Get tips on using GeneChip® HT 3' IVT PLUS Reagent Kit to perform Microarray Human - Endometrial stromal cells Target preparation kit (Amplification + Hybridization + control)
Get tips on using CellROX™ Deep Red Reagent, for oxidative stress detection to perform ROS assay cell type - human umbelical vein endothelial cells (HUVEC)
Get tips on using OxiSelect™ In Vitro ROS/RNS Assay Kit (Green Fluorescence) to perform ROS assay cell type - human primary corneal epithelial cells
Get tips on using OxiSelect™ In Vitro ROS/RNS Assay Kit (Green Fluorescence) to perform ROS assay cell type - PANC-, BxPC-3 human pancreas
Get tips on using MitoSOX™ Red Mitochondrial Superoxide Indicator, for live-cell imaging to perform ROS assay cell type - PC-3 human prostate adenocarcinoma
Get tips on using CD49f (Integrin alpha 6) Monoclonal Antibody (eBioGoH3 (GoH3)), eFluor 450, eBioscience™ to perform Flow cytometry Anti-bodies Human - CD49f/ITGA6
Get tips on using Click-iT™ Plus EdU Alexa Fluor™ 488 Flow Cytometry Assay Kit to perform Cell cycle assay human - OVCAR-5
Though DNA quantification is but one small step in the multifaceted DNA sample preparation workflow, it can have large implications on the performance and validity of conclusions drawn from downstream assays. Major challenges include accuracy, precision, reproducibility, and detection of present contamination. Among UV spectrophotometry, fluorescence and real-time PCR based methods, the quantification method should be chosen based on the requirement of the downstream assay .
Get tips on using MethylFlash™ Methylated DNA Quantification Kit to perform DNA methylation profiling Whole genome profiling - MCF-7, MDA-MB-453 human breast cancer
Get tips on using CM-H2DCFDA (General Oxidative Stress Indicator) to perform ROS assay cell type - PLHC-1, SK-HEP-1, Hep3b, HepG2 human hepatocellular carcinoma
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