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创新策略在椎间盘再生医学领域的应用:从细胞治疗到多尺度递药系统。

Innovative strategies for intervertebral disc regenerative medicine: From cell therapies to multiscale delivery systems.

机构信息

Inserm, UMR 1229, RMeS, Regenerative Medicine and Skeleton, Université de Nantes, ONIRIS, Nantes, France; Institut des Matériaux Jean Rouxel (IMN), Université de Nantes, CNRS, 2 rue de la Houssinière, BP 32229, 44322 Nantes, Cedex 3, France; Université de Nantes, UFR Odontologie, Nantes F-44042, France.

Inserm, UMR 1229, RMeS, Regenerative Medicine and Skeleton, Université de Nantes, ONIRIS, Nantes, France; Université de Nantes, UFR Odontologie, Nantes F-44042, France; CHU Nantes, Pharmacie Centrale, PHU 11, Nantes, France; Université de Nantes, UFR Sciences Biologiques et Pharmaceutiques, Nantes, France.

出版信息

Biotechnol Adv. 2018 Jan-Feb;36(1):281-294. doi: 10.1016/j.biotechadv.2017.11.009. Epub 2017 Dec 1.

Abstract

As our understanding of the physiopathology of intervertebral disc (IVD) degeneration has improved, novel therapeutic strategies have emerged, based on the local injection of cells, bioactive molecules, and nucleic acids. However, with regard to the harsh environment constituted by degenerated IVDs, protecting biologics from in situ degradation while allowing their long-term delivery is a major challenge. Yet, the design of the optimal approach for IVD regeneration is still under debate and only a few papers provide a critical assessment of IVD-specific carriers for local and sustained delivery of biologics. In this review, we highlight the IVD-relevant polymers as well as their design as macro-, micro-, and nano-sized particles to promote endogenous repair. Finally, we illustrate how multiscale systems, combining in situ-forming hydrogels with ready-to-use particles, might drive IVD regenerative medicine strategies toward innovation.

摘要

随着我们对椎间盘(IVD)退变的病理生理学的理解不断提高,基于细胞、生物活性分子和核酸的局部注射,出现了新的治疗策略。然而,对于退变的 IVD 所构成的恶劣环境,保护生物制剂免受原位降解的同时允许其长期递药是一个主要挑战。然而,用于 IVD 再生的最佳方法的设计仍存在争议,只有少数论文对用于生物制剂局部和持续递药的特定于 IVD 的载体进行了批判性评估。在这篇综述中,我们重点介绍了与 IVD 相关的聚合物及其作为宏观、微观和纳米级颗粒的设计,以促进内源性修复。最后,我们说明了多尺度系统如何将原位形成的水凝胶与即用型颗粒结合,从而推动 IVD 再生医学策略的创新。

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