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椎间盘脱细胞化:进展与挑战。

Intervertebral disc decellularisation: progress and challenges.

出版信息

Eur Cell Mater. 2021 Oct 6;42:196-219. doi: 10.22203/eCM.v042a15.

DOI:10.22203/eCM.v042a15
PMID:34613611
Abstract

Intervertebral disc (IVD) degeneration and the consequent low-back pain (LBP) affect over 80 % of people in western societies, constituting a tremendous socio-economic burden worldwide and largely impairing patients' life quality. Extracellular matrix (ECM)-based scaffolds, derived from decellularised tissues, are being increasingly explored in regenerative medicine for tissue repair. Decellularisation plays an essential role for host cells and antigen removal, while maintaining native microenvironmental signals, including ECM structure, composition and mechanical properties, which are essential for driving tissue regeneration. With the lack of clinical solutions for IVD repair/regeneration, implantation of decellularised IVD tissues has been explored to halt and/or revert the degenerative cascade and the associated LBP symptoms. Over the last few years, several researchers have focused on the optimisation of IVD decellularisation methods, combining physical, chemical and enzymatic treatments, in order to successfully develop a cell-free matrix. Recellularisation of IVD-based scaffolds with different cell types has been attempted and numerous methods have been explored to address proper IVD regeneration. Herein, the advances in IVD decellularisation methods, sterilisation procedures, repopulation and biocompatibility tests are reviewed. Additionally, the importance of the donor profile for therapeutic success is also addressed. Finally, the perspectives and major hurdles for clinical use of the decellularised ECM-based biomaterials for IVD are discussed. The studies reviewed support the notion that tissue-engineering-based strategies resorting to decellularised IVD may represent a major advancement in the treatment of disc degeneration and consequent LBP.

摘要

椎间盘(IVD)退变及由此引起的下腰痛(LBP)影响了超过 80%的西方社会人群,在全球范围内造成了巨大的社会经济负担,严重影响了患者的生活质量。基于细胞外基质(ECM)的支架,来源于去细胞化组织,在再生医学中越来越多地被用于组织修复。去细胞化对于宿主细胞和抗原的去除起着至关重要的作用,同时保持了天然的微环境信号,包括 ECM 的结构、组成和机械性能,这对于驱动组织再生是必不可少的。由于缺乏治疗 IVD 的临床方法,人们探索了植入去细胞化的 IVD 组织以阻止和/或逆转退行性级联反应和相关的 LBP 症状。在过去的几年中,许多研究人员专注于优化 IVD 的去细胞化方法,结合物理、化学和酶处理,以成功开发无细胞基质。已经尝试了用不同的细胞类型对 IVD 支架进行再细胞化,并探索了许多方法来解决适当的 IVD 再生问题。本文综述了 IVD 去细胞化方法、消毒程序、再细胞化和生物相容性测试的进展。此外,还讨论了供体特征对治疗成功的重要性。最后,讨论了用于 IVD 的去细胞 ECM 基生物材料临床应用的前景和主要障碍。综述的研究支持这样一种观点,即基于组织工程的策略,利用去细胞化的 IVD 可能代表着治疗椎间盘退变和随之而来的 LBP 的重大进展。

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