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鲎血细胞在人工表面的黏附与铺展。

Adhesion and spreading of Limulus blood cells on artificial surfaces.

作者信息

Armstrong P B

出版信息

J Cell Sci. 1980 Aug;44:243-62. doi: 10.1242/jcs.44.1.243.

Abstract

The horseshoe crab Limulus has a single cell type in the blood, the granular amoebocyte. These cells, which are non-adhesive and non-motile in the blood, transform to an adhesive and motile state following extravasation. In the present study, the events of transformation were studied by time-lapse microcinematography of cells plated on to glass. Following attachment of cells to the glass, the cells protrude filopods and engage in active motility. Motile cells show 2 convertible forms; a contracted form and a reversibly flattened form. Eventually the motile cells undergo irreversible flattening which is accompanied by spontaneous degranulation. The shapes of irreversibly spread cells are influenced by the arrangement of cell-substrate contacts established prior to degranulation, and by the pattern of contact of domains of granule-derived membrane introduced into the cell surface during granule exocytosis and their subsequent endoctyosis by the cell. The clottable protein released by spontaneous degranulation of the amoebocytes undergoes gelation in the absence of bacterial endotoxin. The ability to undergo spontaneous gelation stands in marked contrast to the absolute requirement for endotoxin for gelation of the clottable protein present in 'Limulus amoebocyte lysate', a commercially valuable preparation obtained from amoebocytes used to detect endotoxin.

摘要

鲎的血液中有单一的细胞类型,即颗粒变形细胞。这些细胞在血液中不具黏附性且不运动,外渗后会转变为具有黏附性且能运动的状态。在本研究中,通过对铺在玻璃上的细胞进行延时显微摄影来研究细胞转变的过程。细胞附着在玻璃上后,会伸出丝状伪足并进行活跃运动。运动的细胞呈现出两种可转换的形态:收缩形态和可逆扁平形态。最终,运动的细胞会经历不可逆的扁平过程,并伴有自发脱颗粒。不可逆铺展细胞的形状受脱颗粒前建立的细胞 - 底物接触的排列影响,也受颗粒外排期间引入细胞表面的颗粒衍生膜结构域的接触模式及其随后被细胞内吞的影响。变形细胞自发脱颗粒释放的可凝蛋白在没有细菌内毒素的情况下会发生凝胶化。这种自发凝胶化的能力与“鲎试剂”(一种从用于检测内毒素的变形细胞中获得的具有商业价值的制剂)中可凝蛋白凝胶化对内毒素的绝对需求形成鲜明对比。

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