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51.
Summary Cocultures of human umbilical vein endothelial cells (ECV304) and rat glioma cells (C6) from two commercial sources, American Type Culture Collection and European Collection of Animal Cell Cultures, were evaluated as an in vitro model for the blood-brain barrier. Monolayers of endothelial cells grown in the presence or absence of glial cells were examined for transendothelial electrical resistance, sucrose permeability, morphology, multidrug resistance-associated protein expression, and P-glycoprotein expression and function. Coculture of glial cells with endothelial cells increased electrical resistance and decreased sucrose permeability across European endothelial cell monolayers, but had no effect on American endothelial cells. Coculture of European glial cells with endothelial cells caused cell flattening and decreased cell stacking with both European and American endothelial cells. No P-glycoprotein or multidrug resistance-associated protein was immunodetected in endothelial cells grown in glial cell-conditioned medium. Functional P-glycoprotein was demonstrated in American endothelial cells selected in vinblastine-containing medium over eight passages, but these cells did not form a tight endothelium. In conclusion, while European glial cells confer blood-brain barrier-like morphology and barrier integrity to European endothelial cells in coculture, the European endothelial-glial cell coculture model does not express P-glycoprotein, normally found at the blood-brain barrier. Further, the response of endothelial cells to glial factors was dependent on cell source, implying heterogeneity among cell populations. On the basis of these observations, the umbilical vein endothelial cell-glial cell coculture model does not appear to be a viable model for predicting blood-brain barrier penetration of drug molecules.  相似文献   
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《Developmental neurobiology》2017,77(9):1114-1129
We evaluated the expression and function of the microglia‐specific growth factor, Progranulin‐a (Pgrn‐a) during developmental neurogenesis in the embryonic retina of zebrafish. At 24 hpf pgrn‐a is expressed throughout the forebrain, but by 48 hpf pgrn‐a is exclusively expressed by microglia and/or microglial precursors within the brain and retina. Knockdown of Pgrn‐a does not alter the onset of neurogenic programs or increase cell death, however, in its absence, neurogenesis is significantly delayed—retinal progenitors fail to exit the cell cycle at the appropriate developmental time and postmitotic cells do not acquire markers of terminal differentiation, and microglial precursors do not colonize the retina. Given the link between Progranulin and cell cycle regulation in peripheral tissues and transformed cells, we analyzed cell cycle kinetics among retinal progenitors following Pgrn‐a knockdown. Depleting Pgrn‐a results in a significant lengthening of the cell cycle. These data suggest that Pgrn‐a plays a dual role during nervous system development by governing the rate at which progenitors progress through the cell cycle and attracting microglial progenitors into the embryonic brain and retina. Collectively, these data show that Pgrn‐a governs neurogenesis by regulating cell cycle kinetics and the transition from proliferation to cell cycle exit and differentiation. © 2017 The Authors. Developmental Neurobiology Published by Wiley Periodicals, Inc. Develop Neurobiol 77: 1114–1129, 2017  相似文献   
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Schlank is a member of the highly conserved ceramide synthase family and controls growth and body fat in Drosophila. Ceramide synthases are key enzymes in the sphingolipid de novo synthesis pathway. Ceramide synthase proteins and the (dihydro)ceramide produced are involved in a variety of biological processes among them apoptosis and neurodegeneration. The full extent of their involvement in these processes will require a precise analysis of the distribution and expression pattern of ceramide synthases. Paralogs of the ceramide synthase family have been found in all eukaryotes studied, however the mRNA and protein expression patterns have not yet been analysed systematically. In this study, we use antibodies that specifically recognize Schlank, a schlank mRNA probe and an endogenous schlank promoter driven LacZ reporter line to reveal the expression pattern of Schlank throughout embryogenesis. We found that Schlank is expressed in all embryonic epithelia during embryogenesis including the developing epidermis and the gastrointestinal tract. In addition, Schlank is upregulated in the developing central (CNS) and peripheral nervous system (PNS). Co-staining experiments with neuronal and glial markers revealed specific expression of Schlank in glial and neuronal cells of the CNS and PNS.  相似文献   
55.
白色脂肪合成和分泌的瘦蛋白(leptin)作用于下丘脑和外周的代谢产热器官,对摄食和能量平衡起调节作用。摄食和能量平衡的失调,如瘦蛋白抵抗,可以导致肥胖等一系列生理疾病。以体内贮存的脂肪为主要能源物质越冬的冬眠哺乳动物,体重的年周期波动幅度巨大,其摄食和能量平衡调节机制可能不同于一般的非冬眠物种,育肥阶段可能存在瘦蛋白抵抗机制。本文总结了瘦蛋白调节摄食和能量平衡的作用机制以及瘦蛋白对冬眠哺乳动物育肥和冬眠的影响,为进一步研究冬眠哺乳动物的能量平衡提供参考。  相似文献   
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microRNAs(miRNAs)不仅参与神经系统的生长发育、功能完善,还参与脊髓损伤病理及损伤后修复过程。miRNAs能使中枢神经系统按正确的时序性和空间性顺序进行发育和分化,在维持生物体记忆及生物钟方面起着重要作用。miRNAs异常表达同脊髓损伤病理过程相关。目前,体内及体外实验均已证实,miRNAs不仅能够维持神经干细胞增殖,而且可以促进神经元轴突伸长,从而为脊髓损伤的治疗带来新的治疗策略。  相似文献   
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目的:检测中枢神经系统疾病患者脑脊液中免疫球蛋白与IL-6的表达情况并探讨其临床意义。方法:采用罗氏C6000仪器通过免疫发光法检测和比较本院收治的30例正常人、61例脑炎患者、51例头痛患者、30例肌无力患者以及35例脑梗死患者的脑脊液中IgAcsf、IgMcsf、IgGcsf、AIbcsf与IL-6的表达。结果:除头痛患者外,其他中枢神经系统疾病患者的脑脊液中IgAcsf、IgMcsf、IgGcsf、AIbcsf蛋白的表达量均高于正常人群,且脑炎患者与肌无力患者的脑脊液中IgAcsf、IgMcsf蛋白的表达量均高于头痛患者,脑梗死患者的脑脊液中IgMcsf、IgGcsf蛋白的表达量高于头痛患者,肌无力患者的脑脊液中IgGcsf蛋白的表达量高于头痛患者,脑梗死患者的脑脊液中IL-6蛋白的表达量明显高于脑炎、头痛和肌无力患者,差异均具有统计学意义(P0.05)。结论:脑脊液中免疫球蛋白、IL-6的表达异常与中枢神经系统感染性疾病的发生有关,且在不同种类的中枢神经系统疾病之间存在差异,可能有助于预防、治疗和诊断中枢神经系统疾病。  相似文献   
60.
This review discusses all pyridine alkaloids with CNS activity, their therapeutic potential, and the interesting array of sources whence they originate.  相似文献   
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