Get tips on using Anti-PI3-kinase p85-α antibody produced in rabbit to perform Autophagy assay cell type - HepG2
Get tips on using The Premo Autophagy Tandem Sensor RFP-GFP-LC3B Kit to perform Autophagy assay cell type - A375
Get tips on using ApoAlert™ DNA Fragmentation Assay Kit to perform TUNEL assay cell type - A549, NCI-H460, H1299 human alveolar carcinoma
Get tips on using OxiSelect™ Intracellular ROS Assay Kit (Green Fluorescence) to perform ROS assay cell type - H9c2 rat cardiomyocytes
Get tips on using IncuCyte® Caspase-3/7 Apoptosis Assay Reagent to perform Apoptosis assay cell type - Caspase 3/7
The formation of DNA from an RNA template using reverse transcription leads to the formation of double-stranded complementary DNA or cDNA. The challenges with this process include 1. Maintaining the integrity of RNA, 2. Hairpin loops or other secondary structures formed by single-stranded RNA can also affect cDNA synthesis, and 3. DNA-RNA hybrids, which may result when the first strand of cDNA is formed. For the first challenge, using workflows that involve proper isolation and storage of RNA, and maintaining a nuclease-free environment helps obtain RNA with ideal 260/230 ratios. Using a reverse transcriptase that can tolerate high temperatures (50-55oC), overcomes obstacles imposed by secondary RNA structures. Finally, RNase H has the ability to hydrolyze RNA before the formation of a second cDNA strand. It is important to ensure that RNase H activity is optimal because higher RNase H activity leads to premature degradation of the RNA template. Many reverse transcriptases offer built-in RNase H activity.
Get tips on using DMEM, no glucose, no glutamine, no phenol red to perform 3D Cell Culture Media hiPSC-derived cardiac organoids
Get tips on using Corning® Hepatocyte Culture Media Kit, 500 mL to perform 3D Cell Culture Media Human bladder cancer organoid
Get tips on using Gibco™ DMEM/F-12, GlutaMAX™ supplement to perform 3D Cell Culture Media hiPSC-derived retinal organoids
Get tips on using Gibco™ DMEM/F-12, GlutaMAX™ supplement to perform 3D Cell Culture Media hESC-derived brain organoids
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