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纳米粒子在骨组织工程中的应用; 促骨生成的分子机制研究进展。

Application of nanoparticles in bone tissue engineering; a review on the molecular mechanisms driving osteogenesis.

机构信息

Department of Tissue Engineering, School of Medicine, Kermanshah University of Medical Sciences, Kermanshah, Iran and Fertility and Infertility Research Center, Health Technology Institute, Kermanshah University of Medical Sciences, Kermanshah, Iran.

Cellular and Molecular Research Center, Iran University of Medical Sciences, Tehran, Iran.

出版信息

Biomater Sci. 2021 Jul 7;9(13):4541-4567. doi: 10.1039/d1bm00504a. Epub 2021 Jun 1.

Abstract

The introduction of nanoparticles into bone tissue engineering strategies is beneficial to govern cell fate into osteogenesis and the regeneration of large bone defects. The present study explored the role of nanoparticles to advance osteogenesis with a focus on the cellular and molecular pathways involved. Pubmed, Pubmed Central, Embase, Scopus, and Science Direct databases were explored for those published articles relevant to the involvement of nanoparticles in osteogenic cellular pathways. As multifunctional compounds, nanoparticles contribute to scaffold-free and scaffold-based tissue engineering strategies to progress osteogenesis and bone regeneration. They regulate inflammatory responses and osteo/angio/osteoclastic signaling pathways to generate an osteogenic niche. Besides, nanoparticles interact with biomolecules, enhance their half-life and bioavailability. Nanoparticles are promising candidates to promote osteogenesis. However, the interaction of nanoparticles with the biological milieu is somewhat complicated, and more considerations are recommended on the employment of nanoparticles in clinical applications because of NP-induced toxicities.

摘要

将纳米粒子引入骨组织工程策略中有利于控制细胞命运向成骨方向发展,并促进大骨缺损的再生。本研究探讨了纳米粒子在促进成骨中的作用,重点关注涉及的细胞和分子途径。通过 Pubmed、Pubmed Central、Embase、Scopus 和 Science Direct 数据库,检索了与纳米粒子参与成骨细胞途径相关的已发表文章。作为多功能化合物,纳米粒子有助于无支架和支架组织工程策略的发展,促进成骨和骨再生。它们调节炎症反应和骨/血管/破骨细胞信号通路,产生成骨龛。此外,纳米粒子与生物分子相互作用,提高其半衰期和生物利用度。纳米粒子是促进成骨的有前途的候选物。然而,纳米粒子与生物环境的相互作用有些复杂,鉴于 NP 诱导的毒性,建议在临床应用中更多地考虑纳米粒子的使用。

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