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具有改善的X射线不透明度、抗炎和再内皮化功能的多功能可生物降解血管PLLA支架

Multifunctional Biodegradable Vascular PLLA Scaffold with Improved X-ray Opacity, Anti-Inflammation, and Re-Endothelization.

作者信息

Lee Ho In, Heo Yun, Baek Seung-Woon, Kim Da-Seul, Song Duck Hyun, Han Dong Keun

机构信息

Department of Biomedical Science, CHA University, 335 Pangyo-ro, Bundang-gu, Seongnam-si 13488, Korea.

Department of Biomedical Engineering, SKKU Institute for Convergence, Sungkyunkwan University (SKKU), 2066 Seobu-ro, Jangan-gu, Suwon-si 16419, Korea.

出版信息

Polymers (Basel). 2021 Jun 16;13(12):1979. doi: 10.3390/polym13121979.

Abstract

Poly(L-lactic acid) (PLLA) has been used as a biodegradable vascular scaffold (BVS) material due to high mechanical property, biodegradability, and biocompatibility. However, acidic byproducts from hydrolysis of PLLA reduce the pH after the surrounding implanted area and cause inflammatory responses. As a result, severe inflammation, thrombosis, and in-stent restenosis can occur after implantation by using BVS. Additionally, polymers such as PLLA could not find on X-ray computed tomography (CT) because of low radiopacity. To this end, here, we fabricated PLLA films as the surface of BVS and divided PLLA films into two coating layers. At the first layer, PLLA film was coated by 2,3,5-triiodobenzoic acid (TIBA) and magnesium hydroxide (MH) with poly(D,L-lactic acid) (PDLLA) for radiopaque and neutralization of acidic environment, respectively. The second layer of coated PLLA films is composed of polydopamine (PDA) and then cystamine (Cys) for the generation of nitric oxide (NO) release, which is needed for suppression of smooth muscle cells (SMCs) and proliferation of endothelial cells (ECs). The characterization of the film surface was conducted via various analyses. Through the surface modification of PLLA films, they have multifunctional abilities to overcome problems of BVS effectively such as X-ray penetrability, inflammation, thrombosis, and neointimal hyperplasia. These results suggest that the modification of biodegradable PLLA using TIBA, MH, PDA, and Cys will have important potential in implant applications.

摘要

聚(L-乳酸)(PLLA)因其具有高机械性能、生物可降解性和生物相容性,已被用作生物可降解血管支架(BVS)材料。然而,PLLA水解产生的酸性副产物会降低植入区域周围的pH值,并引发炎症反应。因此,使用BVS植入后可能会发生严重炎症、血栓形成和支架内再狭窄。此外,由于射线不透性低,诸如PLLA之类的聚合物在X射线计算机断层扫描(CT)中无法显影。为此,我们在此制备了PLLA薄膜作为BVS的表面,并将PLLA薄膜分为两个涂层。在第一层,PLLA薄膜分别用2,3,5-三碘苯甲酸(TIBA)和氢氧化镁(MH)与聚(D,L-乳酸)(PDLLA)进行涂层,以分别实现射线不透性和中和酸性环境。涂覆的PLLA薄膜的第二层由聚多巴胺(PDA)然后是胱胺(Cys)组成,用于产生一氧化氮(NO)释放,这是抑制平滑肌细胞(SMC)和内皮细胞(EC)增殖所必需的。通过各种分析对薄膜表面进行了表征。通过对PLLA薄膜进行表面改性,它们具有多功能能力,能够有效克服BVS的问题,如X射线穿透性、炎症、血栓形成和内膜增生。这些结果表明,使用TIBA、MH、PDA和Cys对可生物降解的PLLA进行改性在植入应用中将具有重要潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c922/8234203/36a4f00a1b2f/polymers-13-01979-sch001.jpg

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