首页> 外文期刊>The Journal of Membrane Biology: An International Journal for Studies on the Structure, Function & Genesis of Biomembranes >Increase in Neuropilin-1 on the Surface of Growth Cones and Putative Raft Domains in Neuronal NG108-15 Cells Co-Cultured with Vascular Smooth Muscle SM-3 Cells
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Increase in Neuropilin-1 on the Surface of Growth Cones and Putative Raft Domains in Neuronal NG108-15 Cells Co-Cultured with Vascular Smooth Muscle SM-3 Cells

机译:与血管平滑肌SM-3细胞共同培养的神经元NG108-15细胞中生长锥和推定筏域表面上Neuropilin-1的增加

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摘要

The mechanisms underlying autonomic innervation to its targets involve various chemical factors, but have not yet been elucidated in detail. We constructed a co-culture system of neuronal cells and vascular smooth muscle cells to investigate the mechanisms underlying innervation of the vasculature. A co-culture with the vascular smooth muscle cell line, SM-3 significantly promoted cell viability, neurite extension, and neuropilin-1 (Nrp-1) mRNA expression in the cholinergic neuronal cell line, NG108-15. Furthermore, immunocytochemistry with or without a detergent treatment revealed that a co-culture with SM-3 cells or culturing with the conditioned medium of SM-3 cells translocated Nrp-1 onto the cell surface of growth cones rather than varicosities of NG108-15 cells. Immunofluorescent microscopy combined with a cold detergent treatment or cholesterol depletion revealed that Nrp-1 accumulated in putative raft domains in the plasma membrane of NG108-15 cells co-cultured with SM-3 cells. The results of the present study suggest that some soluble factors from smooth muscle cells may affect the localization of Nrp-1 in cholinergic neuronal cells, which may, in turn, be involved in the autonomic innervation of blood vessels.
机译:自主神经支配其靶标的机制涉及各种化学因素,但尚未详细阐明。我们构建了神经元细胞和血管平滑肌细胞的共培养系统,以研究脉管系统神经支配的机制。与血管平滑肌细胞系SM-3的共培养可显着促进胆碱能神经元细胞NG108-15中的细胞活力,神经突延伸和Neuropilin-1(Nrp-1)mRNA表达。此外,有或没有去污剂处理的免疫细胞化学表明,与SM-3细胞共培养或与SM-3细胞的条件培养基一起培养将Nrp-1转移到生长锥的细胞表面,而不是NG108-15细胞的静脉曲张。 。免疫荧光显微镜结合冷去污剂处理或胆固醇枯竭显示,Nrp-1累积在与SM-3细胞共培养的NG108-15细胞质膜的推定筏域中。本研究的结果表明,来自平滑肌细胞的某些可溶性因子可能会影响胆碱能神经元细胞中Nrp-1的定位,进而可能参与血管的自主神经支配。

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