conjugated anti-GHRH was used to specify GHRH. Cells were treated with x-aptamers in a dose-dependent manner (0–500 nM). Following incubation, cells were examined under a fluorescence microscope (Olympus) and images were taken and analyzed. GHRH siRNA was used as a negative control.

Journal: PLoS ONE

Article Title: Synthesis and characterization of novel ssDNA X-aptamers targeting Growth Hormone Releasing Hormone (GHRH)

doi: 10.1371/journal.pone.0260144

Figure Lengend Snippet: The binding position of A TKY2.T1.08, C TKY2.T1.13, E TKY.T2.08, G TKY.T2.09 x-aptamers were investigated by immunofluorescence. Streptavidin-Alexa Fluor 488 conjugate was used to specify biotin-labelled x-aptamers. Cells were treated with X-aptamers in a dose-dependent manner (0–500 nM). Following incubation, cells were examined under a fluorescence microscope (Olympus) and images were taken and analyzed. The binding position of B TKY2.T1.08, D TKY2.T1.13, F TKY.T2.08, H TKY.T2.09 x-aptamers investigated by co-immunofluorescence. Streptavidin-Alexa Fluor 488 conjugate was used to specify biotin-labelled X-aptamers. Streptavidin-Alexa Fluor 588 conjugated anti-GHRH was used to specify GHRH. Cells were treated with x-aptamers in a dose-dependent manner (0–500 nM). Following incubation, cells were examined under a fluorescence microscope (Olympus) and images were taken and analyzed. GHRH siRNA was used as a negative control.

Article Snippet: 100 μL of concentrated cellular media were used for GHRH ELISA assay (Elabscience, E-EL-H1146) according to the manufacturer’s instructions and were measured at 450 nm wavelength by a microplate reader (Multiskan, Thermo Scientific).

Techniques: Binding Assay, Immunofluorescence, Incubation, Fluorescence, Microscopy, Negative Control

A. The effect of TKY2.T1.08, TKY2.T1.13, TKY.T2.08, TKY.T2.09 x-aptamers on the intracellular cAMP levels were determined by cAMP assay kit in both HT29 and MIA Paca-2 cells. B. The impact of TKY2.T1.08, TKY2.T1.13, TKY.T2.08, TKY.T2.09 x-aptamer on GH/GHRHR expression profile was investigated by co-immunofluorescence assay under a fluorescence microscope (Olympus). GHRH peptide (500 nM) was used as a positive control. Each experiment was performed and repeated at least two times, given figures are the representative figure of one of the three replicated assays. ns: non-specific, *p<0.05, **p<0.01, ***p<0.001, ****p<0.0001.

Journal: PLoS ONE

Article Title: Synthesis and characterization of novel ssDNA X-aptamers targeting Growth Hormone Releasing Hormone (GHRH)

doi: 10.1371/journal.pone.0260144

Figure Lengend Snippet: A. The effect of TKY2.T1.08, TKY2.T1.13, TKY.T2.08, TKY.T2.09 x-aptamers on the intracellular cAMP levels were determined by cAMP assay kit in both HT29 and MIA Paca-2 cells. B. The impact of TKY2.T1.08, TKY2.T1.13, TKY.T2.08, TKY.T2.09 x-aptamer on GH/GHRHR expression profile was investigated by co-immunofluorescence assay under a fluorescence microscope (Olympus). GHRH peptide (500 nM) was used as a positive control. Each experiment was performed and repeated at least two times, given figures are the representative figure of one of the three replicated assays. ns: non-specific, *p<0.05, **p<0.01, ***p<0.001, ****p<0.0001.

Article Snippet: 100 μL of concentrated cellular media were used for GHRH ELISA assay (Elabscience, E-EL-H1146) according to the manufacturer’s instructions and were measured at 450 nm wavelength by a microplate reader (Multiskan, Thermo Scientific).

Techniques: cAMP Assay, Expressing, Immunofluorescence, Fluorescence, Microscopy, Positive Control