Get tips on using β-Galactosidase Enzyme Assay System with Reporter Lysis Buffer to perform Reporter gene assay β-galactosidase substrates - human MSCs (mesenchymal stem cells)
Get tips on using GenomONE™-Neo HVJ-E Membrane Fusion Transfection Kit to perform siRNA / miRNA gene silencing Human - U937 MK2 (MAPK Kinase 2) Viral vectors
Get tips on using GenomONE™-Neo HVJ-E Membrane Fusion Transfection Kit to perform siRNA / miRNA gene silencing Human - Jurkat MK2 (MAPK Kinase 2) Viral vectors
Get tips on using X-tremeGENE™ HP DNA Transfection Reagent to perform DNA transfection Mammalian cells - Primary cells Human aortic smooth muscle cells (HOSMC)
Gene silencing through the use of small interfering RNA (siRNA) has become a primary tool for identifying disease-causing genes. There are several aspects for preparing and delivering effective siRNA to knockdown a target gene. The length of siRNA should be 21–23nt long with G/C content 30–50%. If a validated siRNA sequence for your target gene is not available, use siRNA generated against the entire target gene ORF. Always work with two or three different siRNA constructs to get reliable results. If you are not sure how much siRNA to use for a given experiment, start with a transfection concentration of 10-50 nM and use siRNA-specific transfection reagent to ensure efficient siRNA delivery in a wide range of cells.
Get tips on using pLEXSY-hyg-2-hAm to perform Protein Expression Eukaryotic cells - Iranian lizard Leishmania cells recombinant human amelogenin
Get tips on using Senescence Detection Kit - Merck to perform Reporter gene assay β-galactosidase substrates - MCF-7 human breast cancer
Get tips on using EpiQuik Dnmt3A Assay Kit to perform DNA methylation profiling Whole genome profiling - human peripheral blood mononuclear cells
Get tips on using AllPrep DNA/RNA Micro Kit to perform RNA isolation / purification Tissue - Human Blood / Serum / Plasma / Buffy coat
Get tips on using RNeasy Lipid Tissue Mini Kit to perform RNA isolation / purification Cells - primary human brain microvascular endothelial cells
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