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用于软组织再生的新型生物活性玻璃/氧化石墨烯涂层手术缝线

Novel Bioactive Glass/Graphene Oxide-Coated Surgical Sutures for Soft Tissue Regeneration.

作者信息

Öksüz Kerim Emre, Kurt Begüm, Şahin İnan Zeynep Deniz, Hepokur Ceylan

机构信息

Department of Metallurgical and Materials Engineering, Faculty of Engineering, Sivas Cumhuriyet University, Sivas 58140, Türkiye.

Department of Gynecology and Obstetrics, Faculty of Medicine Hospital, Sivas Cumhuriyet University, Sivas 58140, Türkiye.

出版信息

ACS Omega. 2023 Jun 8;8(24):21628-21641. doi: 10.1021/acsomega.3c00978. eCollection 2023 Jun 20.

Abstract

The combination of a commercially available PGLA (poly[glycolide--l-lactide]), 90:10% suture material with bioactive bioglass nanopowders (BGNs) and graphene oxide (GO)-doped BGNs offers new opportunities for the clinical application of biomaterials in soft tissue engineering. In the present experimental work, we demonstrate that GO-doped melt-derived BGNs were synthesized via the sol-gel process. After that, novel GO-doped and undoped BGNs were used to coat resorbable PGLA surgical sutures, thereby imparting bioactivity, biocompatibility, and accelerated wound healing properties to the sutures. Stable and homogeneous coatings on the surface of the sutures were achieved using an optimized vacuum sol deposition method. The phase composition, morphology, elemental characteristics, and chemical structure of uncoated and BGNs- and BGNs/GO-coated suture samples were characterized using Fourier transform infrared spectroscopy, field emission scanning electron microscopy, associated with elemental analysis, and knot performance test. In addition, in vitro bioactivity tests, biochemical tests, and in vivo tests were performed to examine the role of BGNs and GO on the biological and histopathological properties of the coated suture samples. The results indicated that the formation of BGNs and GO was enhanced significantly on the suture surface, which allowed for enhanced fibroblast attachment, migration, and proliferation and promoted the secretion of the angiogenic growth factor to speed up wound healing. These results confirmed the biocompatibility of BGNs- and BGNs/GO-coated suture samples and the positive effect of BGNs on the behavior of L929 fibroblast cells and also showed for the first time the possibility that cells can adhere and proliferate on the BGNs/GO-coated suture samples, especially in an in vivo environment. Resorbable surgical sutures with bioactive coatings, such as those prepared herein, can be an attractive biomaterial not only for hard tissue engineering but also for clinical applications in soft tissue engineering.

摘要

将市售的聚乙交酯-丙交酯(PGLA)(90:10%)缝合材料与生物活性生物玻璃纳米粉末(BGNs)以及氧化石墨烯(GO)掺杂的BGNs相结合,为生物材料在软组织工程中的临床应用提供了新机遇。在当前的实验工作中,我们证明了通过溶胶-凝胶法合成了GO掺杂的熔体衍生BGNs。之后,使用新型的GO掺杂和未掺杂BGNs对可吸收的PGLA手术缝合线进行涂层处理,从而赋予缝合线生物活性、生物相容性以及加速伤口愈合的特性。使用优化的真空溶胶沉积法在缝合线表面实现了稳定且均匀的涂层。采用傅里叶变换红外光谱、场发射扫描电子显微镜结合元素分析以及打结性能测试对未涂层、BGNs涂层和BGNs/GO涂层的缝合线样品的相组成、形态、元素特征和化学结构进行了表征。此外,还进行了体外生物活性测试、生化测试和体内测试,以研究BGNs和GO对涂层缝合线样品的生物学和组织病理学特性的作用。结果表明,BGNs和GO在缝合线表面的形成显著增强,这使得成纤维细胞的附着、迁移和增殖增强,并促进了血管生成生长因子的分泌以加速伤口愈合。这些结果证实了BGNs涂层和BGNs/GO涂层缝合线样品的生物相容性以及BGNs对L929成纤维细胞行为的积极影响,并且首次表明细胞能够在BGNs/GO涂层缝合线样品上附着和增殖,尤其是在体内环境中。具有生物活性涂层的可吸收手术缝合线,如本文制备的那些,不仅对于硬组织工程,而且对于软组织工程的临床应用而言,都可能是一种有吸引力的生物材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3c6c/10286287/c0a646b1dad3/ao3c00978_0002.jpg

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