siRNA / miRNA gene silencing Human PC3 (human prostate cancer cell line)

- Found 9155 results

Get tips on using Senescence β-Galactosidase Staining Kit - Cell Signaling to perform Reporter gene assay β-galactosidase substrates - U2OS

Products Cell Signaling Technology Senescence β-Galactosidase Staining Kit - Cell Signaling

Get tips on using Click-iT™ EdU Pacific Blue™ Flow Cytometry Assay Kit to perform Cell cycle assay human - MCF 10A

Products Thermo Fisher Scientific Click-iT™ EdU Pacific Blue™ Flow Cytometry Assay Kit

Get tips on using Click-iT™ EdU Pacific Blue™ Flow Cytometry Assay Kit to perform Cell cycle assay human - PANC-1

Products Thermo Fisher Scientific Click-iT™ EdU Pacific Blue™ Flow Cytometry Assay Kit

Get tips on using Click-iT™ Plus EdU Pacific Blue™ Flow Cytometry Assay Kit to perform Cell cycle assay human - A549

Products Thermo Fisher Scientific Click-iT™ Plus EdU Pacific Blue™ Flow Cytometry Assay Kit

Get tips on using Click-iT™ Plus EdU Pacific Blue™ Flow Cytometry Assay Kit to perform Cell cycle assay human - SKOV3

Products Thermo Fisher Scientific Click-iT™ Plus EdU Pacific Blue™ Flow Cytometry Assay Kit

Get tips on using DeadEnd™ Colorimetric TUNEL System to perform TUNEL assay cell type - HNSCC Detroit 562 human head and neck tumor cells

Products Promega DeadEnd™ Colorimetric TUNEL System

Stem cells have the unique ability to self-renew or differentiate themselves into various cell types in response to appropriate signals. These cells are especially important for tissue repair, regeneration, replacement, or in the case of hematopoietic stem cells (HSCs) to differentiate into various myeloid populations. Appropriate signals refer to the growth factor supplements or cytokines that mediate differentiation of various stem cells into the required differentiated form. For instance, HSCs can be differentiated into dendritic cells (with IL-4 and GM-CSF), macrophages (with m-CSF) and MDSCs (with IL-6 and GM-CSF). Human pluripotent stem cells (hPSCs) and induced pluripotent stem cells (iPSCs) can be first cultured in neural differentiation media (GSK3𝛃-i, TGF𝛃-i, AMPK-i, hLIF) to form neural rosettes, which can be differentiated into neural or glial progenitors (finally differentiated into oligodendrocytes). Neural progenitors can be finally differentiated into glutaminergic (dibytyryl cAMP, ascorbic acid) and dopaminergic (SHH, FGF-8, BDNF, GDNF, TGF-𝛃3) neurons. Thus, it is important to first identify the self-renewing cell line: its source and its final differentiation state, followed by the supplements and cytokines required for the differentiation, and final use. Timelines are another thing that is considered. For instance, it takes 7-10 days to form neural rosettes from iPSCs and 3 days to differentiate neural progenitors to neurons. Finally, the stability for stem cell culture media varies. It is advised to make fresh media every time when differentiating HSCs to myeloid populations, whereas neural differentiation media may remain stable for two weeks when stored in dark between 2-8C.

Cell culture media Stem cell Differentiation media hESCs differentiation into SFEBq

Stem cells have the unique ability to self-renew or differentiate themselves into various cell types in response to appropriate signals. These cells are especially important for tissue repair, regeneration, replacement, or in the case of hematopoietic stem cells (HSCs) to differentiate into various myeloid populations. Appropriate signals refer to the growth factor supplements or cytokines that mediate differentiation of various stem cells into the required differentiated form. For instance, HSCs can be differentiated into dendritic cells (with IL-4 and GM-CSF), macrophages (with m-CSF) and MDSCs (with IL-6 and GM-CSF). Human pluripotent stem cells (hPSCs) and induced pluripotent stem cells (iPSCs) can be first cultured in neural differentiation media (GSK3𝛃-i, TGF𝛃-i, AMPK-i, hLIF) to form neural rosettes, which can be differentiated into neural or glial progenitors (finally differentiated into oligodendrocytes). Neural progenitors can be finally differentiated into glutaminergic (dibytyryl cAMP, ascorbic acid) and dopaminergic (SHH, FGF-8, BDNF, GDNF, TGF-𝛃3) neurons. Thus, it is important to first identify the self-renewing cell line: its source and its final differentiation state, followed by the supplements and cytokines required for the differentiation, and final use. Timelines are another thing that is considered. For instance, it takes 7-10 days to form neural rosettes from iPSCs and 3 days to differentiate neural progenitors to neurons. Finally, the stability for stem cell culture media varies. It is advised to make fresh media every time when differentiating HSCs to myeloid populations, whereas neural differentiation media may remain stable for two weeks when stored in dark between 2-8C.

Cell culture media Stem cell Differentiation media hMSCs differentiation into pericytes

Get tips on using Gibco™ DMEM, high glucose, GlutaMAX™ Supplement to perform Stem cell culture media Human Dental pulp stem cells (hDPSC)

Products Thermo Fisher Scientific Gibco™ DMEM, high glucose, GlutaMAX™ Supplement

Get tips on using QIA33 | FragEL™ DNA Fragmentation Detection Kit, Colorimetric - TdT Enzyme to perform Apoptosis assay cell type - Human endometrial stromal cells

Products Millipore QIA33 | FragEL™ DNA Fragmentation Detection Kit, Colorimetric - TdT Enzyme

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