The nucleus pulposus microenvironment in the intervertebral disc: the fountain of youth?

IF 3.1 3区 医学 Q3 CELL & TISSUE ENGINEERING
J Guerrero, S Häckel, A S Croft, S Hoppe, C E Albers, B Gantenbein
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引用次数: 21

Abstract

The intervertebral disc (IVD) is a complex tissue, and its degeneration remains a problem for patients, without significant improvement in treatment strategies. This mostly age-related disease predominantly affects the nucleus pulposus (NP), the central region of the IVD. The NP tissue, and especially its microenvironment, exhibit changes that may be involved at the outset or affect the progression of IVD pathology. The NP tissue microenvironment is unique and can be defined by a variety of specific factors and components characteristic of its physiology and function. NP progenitor cell interactions with their surrounding microenvironment may be a key factor for the regulation of cellular metabolism, phenotype, and stemness. Recently, celltransplantation approaches have been investigated for the treatment of degenerative disc disease, highlighting the need to better understand if and how transplanted cells can give rise to healthy NP tissue. Hence, understanding all the components of the NP microenvironment seems to be critical to better gauge the success and outcomes of approaches for tissue engineering and future clinical applications. Knowledge about the components of the NP microenvironment, how NP progenitor cells interact with them, and how changes in their surroundings can alter their function is summarised. Recent discoveries in NP tissue engineering linked to the microenvironment are also reviewed, meaning how crosstalk within the microenvironment can be adjusted to promote NP regeneration. Associated clinical problems are also considered, connecting bench-to-bedside in the context of IVD degeneration.

椎间盘髓核微环境:青春之泉?
椎间盘(IVD)是一个复杂的组织,其退变仍然是一个困扰患者的问题,治疗策略没有显着改善。这种主要与年龄有关的疾病主要影响髓核(NP), IVD的中心区域。NP组织,特别是其微环境,表现出可能在一开始就涉及或影响IVD病理进展的变化。NP组织微环境是独特的,可以由其生理和功能特征的各种特定因素和成分来定义。NP祖细胞与其周围微环境的相互作用可能是调控细胞代谢、表型和干性的关键因素。最近,细胞移植方法已被研究用于治疗退行性椎间盘疾病,强调需要更好地了解移植细胞是否以及如何产生健康的NP组织。因此,了解NP微环境的所有组成部分似乎对于更好地衡量组织工程和未来临床应用方法的成功和结果至关重要。本文总结了NP微环境的组成部分,NP祖细胞如何与它们相互作用,以及环境的变化如何改变它们的功能。本文还回顾了与微环境相关的NP组织工程的最新发现,这意味着如何调节微环境中的串扰以促进NP再生。还考虑了相关的临床问题,在IVD退变的背景下将实验室连接到床边。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
European cells & materials
European cells & materials 生物-材料科学:生物材料
CiteScore
6.00
自引率
6.50%
发文量
55
审稿时长
1.5 months
期刊介绍: eCM provides an interdisciplinary forum for publication of preclinical research in the musculoskeletal field (Trauma, Maxillofacial (including dental), Spine and Orthopaedics). The clinical relevance of the work must be briefly mentioned within the abstract, and in more detail in the paper. Poor abstracts which do not concisely cover the paper contents will not be sent for review. Incremental steps in research will not be entertained by eCM journal.Cross-disciplinary papers that go across our scope areas are welcomed.
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