siRNA / miRNA gene silencing Human OV2008 Yap Gene

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Get tips on using APC Mouse Anti-Human B7-H4 to perform Flow cytometry Anti-bodies Human - B7-H4

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Get tips on using APC anti-human CD326 (EpCAM) Antibody to perform Flow cytometry Anti-bodies Human - CD326/EpCAM

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Get tips on using APC anti-human/mouse CD49f Antibody to perform Flow cytometry Anti-bodies Human - CD49f/ITGA6

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The estimation of DNA methylation level heavily depends on the complete conversion of non-methylated DNA cytosines. It is crucial to ensure complete conversion of non-methylated cytosines in DNA. Therefore, it is important to incorporate controls for bisulfite reactions, as well as to pay attention to the appearance of cytosines in non-CpG sites after sequencing, which is an indicator of incomplete conversion.

DNA DNA methylation profiling Whole genome profiling human placenta

Get tips on using IntestiCult™ Organoid Growth Medium (Human) to perform 3D Cell Culture Media Human gastric cancer organoids

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Get tips on using IntestiCult™ Organoid Growth Medium (Human) to perform 3D Cell Culture Media Human pancreatic cancer organoids

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Get tips on using IntestiCult™ Organoid Growth Medium (Human) to perform 3D Cell Culture Media Human cancer colon organoids

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Get tips on using IntestiCult™ Organoid Growth Medium (Human) to perform 3D Cell Culture Media Human small intestinal organoids

Products STEMCELL technologies IntestiCult™ Organoid Growth Medium (Human)

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 endometrial stromal cells

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 pancreatic stellate cells

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