rna-isolation-purification-cells-immortalized-b35

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Get tips on using Lipofectamine® 2000 Transfection Reagent to perform DNA transfection Mammalian cells - Primary cells Human osteoblasts

Products Thermo Fisher Scientific Lipofectamine® 2000 Transfection Reagent

Get tips on using FuGENE® 6 Transfection Reagent to perform DNA transfection Mammalian cells - Primary cells Human chondrocytes

Products Promega FuGENE® 6 Transfection Reagent

Get tips on using Lipofectamine™ 3000 Transfection Reagent to perform DNA transfection Mammalian cells - Primary cells Human chondrocytes

Products Thermo Fisher Scientific Lipofectamine™ 3000 Transfection Reagent

Get tips on using RNeasy Protect Animal Blood Kit (50) to perform RNA stabilization Blood

Products Qiagen RNeasy Protect Animal Blood Kit (50)

Get tips on using EasySep™ Human B Cell Enrichment Kit II Without CD43 Depletion to perform Cell Isolation B cell

Products STEMCELL technologies EasySep™ Human B Cell Enrichment Kit II Without CD43 Depletion
JetPrime Product

Get tips on using JetPrime to perform DNA transfection Mammalian cells - Primary cells Human chondrocytes

Products Polyplus transfections JetPrime

Get tips on using pEGFP-INHα to perform Protein Expression Eukaryotic cells - BHK cells INHα

Products Yaling Gu, Agriculture College, Ningxia University, Yinchuan, Ch pEGFP-INHα

Get tips on using Targefect-HUVEC to perform DNA transfection Mammalian cells - Primary cells HUVEC

Products Targeting Systems Targefect-HUVEC

Short hairpin or small hairpin RNA (shRNA) is artificial RNA, which has a hairpin loop structure, and uses inherent microRNA (miRNA) machinery to silence target gene expression. This is called RNA interference (RNAi). These can be delivered via plasmids or viral/bacterial vectors. Challenges in shRNA-mediated gene silencing include 1. Off-target silencing, 2. Packaging shRNA encoding lentivirus, and 3. Stable transduction in cells. RNAi has been designed to have anywhere from 19-27 bs, but the most effective design has 19 bp. In case commercial shRNAs are not available, potential target sites can be chosen within exon, 5’- or 3’ UTR, depending on which splice variants of the gene are desired. One should use the latest algorithms and choose at least two different sequences, targeting different regions, in order to have confidence in overcoming off-target effects. A BLAST search after selecting potential design will eliminate potential off-target sequences. For the second challenge, sequencing the vector using primers for either strand (50-100 bp upstream) is suggested, along with using enzymatic digestion on agarose gel for the vector. Next, once the shRNA-containing vector is packaged in a virus, it is important to check the viral titer before transduction. Finally, using a marker in the lentiviral vector (fluorescent protein or antibiotic resistance), along with qPCR for target gene expression can help in determining the efficacy of transduction and shRNA on its target site.

RNA shRNA gene silencing Rat MM1 SSH1

Short hairpin or small hairpin RNA (shRNA) is artificial RNA, which has a hairpin loop structure, and uses inherent microRNA (miRNA) machinery to silence target gene expression. This is called RNA interference (RNAi). These can be delivered via plasmids or viral/bacterial vectors. Challenges in shRNA-mediated gene silencing include 1. Off-target silencing, 2. Packaging shRNA encoding lentivirus, and 3. Stable transduction in cells. RNAi has been designed to have anywhere from 19-27 bs, but the most effective design has 19 bp. In case commercial shRNAs are not available, potential target sites can be chosen within exon, 5’- or 3’ UTR, depending on which splice variants of the gene are desired. One should use the latest algorithms and choose at least two different sequences, targeting different regions, in order to have confidence in overcoming off-target effects. A BLAST search after selecting potential design will eliminate potential off-target sequences. For the second challenge, sequencing the vector using primers for either strand (50-100 bp upstream) is suggested, along with using enzymatic digestion on agarose gel for the vector. Next, once the shRNA-containing vector is packaged in a virus, it is important to check the viral titer before transduction. Finally, using a marker in the lentiviral vector (fluorescent protein or antibiotic resistance), along with qPCR for target gene expression can help in determining the efficacy of transduction and shRNA on its target site.

RNA shRNA gene silencing Rat MM1 SSH2

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