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用于再生医学的生物材料辅助巨噬细胞疗法。

Biomaterial-assisted macrophage cell therapy for regenerative medicine.

作者信息

Sung Samuel, Steele Lindsay A, Risser Gregory E, Spiller Kara L

机构信息

School of Biomedical Engineering, Science, and Health Systems, Drexel University, Philadelphia, PA, USA.

School of Biomedical Engineering, Science, and Health Systems, Drexel University, Philadelphia, PA, USA.

出版信息

Adv Drug Deliv Rev. 2023 Aug;199:114979. doi: 10.1016/j.addr.2023.114979. Epub 2023 Jun 30.

Abstract

Although most tissue types are capable of some form of self-repair and regeneration, injuries that are larger than a critical threshold or those occurring in the setting of certain diseases can lead to impaired healing and ultimately loss of structure and function. The immune system plays an important role in tissue repair and must be considered in the design of therapies in regenerative medicine. In particular, macrophage cell therapy has emerged as a promising strategy that leverages the reparative roles of these cells. Macrophages are critical for successful tissue repair and accomplish diverse functions throughout all phases of the process by dramatically shifting in phenotypes in response to microenvironmental cues. Depending on their response to various stimuli, they may release growth factors, support angiogenesis, and facilitate extracellular matrix remodeling. However, this ability to rapidly shift phenotype is also problematic for macrophage cell therapy strategies, because adoptively transferred macrophages fail to maintain therapeutic phenotypes following their administration to sites of injury or inflammation. Biomaterials are a potential way to control macrophage phenotype in situ while also enhancing their retention at sites of injury. Cell delivery systems incorporated with appropriately designed immunomodulatory signals have potential to achieve tissue regeneration in intractable injuries where traditional therapies have failed. Here we explorecurrent challenges in macrophage cell therapy, especially retention and phenotype control, how biomaterials may overcome them, and opportunities for next generation strategies. Biomaterials will be an essential tool to advance macrophage cell therapy for widespread clinical applications.

摘要

尽管大多数组织类型都能够进行某种形式的自我修复和再生,但大于临界阈值的损伤或在某些疾病背景下发生的损伤会导致愈合受损,并最终导致结构和功能丧失。免疫系统在组织修复中发挥着重要作用,在再生医学治疗方案的设计中必须予以考虑。特别是,巨噬细胞疗法已成为一种有前景的策略,它利用了这些细胞的修复作用。巨噬细胞对于成功的组织修复至关重要,并通过响应微环境线索而显著改变表型,在整个过程的所有阶段完成多种功能。根据它们对各种刺激的反应,它们可能释放生长因子、支持血管生成并促进细胞外基质重塑。然而,这种快速改变表型的能力对于巨噬细胞疗法策略来说也是个问题,因为过继转移的巨噬细胞在被给予损伤或炎症部位后无法维持治疗性表型。生物材料是一种在原位控制巨噬细胞表型同时增强其在损伤部位滞留的潜在方法。结合适当设计的免疫调节信号的细胞递送系统有潜力在传统疗法失败的难治性损伤中实现组织再生。在这里,我们探讨巨噬细胞疗法当前面临的挑战,特别是滞留和表型控制,生物材料如何克服这些挑战,以及下一代策略的机遇。生物材料将是推进巨噬细胞疗法广泛临床应用的重要工具。

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