产品名称
HSC-T6 Rat Hepatic Stellate Cell Line, The HSC-T6 rat hepatic stellate cell line is a valuable cell model for studies of retinoid metabolism based on their similar retinoid phenotype as primary cells.
biological source
rat
technique(s)
cell based assay: suitable
cell culture | mammalian: suitable
shipped in
ambient
Quality Level
Analysis Note
• Each vial contains ≥ 1X106 viable cells.
• Cells tested negative for infectious diseases by a Mouse/Rat Comprehensive CLEAR panel PCR panel by Charles River Animal Diagnostic Services.
• Cells tested negative for mycoplasma contamination.
• Cells tested negative for infectious diseases by a Mouse/Rat Comprehensive CLEAR panel PCR panel by Charles River Animal Diagnostic Services.
• Cells tested negative for mycoplasma contamination.
Application
Research Category
Metabolism
Infectious Diseases
Inflammation & Immunology
Stem Cell Research
Metabolism
Infectious Diseases
Inflammation & Immunology
Stem Cell Research
Research Sub Category
Liver Physiology
Liver Physiology
This product is intended for sale and sold solely to academic institutions for internal academic research use per the terms of the “Academic Use Agreement” as detailed in the product documentation. For information regarding any other use, please contact licensing@emdmillipore.com.
Biochem/physiol Actions
Hepatocyte Cells
General description
Hepatocytes and hepatic stellate cells play important roles in retinoid uptake, storage, mobilization and metabolism. Hepatic stellate cells represent only 5-7% of the total cells present in the liver. Isolation of primary stellate cells is thus time-consuming and often accompanied by low yields and considerable lot-to-lot variations. HSC-T6 Rat Hepatic Stellate Cell Line is an immortalized line isolated from SV40 large T-antigen transformed primary stellate cells of male Sprague-Dawley retired breeder rats. HSC-T6 Rat Hepatic Stellate Cell line is a useful model for the study of hepatic retinoid storage and metabolism.
Other Notes
1) ≥1X106 viable HSC-T6 Rat Hepatic Stellate Cells: (Catalog No. SCC069). Store in liquid nitrogen.
Preparation Note
HSC-T6 Rat Hepatic Stellate Cells should be stored in liquid nitrogen. The cells can be cultured for at least 10 passages after initial thawing without significantly affecting the cell marker expression and functionality.
存储类别
10 - Combustible liquids
wgk
WGK 3
flash_point_f
Not applicable
flash_point_c
Not applicable
Ryuichi Noguchi et al.
Molecular medicine reports, 22(4), 2948-2956 (2020-09-19)
An orally bioavailable small molecule inhibitor of plasminogen activator inhibitor‑1 (PAI‑1) is currently being clinically assessed as a novel antithrombotic agent. Although PAI‑1 is known to serve a key role in the pathogenesis of metabolic syndrome (MetS) including nonalcoholic steatohepatitis
Scott L Friedman et al.
Methods in molecular biology (Clifton, N.J.), 2669, 129-162 (2023-05-29)
Hepatic stellate cells (HSCs) are the major cellular source of extracellular matrix production in the liver. Therefore, this cell population has received considerable attention in studies investigating fundamental features of hepatic fibrosis. However, the limited supply and ever-increasing demand for
Hsiao-Hsuan Wang et al.
EBioMedicine, 64, 103213-103213 (2021-01-29)
Interleukin-24 (IL-24) binds to two kinds of receptor complexes, namely IL-20R1/IL-20R2 and IL-20R2/IL-22R1, which are also bound by IL-20. IL-20 plays a detrimental role in liver fibrosis. Due to the sharing of receptor complexes, we aimed to determine whether IL-24
Jiunn-Sheng Wu et al.
Evidence-based complementary and alternative medicine : eCAM, 2020, 8426051-8426051 (2020-07-28)
Hepatic stellate cell (HSC) activation is a vital driver of liver fibrosis. Recent research efforts have emphasized the clearance of activated HSCs by apoptosis, senescence, or reversion to the quiescent state. LPS induces human HSC activation directly and contributes to
Hongxia Liang et al.
ACS nano, 12(7), 6536-6544 (2018-06-27)
Acute liver failure is a critical condition characterized by global hepatocyte death and often time needs a liver transplantation. Such treatment is largely limited by donor organ shortage. Stem cell therapy offers a promising option to patients with acute liver
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