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首页> 外文期刊>Journal of industrial and engineering chemistry >Refined fabrication of mechano-stimulating micro-platform for on-chip analyses of complex platelet behavior
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Refined fabrication of mechano-stimulating micro-platform for on-chip analyses of complex platelet behavior

机译:精致的机械刺激微平台制造用于复杂血小板行为的片上分析

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摘要

Platelets can sense their surroundings as they crawl in search of optimal surface to adhere before activation, but the detailed mechanism has not been fully explored in different microenvironments. Herein, various aspects of platelet behavior, including morphology, movement and biomarker expression, were multilaterally examined on mechanically stimulating surfaces, with controlled rigidity and roughness, to elucidate the effect of microenvironment without chemical stimulus. The platelets demonstrated different movement behavior (e.g. back-and-forth and forward crawling), and motility, as well as varying degrees of spreading with lamellipodial and filopodial projections, based on varying mechanical microenvironments. Furthermore, after initial activation, the platelets all became stationary and the cell spreading became more prominent, while still maintaining their movement potential. P-selectin expression, along with alpha-granule and open canalicular system (OCS) distributions, all supported the morphological and movement behavior. These results strongly indicated that the mechanical microenvironment played a key role in the regulation of complex platelet activities. (C) 2020 The Korean Society of Industrial and Engineering Chemistry. Published by Elsevier B.V. All rights reserved.
机译:血小板可以在激活之前寻找最佳表面以爬行以寻找最佳表面来感知周围环境,但在不同的微环境中没有完全探索详细的机制。这里,血小板行为的各个方面,包括形态,运动和生物标志物表达,在机械刺激表面上多边地检查,具有受控刚性和粗糙度,以阐明微环境而不没有化学刺激的影响。基于不同的机械微环境,血小板展示了不同的运动行为(例如前后和前后爬行),以及与层层和箔片突起的不同程度的扩散。此外,在初始激活之后,血小板都变得静止,电池扩散变得更加突出,同时仍然保持其运动势。 P-SELETIN表达,以及α-颗粒和开放的穴位系统(OCS)分布,所有人都支持了形态和运动行为。这些结果强烈表示机械微环境在复杂血小板活动的调节中发挥了关键作用。 (c)2020朝鲜工业与工程化学学会。 elsevier b.v出版。保留所有权利。

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