血液相容性聚乳酸纳米结构:鸟瞰图

IF 1.4 Q4 NANOSCIENCE & NANOTECHNOLOGY Nanomedicine Journal Pub Date : 2020-10-01 DOI:10.22038/NMJ.2020.07.00002
farnaz-sadat Fattahi, T. Zamani
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引用次数: 2

摘要

近年来,临床设备在心血管治疗、血液透析系统和其他生物医学应用中的应用有所改善。聚乳酸生物聚合物等生物材料与血液的直接接触导致血小板、白细胞、凝血结构和补体级联的激活。聚乳酸是一种可持续、可再生、可堆肥、生物基、可生物降解、可生物吸收、生物相容的聚合物。这种聚合物在合成血液接触垫(如纳米纤维血管支架和血液透析纳米片)方面有许多应用。在心血管装置的整个移植过程中,血管壁的机械中断开始了局部止血反应。提高血液接触纳米结构移植物的安全性是主要的必要条件。控制蛋白质和血小板与血液接触生物材料表面的相互作用是一个重要因素。因此,评估这些物质对血液的影响是必要的。本文引用了过去十年中发表的80多篇文章,并综述了血液接触领域中使用的聚乳酸纳米结构的最新血液相容性测定。
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Hemocompatibility poly (lactic acid) nanostructures: A bird’s eye view
The usage of clinical devices in the cardiovascular treatment, hemodialyze system and other biomedical applications has improved recently. Direct contacts of biomaterials like poly(lactic acid) biopolymer with blood result in the activating of platelets, white blood cells , coagulation structure and complement cascades. Poly(lactic acid) is a sustainable, renewable, compostable, biobased, biodegradable, bioabsorbable , biocompatible polymer. This polymer has many applications in the synthesis of blood contacting mats like nanofibrous vascular scaffolds and hemodialyze nanosheets.Mechanical interruption of the blood vessel wall throughout grafting of cardiovascular devices starts local hemostatic replies. Improving the safety of the blood contacting nanostructure grafts is a main necessity. The controlling of the interactions of proteins and platelets to the surface of a blood contacting biomaterial is a significant factor. So, the assessments of these material’s influences on blood are necessary.This article references more than 80 articles published in the last decade and reviews the latest hemocompatibility assays of poly(lactic acid) nanostructures used in the blood contacting field.
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来源期刊
Nanomedicine Journal
Nanomedicine Journal NANOSCIENCE & NANOTECHNOLOGY-
CiteScore
3.40
自引率
0.00%
发文量
0
审稿时长
12 weeks
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