siRNA / RNAi /miRNA transfection Human Cells THP-1

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Get tips on using AmpFLSTR™ Identifiler™ Direct PCR Amplification Kit to perform Cell line authentication Human iPSC cells derived from human dermal fibroblasts

Products Thermo Fisher Scientific AmpFLSTR™ Identifiler™ Direct PCR Amplification Kit

Get tips on using Live/Dead Cell Double Staining Kit to perform Live / Dead assay mammalian cells - MCF-7 human breast cancer cells

Products Sigma-Aldrich Live/Dead Cell Double Staining 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 HeLa cells

Cell culture media 3D Cell Culture Media Primary human breast tumors-Mammospheres

Cell culture media 3D Cell Culture Media Human blood-brain barrier organoid

Get tips on using ROS-ID® Total ROS/Superoxide detection kit to perform ROS assay cell type - A549 human adenocarcinomic human alveolar basal epithelial cells

Products Enzo Life Sciences ROS-ID® Total ROS/Superoxide detection kit

Reporter gene assays enable high sensitivity measurement of gene expression and cell signaling through the addition of bioluminescent genes into target cells. One of the major challenges is to make a specific construct that has no responses other than those related to the signaling pathway of interest. This can be achieved by selecting highly specific reporter constructs containing only defined responsive elements and a minimal promoter linked to reporter enzymes such as luciferase

Cellular assays Reporter gene assay luciferase BHK-21 baby hamster kidney cells

Reporter gene assays enable high sensitivity measurement of gene expression and cell signaling through the addition of bioluminescent genes into target cells. One of the major challenges is to make a specific construct that has no responses other than those related to the signaling pathway of interest. This can be achieved by selecting highly specific reporter constructs containing only defined responsive elements and a minimal promoter linked to reporter enzymes such as luciferase

Cellular assays Reporter gene assay β-galactosidase substrates HeLa cervical cancer cells

Reporter gene assays enable high sensitivity measurement of gene expression and cell signaling through the addition of bioluminescent genes into target cells. One of the major challenges is to make a specific construct that no responses other than those related to the signaling pathway of interest. This can be achieved by selecting a highly specific reporter constructs containing only defined responsive elements and a minimal promoter linked to reporter enzyme such as luciferase.

Cellular assays Reporter gene assay β-galactosidase substrates mouse mesenchymal stem cells

Reporter gene assays enable high sensitivity measurement of gene expression and cell signaling through the addition of bioluminescent genes into target cells. One of the major challenges is to make a specific construct that has no responses other than those related to the signaling pathway of interest. This can be achieved by selecting highly specific reporter constructs containing only defined responsive elements and a minimal promoter linked to reporter enzymes such as luciferase

Cellular assays Reporter gene assay β-galactosidase substrates mouse pancreatic stellate cells

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