CRISPR Rat Deletion BMSCs

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RNA quantification for appropriate concentration and quality (260/280 ratio) is an important step before downstream analysis (including sequencing, RT-qPCR, etc.). Having insufficient RNA quantities or a high salt or phenol in the RNA product can lead to variable or irreproducible downstream results. The various methods used for RNA quantification include: 1. UV spectrophotometric (challenges include: low sensitivity, cannot distinguish between nucleic acid species), 2. Fluorescence-based (challenges include: requires standards, cannot measure amplifiability, not sequence-specific), and 3. RT-PCR (challenges include: requires standards, time-intensive, costly). In order to overcome these challenges, and also to ensure the proper quantification and quality control for RNA product, it is important to use at least two or more methods in order to discard any inconsistencies. Using standards for calibrations increases the sensitivity range for RNA detention (fluorescence- and RT-PCR-based methods). When using RT- PCR, it is important to choose correct primers, aligning to the desired site on the template and of appropriate product length, along with positive, negative and loading controls. It is also important to have at least two primer pairs in order to confirm results.

RNA RNA quantification Fuorimetric

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 Mouse BMDCs

Get tips on using Chromatin Immunoprecipitation (ChIP) Assay Kit to perform ChIP Mouse - BMDCs

Products Merck Millipore Chromatin Immunoprecipitation (ChIP) Assay Kit

A gross majority of classical apoptotic attributes can be quantitatively examined by flow cytometry, the preferred platform for rapid assessment of multiple cellular attributes at a single-cell level. However, sample preparation for such flow cytometry-based techniques could be challenging. Cell harvesting by trypsinization, mechanical or enzymatic cell disaggregation from tissues, extensive centrifugation steps, may all lead to preferential loss of apoptotic cells. To overcome this strictly follow manufacturers instruction of the detection kit.

Cellular assays Apoptosis assay cell type RAW 264.7

Get tips on using Live/Dead cell Staining Kit II to perform Live / Dead assay mammalian cells - bmMSCs human bone marrow

Products PromoKine Live/Dead cell Staining Kit II

Get tips on using SimpleChIP® Plus Enzymatic Chromatin IP Kit (Agarose Beads) #9004 to perform ChIP Mouse - BMDCs

Products Cell Signaling Technology SimpleChIP® Plus Enzymatic Chromatin IP Kit (Agarose Beads) #9004

Get tips on using Gibco™DMEM/F-12 to perform Stem cell culture media Mice BMSC

Products Thermo Fisher Scientific Gibco™DMEM/F-12

Get tips on using Gibco™DMEM, low glucose, pyruvate to perform Stem cell culture media Mice BMSC

Products Thermo Fisher Scientific Gibco™DMEM, low glucose, pyruvate

Get tips on using Minimum Essential Medium Eagle to perform Stem cell culture media Human bone mesenchymal stem cell (BMSC)

Products Sigma-Aldrich Minimum Essential Medium Eagle

Get tips on using Mesenchymal Stem Cell Growth Medium to perform Stem cell culture media Human bone mesenchymal stem cell (BMSC)

Products Cyagen US Inc. Mesenchymal Stem Cell Growth Medium

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