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生物材料诱导的骨再生途径调节

Biomaterial-induced pathway modulation for bone regeneration.

作者信息

Vermeulen Steven, Tahmasebi Birgani Zeinab, Habibovic Pamela

机构信息

Department of Instructive Biomaterials Engineering, MERLN Institute for Technology-Inspired Regenerative Medicine, Maastricht University, the Netherlands.

Department of Instructive Biomaterials Engineering, MERLN Institute for Technology-Inspired Regenerative Medicine, Maastricht University, the Netherlands.

出版信息

Biomaterials. 2022 Apr;283:121431. doi: 10.1016/j.biomaterials.2022.121431. Epub 2022 Feb 18.

Abstract

Embryogenic developmental processes involve a tightly controlled regulation between mechanical forces and biochemical cues such as growth factors, matrix proteins, and cytokines. This interplay remains essential in the mature body, with aberrant pathway signaling leading to abnormalities such as atherosclerosis in the cardiovascular system, inflammation in tendon tissue, or osteoporosis in the bone. The aim of bone regenerative strategies is to develop tools and procedures that will harness the body's own self-repair ability in order to successfully regenerate even very large and complex bone defects and restore normal function. To achieve this, understanding pathways that govern processes of progenitor differentiation towards the osteogenic lineages, their phenotypical maintenance, and the construction of functional bone tissue is imperative to subsequently develop regenerative therapies that mimic these processes. While a body of literature exists that describes how biochemical stimuli guide cell behavior in the culture dish, due to the lack of an appropriate mechanical environment, these signals are often insufficient or inappropriate for achieving a desirable response in the body. Moreover, bone regenerative therapies rarely rely on a biochemical stimulus, such as a growth factor alone, and instead often comprise a carrier biomaterial that introduces a very different microenvironment from that of a cell culture dish. Therefore, in this review, we discuss which biomaterials elicit or influence pathways relevant for bone regeneration and describe mechanisms behind these effects, with the aim to inspire the development of novel, more effective bone regenerative therapies.

摘要

胚胎发育过程涉及机械力与生化信号(如生长因子、基质蛋白和细胞因子)之间的严格调控。这种相互作用在成熟机体中仍然至关重要,异常的信号通路会导致心血管系统中的动脉粥样硬化、肌腱组织炎症或骨骼中的骨质疏松等异常情况。骨再生策略的目标是开发工具和程序,利用机体自身的自我修复能力,成功再生甚至非常大且复杂的骨缺损并恢复正常功能。要实现这一目标,了解控制祖细胞向成骨谱系分化过程、其表型维持以及功能性骨组织构建的途径,对于随后开发模拟这些过程的再生疗法至关重要。虽然有大量文献描述了生化刺激如何在培养皿中引导细胞行为,但由于缺乏合适的机械环境,这些信号往往不足以或不适用于在体内实现理想的反应。此外,骨再生疗法很少仅依赖生化刺激,如单独的生长因子,而是通常包含一种载体生物材料,它引入了与细胞培养皿截然不同的微环境。因此,在本综述中,我们讨论哪些生物材料引发或影响与骨再生相关的途径,并描述这些效应背后的机制,旨在激发新型、更有效的骨再生疗法的开发。

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