Suppr超能文献

基于仿生和仿生机理的 AgNPs/庆大霉素嵌入丝素蛋白涂层,具有强大的抗菌和促成骨应用。

Bioinspired and Biomimetic AgNPs/Gentamicin-Embedded Silk Fibroin Coatings for Robust Antibacterial and Osteogenetic Applications.

机构信息

China-America Institute of Neuroscience, Xuanwu Hospital, Capital Medical University , Beijing 100053, China.

出版信息

ACS Appl Mater Interfaces. 2017 Aug 9;9(31):25830-25846. doi: 10.1021/acsami.7b06757. Epub 2017 Jul 27.

Abstract

With the progressively increasing demand for orthopedic Ti implants, the balance between two primary complications restricting implant applications is needed to be solved: the lack of bone tissue integration and biomedical device-associated infections (BAI), where emergence of multiresistance bacteria make it worse. Notably, a combination of silver nanoparticles (AgNPs) and a kind of antibiotic can synergistically inhibit bacterial growth, where a low concentration of AgNPs has been confirmed to promote the proliferation and osteogenesis of osteoblasts. In this work, we built AgNPs/gentamicin (Gen)-embedded silk fibroin (SF)-based biomimetic coatings on orthopedic titanium by a facile dipping-drying circular process and with the assistance of polydopamine (PD). Ag was reduced to AgNPs by SF under ultraviolet (UV) irradiation, and then they were detected by transmission electron microscope (TEM) images and UV-visible (UV-vis) analyses. Intriguingly, the addition of Gen highly improved the reduction efficiency of Ag. The antibacterial efficiency of SF-based coatings was examined by challenging them with pathogenic Staphylococcus aureus (S. aureus) bacteria which produced biofilms, and consequently, we found that low concentration loading, durable release of Ag (28 days), and 10-fold improvement of antibacterial efficiency were achieved for our novel AgNPs- and Gen-embeded silk fibroin coatings. In bacteria and a cells cocultured system, AgNPs/Gen-embedded coatings strongly inhibited adhesion and proliferation of S. aureus, simultaneously improving cell adhesion and growth. To investigate cytocompatibility and osteogenic potential, different coatings were cultured with MC3T3 cells; AgNPs/Gen-embedded coatings showed generally acceptable biocompatibility (cell adhesion, proliferation, and viability) and accelerated osteoblast maturation (alkaline phosphatase production, matrix secretion, and calcification). Expectantly, this novel biofunctional coating will have promising applications in orthopedic and dental titanium implants thanks to its excellently antibacterial, biocompatible, and osteogenic activities.

摘要

随着对骨科 Ti 植入物需求的不断增加,需要解决两个限制植入物应用的主要并发症之间的平衡:骨组织整合不足和与生物医学设备相关的感染 (BAI),其中多耐药菌的出现使情况变得更糟。值得注意的是,银纳米粒子 (AgNPs) 和一种抗生素的组合可以协同抑制细菌生长,其中已证实低浓度的 AgNPs 可以促进成骨细胞的增殖和成骨作用。在这项工作中,我们通过一种简单的浸渍-干燥循环工艺,并在聚多巴胺 (PD) 的辅助下,在骨科钛上构建了 AgNPs/庆大霉素 (Gen)-嵌入丝素 (SF)-基仿生涂层。SF 在紫外线 (UV) 照射下将 Ag 还原为 AgNPs,然后通过透射电子显微镜 (TEM) 图像和紫外可见 (UV-vis) 分析进行检测。有趣的是,Gen 的加入大大提高了 Ag 的还原效率。通过用产生生物膜的致病性金黄色葡萄球菌 (S. aureus) 细菌挑战 SF 基涂层,检查了它们的抗菌效率,结果发现,对于我们的新型 AgNPs 和 Gen 嵌入丝素涂层,实现了低浓度负载、Ag 的持久释放 (28 天) 和抗菌效率提高 10 倍。在细菌和细胞共培养系统中,AgNPs/Gen 嵌入涂层强烈抑制 S. aureus 的粘附和增殖,同时提高细胞粘附和生长。为了研究细胞相容性和成骨潜力,用不同的涂层培养 MC3T3 细胞;AgNPs/Gen 嵌入涂层表现出一般可接受的生物相容性(细胞粘附、增殖和活力)并加速成骨细胞成熟(碱性磷酸酶产生、基质分泌和钙化)。期望由于其出色的抗菌、生物相容和成骨活性,这种新型生物功能涂层将在骨科和牙科钛植入物中具有广阔的应用前景。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验