Wei Yujia, Chen Maohua, Li Menghuan, Wang Dong, Cai Kaiyong, Luo Zhong, Hu Yan
Key Laboratory of Biorheological Science and Technology, Ministry of Education, College of Bioengineering, Chongqing University, Chongqing 400044, China.
School of Life Sciences, Chongqing University, Chongqing 400044, China.
ACS Appl Mater Interfaces. 2022 Sep 28;14(38):42915-42930. doi: 10.1021/acsami.2c10809. Epub 2022 Sep 15.
Endowing bone regeneration materials with both stem cell recruitment and osteoinduction properties is a key factor in promoting osseointegration of titanium (Ti) implants. In this study, Apt19s-grafted oxidized hyaluronic acid (OHA) was deposited onto a protein-mediated biomineralization hydroxyapatite (HAp) coating of Ti. HAp was achieved by the treatment of lysozyme and tris(2-carboxyethyl) phosphonate mixture and then soaked in calcium ion (Ca) solution to obtain functional Ti substrate (Ti/HAp/OHA-Apt). studies confirmed that Ti/HAp/OHA-Apt could effectively maintain the sustained release of Apt19s from Ti for 7 days. The released Apt19s significantly enhanced the migration of bone marrow mesenchymal stem cells (MSCs), which was reflected by the experiment of transwell assay, wound healing, and zymogram detection. Compared with pure Ti, Ti/HAp/OHA-Apt was able to adjust the adsorption of functional proteins at the Ti-based interface to expose their active sites, which significantly increased the expression of adhesion-associated proteins (vinculin and tensin) in MSCs to promote their adhesion on Ti-based interface. cell experiments of alkaline phosphatase activity staining, mineralization detection, and expression of osteogenesis-related genes showed that Ti/HAp/OHA-Apt significantly enhanced the osteogenic differentiation ability of MSCs, which may be highly related to the porous structure of hydroxyapatite on Ti interface. test of Micro-CT, H&E staining, and histochemical staining further confirmed that Ti/HAp/OHA-Apt was able to promote MSC recruitment at the peri-implant interface to form new bone. This work provides a new approach to develop functional Ti-based materials for bone defect repair.
赋予骨再生材料干细胞招募和骨诱导特性是促进钛(Ti)植入物骨整合的关键因素。在本研究中,将Apt19s接枝的氧化透明质酸(OHA)沉积在蛋白质介导的生物矿化羟基磷灰石(HAp)涂层的Ti上。通过溶菌酶和三(2-羧乙基)膦酸酯混合物处理获得HAp,然后浸泡在钙离子(Ca)溶液中以获得功能性Ti基底(Ti/HAp/OHA-Apt)。研究证实,Ti/HAp/OHA-Apt能够有效地使Apt19s从Ti持续释放7天。释放的Apt19s显著增强了骨髓间充质干细胞(MSCs)的迁移,这通过transwell实验、伤口愈合实验和酶谱检测得以体现。与纯Ti相比,Ti/HAp/OHA-Apt能够调节功能性蛋白质在Ti基界面的吸附以暴露其活性位点,这显著增加了MSCs中粘附相关蛋白(纽蛋白和张力蛋白)的表达,从而促进它们在Ti基界面上的粘附。碱性磷酸酶活性染色、矿化检测和成骨相关基因表达的细胞实验表明,Ti/HAp/OHA-Apt显著增强了MSCs的成骨分化能力,这可能与Ti界面上羟基磷灰石的多孔结构高度相关。Micro-CT测试、苏木精-伊红染色和组织化学染色进一步证实,Ti/HAp/OHA-Apt能够促进种植体周围界面处的MSC募集以形成新骨。这项工作为开发用于骨缺损修复的功能性Ti基材料提供了一种新方法。