Get tips on using NeuroMag to perform DNA transfection Mammalian cells - Immortalized cell lines SH-SY5Y
Get tips on using QuantiFluor® dsDNA System to perform DNA quantification MCF10A breast epithelial cells
The RNA interference (RNAi) is used to inhibit gene expression or translation, by neutralizing targeted mRNA molecules. Two types of RNA molecules such as microRNA (miRNA) and small interfering RNA (siRNA) play a central role in RNAi. Few points have to considered to increase the transfection efficiency of siRNA. Always use healthy, actively dividing cells to maximize transfection efficiency. The confluency of cells should be between 50-70%. Always use the most appropriate siRNA concentration to avoid off-target effects and unwanted toxic side effects. Positive and negative controls should be used for each and every experiment to determine transfection efficiency.
Get tips on using RIPA Buffer to perform Protein isolation Mammalian cells - Rat_Liver
Get tips on using CelLytic™ M to perform Protein isolation Mammalian cells - HaCaT
Get tips on using CelLytic™ M to perform Protein isolation Mammalian cells - HepG2
Get tips on using CelLytic™ M to perform Protein isolation Mammalian cells - Huh7
Get tips on using CelLytic™ M to perform Protein isolation Mammalian cells - HEK293T
Get tips on using M-PER™ Mammalian Protein Extraction Reagent to perform Protein isolation Mammalian cells - Human aortic endothelial cells
The RNA-guided CRISPR-Cas9 nuclease system has revolutionized the genome editing practices. For the most part, the Cas9-mediated genome editing is performed either via nonhomologous end joining (NHEJ) or homology-directed repair (HDR) in mammalian cells, However, designing of specific sgRNAs and minimizing off-target cleavage mediated mutagenesis are the major challenges in CRISPR-Cas based genome editing. To circumvent these issues, we can take advantages of many available tools and approaches for sgRNA construction and delivery.
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