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用于骨科植入物的可生物降解 Zn 上的胶原包封钙/锌磷酸盐的成骨和成血管生物活性涂层。

Osteogenic and angiogenic bioactive collagen entrapped calcium/zinc phosphates coating on biodegradable Zn for orthopedic implant applications.

机构信息

Key Laboratory of Advanced Technologies of Materials, Ministry of Education, School of Materials Science and Engineering, Southwest Jiaotong University, Chengdu 610031, China.

National & Local Joint Engineering Research Centre of Orthopaedic Biomaterials, Department of Bone & Joint Surgery, Peking University Shenzhen Hospital, Shenzhen 518036, China.

出版信息

Biomater Adv. 2022 May;136:212792. doi: 10.1016/j.bioadv.2022.212792. Epub 2022 Apr 4.

Abstract

Zinc is becoming one of the leading candidate materials for biodegradable orthopedic implants owing to its attractive properties in terms of degradation behavior and mechanical properties. However, the insufficient surface bio-activities postpone its clinical application. In this study, an organic-inorganic collagen entrapped calcium/zinc phosphates coating was constructed on Zn surface to lessen Zn releasing rate and to leverage the surface osteogenic and angiogenic properties. Collagen molecules were immobilized onto Zn substrate and subsequently coordinated with calcium and zinc ions to promote the CaZnP inorganic phase growth, ensuing an intertwined collagen-CaZnP hybrid system. Consequently, the hybrid coating was highly coalesced and compact. Such high quality warranted the contained Zn releasing in a tolerable rate favorable for cells viability. The collagen-CaZnP coated Zn showed remarkedly stronger osteogenicity as compared to the untreated Zn, ascertained by the MC3T3-E1 osteoblast cell proliferation and differentiation assays, such as alkaline phosphatase expression and calcium nodule formation results. In addition, this hybrid coating supported human umbilical vein endothelial cells (HUVECs) migration and tube formation. The enhanced osteogenic and angiogenic properties could be ascribed to the nature of collagen and calcium/zinc phosphate components, the hybrid micro/nano-structure as well as the ability of controlling the Zn release of Zn substrate into a suitable concentration range. Our strategy provides a new avenue to surface modification of biodegradable metals for bone regenerative perspective.

摘要

锌因其在降解行为和机械性能方面的吸引力,正成为可生物降解骨科植入物的主要候选材料之一。然而,其表面生物活性不足,限制了其临床应用。在这项研究中,在 Zn 表面构建了一种有机-无机胶原包裹的钙/锌磷酸盐涂层,以降低 Zn 的释放速率,并提高表面成骨和血管生成性能。胶原分子固定在 Zn 基底上,随后与钙和锌离子配位,促进 CaZnP 无机相的生长,从而形成交织的胶原-CaZnP 杂化系统。因此,杂化涂层高度融合和致密。这种高质量保证了 Zn 的释放速度在有利于细胞活力的可接受范围内。与未经处理的 Zn 相比,胶原-CaZnP 涂层的 Zn 表现出明显更强的成骨能力,这可以通过 MC3T3-E1 成骨细胞增殖和分化试验(如碱性磷酸酶表达和钙结节形成结果)来证实。此外,这种杂化涂层支持人脐静脉内皮细胞(HUVEC)的迁移和管状结构形成。增强的成骨和血管生成特性可归因于胶原和钙/锌磷酸盐成分的性质、杂化微/纳米结构以及控制 Zn 从 Zn 基底释放到合适浓度范围的能力。我们的策略为可生物降解金属的表面改性提供了一个新途径,用于骨再生。

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