脉络丛位于大脑的脑室中,负责不断产生脑脊液(CSF)。它由一层上皮细胞包裹的毛细血管网络组成,共同形成血液-CSF屏障。脉络丛上皮细胞(CPEpiC)在限制分子和离子在大脑与CSF之间的通过方面发挥着重要作用,主要通过相邻细胞之间的连接复合物。它们还具有特殊的细胞结构,以及适合CSF分泌的通道和转运蛋白表达。以往的研究进一步证明,CPEpiC在应对中枢神经系统的缺血和创伤性损伤时,通过合成和分泌多种具有滋养效益的生长因子和肽,利用自分泌和旁分泌机制促进恢复。CPEpiC培养物是研究血液-CSF屏障交换过程、CSF稳态等方面的理想模型。
来自ScienCell研究实验室的HCPEpiC是从人类脉络丛中分离的。HCPEpiC在纯化后进行冷冻保存,交付时为冷冻状态。每瓶包含 >5 x 105个细胞,体积为1毫升。HCPEpiC通过特异性抗体对细胞角蛋白-18和/或细胞角蛋白-19进行免疫荧光鉴定。HCPEpiC对HIV-1、HBV、HCV、支原体、细菌、酵母和真菌均呈阴性。HCPEpiC在ScienCell研究实验室提供的条件下,保证可进一步扩增5个代数倍。
推荐培养基
推荐使用上皮细胞培养基(EpiCM,Cat. #4101)在体外培养HCPEpiC。
Product Sheets
1310
Search for a Certificate of Analysis by Lot Number below:
Background: The content and composition of cerebrospinal fluid (CSF) is determined in large part by the choroid plexus (CP) and specifically, a specialized epithelial cel... More
Background: The content and composition of cerebrospinal fluid (CSF) is determined in large part by the choroid plexus (CP) and specifically, a specialized epithelial cell (CPe) layer that responds to, synthesizes, and transports peptide hormones into and out of CSF. Together with ventricular ependymal cells, these CPe relay homeostatic signals throughout the central nervous system (CNS) and regulate CSF hydrodynamics. One new candidate signal is augurin, a newly recognized 14 kDa protein that is encoded by esophageal cancer related gene-4 (Ecrg4), a putative tumor suppressor gene whose presence and function in normal tissues remains unexplored and enigmatic. The aim of this study was to explore whether Ecrg4 and its product augurin, can be implicated in CNS development and the response to CNS injury. Methods: Ecrg4 gene expression in CNS and peripheral tissues was studied by in situ hybridization and quantitative RT-PCR. Augurin, the protein encoded by Ecrg4, was detected by immunoblotting, immunohistochemistry and ELISA. The biological consequence of augurin over-expression was studied in a cortical stab model of rat CNS injury by intra-cerebro-ventricular injection of an adenovirus vector containing the Ecrg4 cDNA. The biological consequences of reduced augurin expression were evaluated by characterizing the CNS phenotype caused by Ecrg4 gene knockdown in developing zebrafish embryos. Results: Gene expression and immunohistochemical analyses revealed that, the CP is a major source of Ecrg4 in the CNS and that Ecrg4 mRNA is predominantly localized to choroid plexus epithelial (CPe), ventricular and central canal cells of the spinal cord. After a stab injury into the brain however, both augurin staining and Ecrg4 gene expression decreased precipitously. If the loss of augurin was circumvented by over-expressing Ecrg4 in vivo, BrdU incorporation by cells in the subependymal zone decreased. Inversely, gene knockdown of Ecrg4 in developing zebrafish embryos caused increased proliferation of GFAP-positive cells and induced a dose-dependent hydrocephalus-like phenotype that could be rescued by co-injection of antisense morpholinos with Ecrg4 mRNA. Conclusion: An unusually elevated expression of the Ecrg4 gene in the CP implies that its product, augurin, plays a role in CP-CSF-CNS function. The results are all consistent with a model whereby an injury-induced decrease in augurin dysinhibits target cells at the ependymal-subependymal interface. We speculate that the ability of CP and ependymal epithelium to alter the progenitor cell response to CNS injury may be mediated, in part by Ecrg4. If so, the canonic control of its promoter by DNA methylation may implicate epigenetic mechanisms in neuroprogenitor fate and function in the CNS. Less
Approximately 500 million people worldwide are chronically infected with the hepatitis B virus (HBV) or hepatitis C virus (HCV), and are therefore at an increased risk fo... More
Approximately 500 million people worldwide are chronically infected with the hepatitis B virus (HBV) or hepatitis C virus (HCV), and are therefore at an increased risk for developing fatal liver diseases such as cirrhosis and hepatocellular carcinoma. The intracellular antiviral responses induced by interferon (IFN)-α/-β and/or IFN-γ play critical roles in the pathogenesis of HBV and HCV infection, and the function of IFN-λ in the host immune response to these viruses is beginning to be revealed. A better understanding of how IFN-λ influences HBV or HCV persistence is not only important for understanding the mechanisms of chronic virus infection, but also may lead to new approaches for improved antiviral therapies. Less
ScienCell Research Laboratories (SRL) takes pride in being a resource for researchers all over the world. The publications listed here are not meant as an endorsement or confirmation of the reliability of the products.