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基于新型无机纳米材料的骨组织再生疗法

Novel Inorganic Nanomaterial-Based Therapy for Bone Tissue Regeneration.

作者信息

Fu Yu, Cui Shengjie, Luo Dan, Liu Yan

机构信息

Fourth Clinical Division, Peking University School and Hospital of Stomatology; National Engineering Laboratory for Digital and Material Technology of Stomatology, Beijing Key Laboratory of Digital Stomatology, Beijing 100081, China.

Laboratory of Biomimetic Nanomaterials, Department of Orthodontics, Peking University School and Hospital of Stomatology, National Engineering Laboratory for Digital and Material Technology of Stomatology; Beijing Key Laboratory of Digital Stomatology, Beijing 100081, China.

出版信息

Nanomaterials (Basel). 2021 Mar 19;11(3):789. doi: 10.3390/nano11030789.

Abstract

Extensive bone defect repair remains a clinical challenge, since ideal implantable scaffolds require the integration of excellent biocompatibility, sufficient mechanical strength and high biological activity to support bone regeneration. The inorganic nanomaterial-based therapy is of great significance due to their excellent mechanical properties, adjustable biological interface and diversified functions. Calcium-phosphorus compounds, silica and metal-based materials are the most common categories of inorganic nanomaterials for bone defect repairing. Nano hydroxyapatites, similar to natural bone apatite minerals in terms of physiochemical and biological activities, are the most widely studied in the field of biomineralization. Nano silica could realize the bone-like hierarchical structure through biosilica mineralization process, and biomimetic silicifications could stimulate osteoblast activity for bone formation and also inhibit osteoclast differentiation. Novel metallic nanomaterials, including Ti, Mg, Zn and alloys, possess remarkable strength and stress absorption capacity, which could overcome the drawbacks of low mechanical properties of polymer-based materials and the brittleness of bioceramics. Moreover, the biodegradability, antibacterial activity and stem cell inducibility of metal nanomaterials can promote bone regeneration. In this review, the advantages of the novel inorganic nanomaterial-based therapy are summarized, laying the foundation for the development of novel bone regeneration strategies in future.

摘要

大面积骨缺损修复仍然是一项临床挑战,因为理想的可植入支架需要具备优异的生物相容性、足够的机械强度和高生物活性,以支持骨再生。基于无机纳米材料的治疗具有重要意义,因为它们具有优异的机械性能、可调节的生物界面和多样化的功能。钙磷化合物、二氧化硅和金属基材料是用于骨缺损修复的最常见的无机纳米材料类别。纳米羟基磷灰石在物理化学和生物活性方面与天然骨磷灰石矿物相似,是生物矿化领域研究最广泛的材料。纳米二氧化硅可以通过生物硅矿化过程实现类骨层次结构,仿生硅化可以刺激成骨细胞活性促进骨形成,还可以抑制破骨细胞分化。新型金属纳米材料,包括钛、镁、锌及其合金,具有卓越的强度和应力吸收能力,能够克服聚合物基材料机械性能低和生物陶瓷脆性大的缺点。此外,金属纳米材料的生物降解性、抗菌活性和干细胞诱导性可以促进骨再生。在本综述中,总结了基于新型无机纳米材料治疗的优势,为未来新型骨再生策略的发展奠定基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d2c7/8003392/e17778e0ae89/nanomaterials-11-00789-g001.jpg

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