ChIP acH3 Human Donkey

- Found 3474 results

Get tips on using PE Mouse Anti-Human CD184 to perform Flow cytometry Anti-bodies Human - CD184/CXCR4

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Get tips on using APC Mouse Anti-Human CD184 to perform Flow cytometry Anti-bodies Human - CD184/CXCR4

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Get tips on using FITC Mouse Anti-Human CD36 to perform Flow cytometry Anti-bodies Human - CD36/CB38

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Get tips on using Purified Mouse Anti-Human CD36 to perform Flow cytometry Anti-bodies Human - CD36/CB38

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Get tips on using FITC Rat Anti-Human CD49f to perform Flow cytometry Anti-bodies Human - CD49f/ITGA6

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Get tips on using ON-TARGETplus human ATG16L1 siRNA to perform siRNA / miRNA gene silencing Human - SHSY5Y ATG16L1

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Get tips on using MISSION® esiRNA_ human CCL2 to perform siRNA / miRNA gene silencing Human - U251 CCL2

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Get tips on using ON-TARGETplus Human TET1 siRNA to perform siRNA / miRNA gene silencing Human - A172 TET1

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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 Cells immortalized human pancreatic cancer

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 Cells primary human epithelial cells

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