mghr pcr fragment (Sino Biological)
Structured Review

Mghr Pcr Fragment, supplied by Sino Biological, 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/transcript+variant+1/Mouse+Growth+Hormone+Receptor+%2F+GHR+%2F+GHBP+transcript+variant+1+Gene+ORF+cDNA+clone+in+cloning+vector/pmc09203273-43-1-10
Average 91 stars, based on 1 article reviews
Images
1) Product Images from "First use of gene therapy to treat growth hormone resistant dwarfism in a mouse model"
Article Title: First use of gene therapy to treat growth hormone resistant dwarfism in a mouse model
Journal: Gene Therapy
doi: 10.1038/s41434-022-00313-w
Figure Legend Snippet: a RT-PCR gel of mGHR mRNA expression. 18S rRNA housekeeping gene was used as loading control. b Western blot of mGHR protein expression. Actin housekeeping gene was used as loading control. c Immunofluorescence staining of mGHR expression, scale bars are 50 µm and nuclei were stained with DAPI. HepG2 cells were transfected with pAAV-HLP-mGHR consisted of hybrid liver-specific promoter (HLP) driving the expression of mGHR. Untransfected control and cells transfected with pAAV-HLP-Luc expressing luciferase gene were used as negative control. Analyses were performed 48 h post-transfection.
Techniques Used: Reverse Transcription Polymerase Chain Reaction, Expressing, Western Blot, Immunofluorescence, Staining, Transfection, Luciferase, Negative Control
Related Articles
Polymerase Chain Reaction:Article Title: First use of gene therapy to treat growth hormone resistant dwarfism in a mouse model Article Snippet: .. The mGHR PCR fragment was amplified from Article Title: First use of gene therapy to treat growth hormone resistant dwarfism in a mouse model. Article Snippet: .. The Amplification:Article Title: First use of gene therapy to treat growth hormone resistant dwarfism in a mouse model Article Snippet: .. The mGHR PCR fragment was amplified from Article Title: First use of gene therapy to treat growth hormone resistant dwarfism in a mouse model. Article Snippet: .. The Cloning:Article Title: First use of gene therapy to treat growth hormone resistant dwarfism in a mouse model Article Snippet: .. The mGHR PCR fragment was amplified from Article Title: First use of gene therapy to treat growth hormone resistant dwarfism in a mouse model. Article Snippet: .. The Variant Assay:Article Title: First use of gene therapy to treat growth hormone resistant dwarfism in a mouse model Article Snippet: .. The mGHR PCR fragment was amplified from Article Title: First use of gene therapy to treat growth hormone resistant dwarfism in a mouse model. Article Snippet: .. The Immunohistochemistry:Article Title: Conditional gene regulation models demonstrate a pro-proliferative role for growth hormone receptor in prostate cancer. Article Snippet: .. Cell proliferation was measured via Ki67 immunohistochemistry (IHC) staining as described previously.28 In vitro plasmid transfection, selection, and cell viability: To create stable transfectants with overexpression of Ghr in mouse prostate cancer cells, PTEN‐P2 and TRAMP‐C2 cells were plated and grown to 70% confluency at which point 1.6 μg of plasmid vector DNA containing Staining:Article Title: Conditional gene regulation models demonstrate a pro-proliferative role for growth hormone receptor in prostate cancer. Article Snippet: .. Cell proliferation was measured via Ki67 immunohistochemistry (IHC) staining as described previously.28 In vitro plasmid transfection, selection, and cell viability: To create stable transfectants with overexpression of Ghr in mouse prostate cancer cells, PTEN‐P2 and TRAMP‐C2 cells were plated and grown to 70% confluency at which point 1.6 μg of plasmid vector DNA containing In Vitro:Article Title: Conditional gene regulation models demonstrate a pro-proliferative role for growth hormone receptor in prostate cancer. Article Snippet: .. Cell proliferation was measured via Ki67 immunohistochemistry (IHC) staining as described previously.28 In vitro plasmid transfection, selection, and cell viability: To create stable transfectants with overexpression of Ghr in mouse prostate cancer cells, PTEN‐P2 and TRAMP‐C2 cells were plated and grown to 70% confluency at which point 1.6 μg of plasmid vector DNA containing Plasmid Preparation:Article Title: Conditional gene regulation models demonstrate a pro-proliferative role for growth hormone receptor in prostate cancer. Article Snippet: .. Cell proliferation was measured via Ki67 immunohistochemistry (IHC) staining as described previously.28 In vitro plasmid transfection, selection, and cell viability: To create stable transfectants with overexpression of Ghr in mouse prostate cancer cells, PTEN‐P2 and TRAMP‐C2 cells were plated and grown to 70% confluency at which point 1.6 μg of plasmid vector DNA containing Transfection:Article Title: Conditional gene regulation models demonstrate a pro-proliferative role for growth hormone receptor in prostate cancer. Article Snippet: .. Cell proliferation was measured via Ki67 immunohistochemistry (IHC) staining as described previously.28 In vitro plasmid transfection, selection, and cell viability: To create stable transfectants with overexpression of Ghr in mouse prostate cancer cells, PTEN‐P2 and TRAMP‐C2 cells were plated and grown to 70% confluency at which point 1.6 μg of plasmid vector DNA containing Selection:Article Title: Conditional gene regulation models demonstrate a pro-proliferative role for growth hormone receptor in prostate cancer. Article Snippet: .. Cell proliferation was measured via Ki67 immunohistochemistry (IHC) staining as described previously.28 In vitro plasmid transfection, selection, and cell viability: To create stable transfectants with overexpression of Ghr in mouse prostate cancer cells, PTEN‐P2 and TRAMP‐C2 cells were plated and grown to 70% confluency at which point 1.6 μg of plasmid vector DNA containing Over Expression:Article Title: Conditional gene regulation models demonstrate a pro-proliferative role for growth hormone receptor in prostate cancer. Article Snippet: .. Cell proliferation was measured via Ki67 immunohistochemistry (IHC) staining as described previously.28 In vitro plasmid transfection, selection, and cell viability: To create stable transfectants with overexpression of Ghr in mouse prostate cancer cells, PTEN‐P2 and TRAMP‐C2 cells were plated and grown to 70% confluency at which point 1.6 μg of plasmid vector DNA containing Control:Article Title: Conditional gene regulation models demonstrate a pro-proliferative role for growth hormone receptor in prostate cancer. Article Snippet: .. Cell proliferation was measured via Ki67 immunohistochemistry (IHC) staining as described previously.28 In vitro plasmid transfection, selection, and cell viability: To create stable transfectants with overexpression of Ghr in mouse prostate cancer cells, PTEN‐P2 and TRAMP‐C2 cells were plated and grown to 70% confluency at which point 1.6 μg of plasmid vector DNA containing Incubation:Article Title: Conditional gene regulation models demonstrate a pro-proliferative role for growth hormone receptor in prostate cancer. Article Snippet: .. Cell proliferation was measured via Ki67 immunohistochemistry (IHC) staining as described previously.28 In vitro plasmid transfection, selection, and cell viability: To create stable transfectants with overexpression of Ghr in mouse prostate cancer cells, PTEN‐P2 and TRAMP‐C2 cells were plated and grown to 70% confluency at which point 1.6 μg of plasmid vector DNA containing |




