siRNA / RNAi /miRNA transfection Human Cells Cal 27 cells

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Get tips on using Human Lipocalin-2 ELISA Kit (NGAL) (ab119600) to perform ELISA Human - NGAL/LCN2

Products Abcam Human Lipocalin-2 ELISA Kit (NGAL) (ab119600)

Get tips on using Human Lipocalin-2/NGAL Quantikine ELISA Kit to perform ELISA Human - NGAL/LCN2

Products R&D Systems Human Lipocalin-2/NGAL Quantikine ELISA Kit

Get tips on using Human IGF-1 PicoKine™ ELISA Kit to perform ELISA Human - IGF-I

Products BosterBio Human IGF-1 PicoKine™ ELISA Kit

Get tips on using Human BMP-2 PicoKine™ ELISA Kit to perform ELISA Human - BMP-2

Products BosterBio Human BMP-2 PicoKine™ ELISA Kit

Get tips on using RNeasy Lipid Tissue Mini Kit to perform RNA isolation / purification Cells - primary bovine aortic endothelial cells

Products Qiagen RNeasy Lipid Tissue Mini Kit

The process of RNA extraction from bacteria, in general, involves an RNA-protective, effective lysis of bacterial cell wall (which may pose difficulties). EDTA promotes loss of outer membrane to provide lysozyme with access to peptidoglycan. Another common method for cell wall lysis is mechanical disruption using a homogenizer (applied for gram-positive bacteria and some strains of gram-negative bacteria). Following lysis, it is necessary to disrupt protein-nucleic acid interactions, which can be achieved by adding sodium dodecyl sulfate (SDS). Next step involves using phenol-chloroform-isoamyl alcohol extraction, where RNA can be obtained from the bottom organic phase, the top phase consists of DNA and the interphase contains proteins. Isoamyl alcohol is an inert and optional addition to this mixture and is added as an anti-foaming reagent to reduce the interphase. Following RNA extraction, the samples should be checked for its quality by gel electrophoresis (23S and 16S rRNAs and 5s rRNA and tRNA bands) or UV spectrophotometric or fluorescence methods.

RNA RNA isolation / purification Tissue Human Lymph node

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 Human MDA-MB-231

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 Human MIA PaCa-2

Get tips on using EasySep™ Human B Cell Enrichment Kit to perform Cell Isolation B cell

Products STEMCELL technologies EasySep™ Human B Cell Enrichment Kit

Get tips on using RosetteSep™ Human B Cell Enrichment Cocktail to perform Cell Isolation B cell

Products STEMCELL technologies RosetteSep™ Human B Cell Enrichment Cocktail

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