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 DCFDA - Cellular Reactive Oxygen Species Detection Assay Kit to perform ROS assay cell type - K562 human leukemia cells
Get tips on using ROS-ID® Total ROS/Superoxide detection kit to perform ROS assay cell type - K562 human leukemia cells
Get tips on using OxiSelect™ Intracellular ROS Assay Kit (Green Fluorescence) to perform ROS assay cell type - K562 human leukemia cells
Get tips on using OxiSelect™ Intracellular ROS Assay Kit (Green Fluorescence) to perform ROS assay cell type - SH-SY5Y human neuroblastoma
Get tips on using PE Annexin V Apoptosis Detection Kit with 7-AAD to perform Apoptosis assay cell type - Human T-cells
Get tips on using CD24 Monoclonal Antibody (eBioSN3 (SN3 A5-2H10)), PE, eBioscience™ to perform Flow cytometry Anti-bodies Human - CD24
Get tips on using NEBNext® Ultra™ RNA Library Prep Kit for Illumina® to perform RNA sequencing Human - SH-SY5Y
Get tips on using Click-iT™ EdU Pacific Blue™ Flow Cytometry Assay Kit to perform Cell cycle assay human - HeLa
Contamination can affect cell characteristics, i.e., growth, metabolism, and morphology leading to unreliable and erroneous experimental data. Depending on the source of contaminants, one can detect contamination by using a light microscope, gram stain, isothermal amplification, or PCR. Bacteria and fungi can usually be identified by optical microscopy. Mycoplasma in cell cultures cannot be detected visually. Hence, these microbes can go unnoticed for long periods and are determined using dedicated assays. Early and rapid identification of contaminants is vital to detect, handle and prevent contamination for good cell-culture practices. However, detection and identification can be challenging and tricky based on usual visual identifications. Hence it is essential to use a standard contamination detection kit to detect and maintain best practices.
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