利用生物材料进行免疫调节驱动的组织工程
Harnessing Biomaterials for Immunomodulatory-Driven Tissue Engineering.
作者信息
Zhong Justin X, Raghavan Preethi, Desai Tejal A
机构信息
UC Berkeley - UCSF Graduate Program in Bioengineering, San Francisco, CA 94143 USA.
Department of Bioengineering and Therapeutic Sciences, University of California, San Francisco, CA 94143 USA.
出版信息
Regen Eng Transl Med. 2023;9(2):224-239. doi: 10.1007/s40883-022-00279-6. Epub 2022 Sep 29.
ABSTRACT
The immune system plays a crucial role during tissue repair and wound healing processes. Biomaterials have been leveraged to assist in this in situ tissue regeneration process to dampen the foreign body response by evading or suppressing the immune system. An emerging paradigm within regenerative medicine is to use biomaterials to influence the immune system and create a pro-reparative microenvironment to instigate endogenously driven tissue repair. In this review, we discuss recent studies that focus on immunomodulation of innate and adaptive immune cells for tissue engineering applications through four biomaterial-based mechanisms of action: biophysical cues, chemical modifications, drug delivery, and sequestration. These materials enable augmented regeneration in various contexts, including vascularization, bone repair, wound healing, and autoimmune regulation. While further understanding of immune-material interactions is needed to design the next generation of immunomodulatory biomaterials, these materials have already demonstrated great promise for regenerative medicine.
LAY SUMMARY
The immune system plays an important role in tissue repair. Many biomaterial strategies have been used to promote tissue repair, and recent work in this area has looked into the possibility of doing repair by tuning. Thus, we examined the literature for recent works showcasing the efficacy of these approaches in animal models of injuries. In these studies, we found that biomaterials successfully tuned the immune response and improved the repair of various tissues. This highlights the promise of immune-modulating material strategies to improve tissue repair.
摘要
免疫系统在组织修复和伤口愈合过程中发挥着关键作用。生物材料已被用于协助这一原位组织再生过程,通过规避或抑制免疫系统来减轻异物反应。再生医学中的一个新兴范例是利用生物材料影响免疫系统并创造一个促进修复的微环境,以激发内源性驱动的组织修复。在这篇综述中,我们讨论了最近的研究,这些研究通过基于生物材料的四种作用机制,即生物物理线索、化学修饰、药物递送和隔离,聚焦于组织工程应用中固有免疫细胞和适应性免疫细胞的免疫调节。这些材料在包括血管生成、骨修复、伤口愈合和自身免疫调节等各种情况下都能促进再生。虽然为设计下一代免疫调节生物材料还需要进一步了解免疫-材料相互作用,但这些材料已在再生医学中展现出巨大的前景。
简要概述
免疫系统在组织修复中发挥着重要作用。许多生物材料策略已被用于促进组织修复,该领域的最新研究探讨了通过调节来进行修复的可能性。因此,我们查阅了文献,以了解近期在损伤动物模型中展示这些方法有效性的研究。在这些研究中,我们发现生物材料成功地调节了免疫反应并改善了各种组织的修复。这凸显了免疫调节材料策略在改善组织修复方面的前景。