纳米涂层应用于外科手术网的技术发展及纳米膜的功能特性研究

IF 0.6 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY
N. M. Abdullaeva, R. M. Ragimov, V. Yu. Khanaliev, I. M. Abdulagatov, M.A. Khamidov
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引用次数: 0

摘要

今天,世界上大约7%的人口被诊断为不同部位的腹疝。每年约有2000万例疝成形术,其中85%使用手术补片。植入物本身往往成为术后并发症发生的原因,表现为粘连、肉芽肿、瘘管、血清肿、脓肿等。该研究涉及使用原子层沉积(ALD)技术应用纳米涂层的外科网格。该研究的目的是开发一种应用纳米涂层的技术,使其具有抗菌特性,并使用原子层沉积方法改善其生物相容性。在研究过程中,采用原子层沉积(ALD)方法将纳米涂层涂在聚丙烯网的表面,使植入物具有抗菌性能。由于应用纳米膜,在表面形成纳米级的粗糙度,从而阻止了微生物的粘附。同时,网格本身的主要特征没有改变。用三甲基铝、四氯化钛和三氯化钒进行循环反应,得到了第一批网样,并将其引入实验动物体内。复合涂层(Al2O3 + TiO2/V2O5)与周围组织融合良好,炎症反应最小。与PACVD或CVD相比,所开发的获得纳米涂层以提高外科假体补片杀菌性能的方法在工业实施上简单,同时覆盖面积大,从而降低了生产的材料成本,提高了经济效益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Development of Technology for Applying Nanocoatings to Surgical Meshes and Study of the Functional Properties of the Resulting Nanofilms

Development of Technology for Applying Nanocoatings to Surgical Meshes and Study of the Functional Properties of the Resulting Nanofilms

—Today, abdominal hernias of various localizations are diagnosed in approximately 7% of the world’s population. Approximately 20 million hernioplasty operations are performed annually, 85% of which use surgical mesh. The implant itself often becomes the cause of the development of postoperative complications in the form of adhesions, granulomas, fistulas, seromas, abscesses, etc. The study involved surgical meshes with a nanocoating applied using atomic layer deposition (ALD) technology. The aims of the study were the development of a technology for applying a nanocoating to impart antibacterial properties to surgical endoprosthetic meshes and improve their biocompatible properties using the atomic layer deposition method. During the work, a nanocoating was applied to the surface of the polypropylene meshes using the atomic layer deposition (ALD) method to impart antibacterial properties to the implant. As a result of applying the nanofilm, nano-sized roughness was formed on the surface, which prevented the adhesion of microorganisms. At the same time, the main characteristics of the grids themselves did not change. By means of cyclic reactions, using trimethylaluminum, titanium tetrachloride, and vanadium trichloroxide, the first samples of meshes were obtained, which were introduced into the bodies of experimental animals. Complex coating (Al2O3 + TiO2/V2O5) demonstrated good integration into the surrounding tissue with minimal inflammatory response. The developed method for obtaining nanocoatings to improve the bactericidal properties of surgical endoprosthesis mesh is simple in industrial implementation, compared to PACVD or CVD, and covers large areas simultaneously, therefore reducing material costs for production and increasing economic efficiency.

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来源期刊
CiteScore
1.10
自引率
0.00%
发文量
31
期刊介绍: Biochemistry (Moscow), Supplement Series B: Biomedical Chemistry   covers all major aspects of biomedical chemistry and related areas, including proteomics and molecular biology of (patho)physiological processes, biochemistry, neurochemistry, immunochemistry and clinical chemistry, bioinformatics, gene therapy, drug design and delivery, biochemical pharmacology, introduction and advertisement of new (biochemical) methods into experimental and clinical medicine. The journal also publishes review articles. All issues of the journal usually contain solicited reviews.
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