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中性粒细胞在细胞外基质凝胶中的运动:网格大小和黏附作用影响迁移速度。

Neutrophil motility in extracellular matrix gels: mesh size and adhesion affect speed of migration.

作者信息

Kuntz R M, Saltzman W M

机构信息

Department of Chemical Engineering, Johns Hopkins University, Baltimore, Maryland 21218, USA.

出版信息

Biophys J. 1997 Mar;72(3):1472-80. doi: 10.1016/S0006-3495(97)78793-9.

Abstract

Polymorphonuclear leukocyte (PMN) migration through tissue extracellular space is an essential step in the inflammatory response, but little is known about the factors influencing PMN migration through gels of extracellular matrix (ECM). In this study, PMN migration within reconstituted gels containing collagen type I or collagen type I supplemented with laminin, fibronectin, or heparin was measured by quantitative direct visualization, resulting in a random motility coefficient (mum a quantitative index for rate of cell dispersion) for the migrating cell population. The random motility coefficient in unsupplemented collagen (0.4 mg/ml) gels was approximately 9 x 10(-9) cm2/s. Supplementing gels with heparin or fibronectin produced a significant decrease in mu, even at the lowest concentrations studied (1 microgram/ml fibronectin or 0.4 microgram/ml heparin). At least 100 micrograms/ml of laminin, or 20% of the total gel protein, was required to produce a similar decrease in mu. Scanning electron microscopy revealed two different gel morphologies: laminin or fibronectin appeared to coat the 150-nm collagen fibers whereas heparin appeared to induce fiber bundle formation and, therefore, larger interstitial spaces. The decrease in mu observed in heparin-supplemented gels correlated with the increased mesh size of the fiber network, but the difference observed in mu for fibronectin- and laminin-supplemented gels did not correlate with either mesh size or the mechanical properties of the gel, as determined by rheological measurements. However, PMNs adhered to fibronectin-coated surfaces in greater numbers than to collagen- or laminin-coated surfaces, suggesting that changes in cell adhesion to protein fibers can also produce significant changes in cell motility within an ECM gel.

摘要

多形核白细胞(PMN)通过组织细胞外间隙的迁移是炎症反应中的一个重要步骤,但关于影响PMN通过细胞外基质(ECM)凝胶迁移的因素却知之甚少。在本研究中,通过定量直接可视化测量了PMN在含有I型胶原蛋白或补充了层粘连蛋白、纤连蛋白或肝素的I型胶原蛋白的重组凝胶中的迁移,得出了迁移细胞群体的随机运动系数(μm,细胞分散速率的定量指标)。未添加补充剂的胶原蛋白(0.4 mg/ml)凝胶中的随机运动系数约为9×10⁻⁹ cm²/s。即使在研究的最低浓度下(1 μg/ml纤连蛋白或0.4 μg/ml肝素),向凝胶中添加肝素或纤连蛋白也会使μm显著降低。至少需要100 μg/ml的层粘连蛋白或总凝胶蛋白的20%才能使μm产生类似的降低。扫描电子显微镜揭示了两种不同的凝胶形态:层粘连蛋白或纤连蛋白似乎覆盖在150 nm的胶原纤维上,而肝素似乎诱导纤维束形成,从而形成更大的间隙空间。在添加肝素的凝胶中观察到的μm降低与纤维网络网孔大小的增加相关,但在添加纤连蛋白和层粘连蛋白的凝胶中观察到的μm差异与网孔大小或通过流变学测量确定的凝胶机械性能均无关。然而,PMN附着在纤连蛋白包被表面的数量比附着在胶原或层粘连蛋白包被表面的数量更多,这表明细胞与蛋白纤维的黏附变化也会在ECM凝胶中引起细胞运动的显著变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1fd1/1184529/0a52805455c3/biophysj00036-0495-a.jpg

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