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Image Search Results
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
Techniques: Plasmid Preparation, Transfection, Enzyme-linked Immunosorbent Assay, Viability Assay, Staining, Clonogenic Cell Survival Assay, Soft Agar Assay
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
Techniques: Expressing, Western Blot, Plasmid Preparation, Purification, Transfection, Quantitative RT-PCR, Immunofluorescence, Concentration Assay, Enzyme-linked Immunosorbent Assay, 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: 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
Techniques: Selection, Magnetic Beads, Amplification, Next-Generation Sequencing
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
Techniques: Binding Assay, Dot Blot, Negative Control, Sandwich 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
Techniques: Expressing, Immunofluorescence, Western Blot, Control, Enzyme-linked Immunosorbent Assay
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
Techniques: Binding Assay, Immunofluorescence, Incubation, Fluorescence, Microscopy, 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: 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
Techniques: cAMP Assay, Expressing, Immunofluorescence, Fluorescence, Microscopy, Positive Control