siRNA / miRNA gene silencing Rat PC12

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Get tips on using Rat Superoxide dismutase [Mn], mitochondrial(SOD2) ELISA kit to perform ELISA Rat - SOD2/Mn-SOD

Products Cusabio Rat Superoxide dismutase [Mn], mitochondrial(SOD2) ELISA kit

Get tips on using Rat IL-1 Beta PicoKine™ ELISA Kit to perform ELISA Rat - IL-1 beta

Products BosterBio Rat IL-1 Beta PicoKine™ ELISA Kit

Get tips on using ScriptSeq Complete Kit (Human/Mouse/Rat) to perform RNA sequencing Mouse - J774

Products Illumina ScriptSeq Complete Kit (Human/Mouse/Rat)

Get tips on using Active rat PAI-1 functional assay ELISA kit to perform ELISA Rat - Serpin E1/PAI-1

Products Molecular Innovations Active rat PAI-1 functional assay ELISA kit

Get tips on using Rat plasminogen activator inhibitor 1,PAI1 ELISA Kit to perform ELISA Rat - Serpin E1/PAI-1

Products Cusabio Rat plasminogen activator inhibitor 1,PAI1 ELISA Kit

Transfection is a powerful technique that enables the study of the function of genes and gene products in cells. Based on the nature of experiments, we may need a stable DNA transfection in cells for persistent gain-of-function or loss-of-function of the target gene. For stable transfection, integration of a DNA vector into the chromosome is crucial which requires selective screening and clonal isolation. By carefully selecting a viral delivery system and related reagents we can ensure safe and highly-efficient delivery of expression constructs for high-level constitutive or inducible expression in any mammalian cell type.

DNA DNA transfection Mammalian cells Primary cells Rat aortic smooth muscle cells (rASMC)

Get tips on using ANGPTL3 (mouse/rat) Dual ELISA Kit to perform ELISA Mouse - Angiopoietin-Like 3 (AngptL3)

Products AdipoGen Lifesciences ANGPTL3 (mouse/rat) Dual ELISA Kit

DNA-protein interactions are studied by using ChIP. The basic steps in this technique are crosslinking, sonication, immunoprecipitation, and analysis of the immunoprecipitated DNA. During ChIP, if chromatin is under-fragmented or fragments are too large which can lead to the increased background and lower resolution. Shorter cross-linking times (5-10 min) and/or lower formaldehyde concentrations (<1%) may improve shearing efficiency. If Chromatin is over-fragmented, then optimize shearing conditions for each cell type to improve ChIP efficiency. Over-sonication of chromatin may disrupt chromatin integrity and denature antibody epitopes. If you do not see any product or very little product in the input PCR reactions, add 5–10 μg chromatin per IP.

Proteins ChIP Rat Brain microvessels

DNA-protein interactions are studied by using ChIP. The basic steps in this technique are crosslinking, sonication, immunoprecipitation, and analysis of the immunoprecipitated DNA. During ChIP, if chromatin is under-fragmented or fragments are too large which can lead to the increased background and lower resolution. Shorter cross-linking times (5-10 min) and/or lower formaldehyde concentrations (<1%) may improve shearing efficiency. If Chromatin is over-fragmented, then optimize shearing conditions for each cell type to improve ChIP efficiency. Over-sonication of chromatin may disrupt chromatin integrity and denature antibody epitopes. If you do not see any product or very little product in the input PCR reactions, add 5–10 μg chromatin per IP.

Proteins ChIP Rat INS-1

DNA-protein interactions are studied by using ChIP. The basic steps in this technique are crosslinking, sonication, immunoprecipitation, and analysis of the immunoprecipitated DNA. During ChIP, if chromatin is under-fragmented or fragments are too large which can lead to the increased background and lower resolution. Shorter cross-linking times (5-10 min) and/or lower formaldehyde concentrations (<1%) may improve shearing efficiency. If Chromatin is over-fragmented, then optimize shearing conditions for each cell type to improve ChIP efficiency. Over-sonication of chromatin may disrupt chromatin integrity and denature antibody epitopes. If you do not see any product or very little product in the input PCR reactions, add 5–10 μg chromatin per IP.

Proteins ChIP Rat Spinal cord

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