Ebara Mitsuhiro
International Center for Materials Nanoarchitectonics (WPI-MANA), National Institute for Materials Science (NIMS), Tsukuba, Japan.
Graduate School of Pure and Applied Sciences, University of Tsukuba, Tsukuba, Japan.
Chonnam Med J. 2019 Jan;55(1):1-7. doi: 10.4068/cmj.2019.55.1.1. Epub 2019 Jan 25.
The field of biomaterials has seen a strong rejuvenation due to the new potential to modulate immune system in our body. This special class of materials is called "immunomodulatory biomaterials". Generally, three fundamental strategies are followed in the design of immunomodulatory biomaterials: (1) immuno-inert biomaterials, (2) immuno-activating biomaterials, and (3) immuno-tolerant biomaterials. While many applications of immuno-inert biomaterials such as biocompatible medical implants have been already proposed in the past decades, the ability to engineer biological activity into synthetic materials greatly increases the number of their potential uses and improves their performance in more traditional applications. The major focus of researchers is now set on developing immuno-tolerant biomaterials for anti-inflammatory therapies. In this review, we therefore introduce recent developments of immuno-tolerant biomaterials. Especially we introduce an apoptotic cell membrane-inspired polymer and its post-inflammatory effects on immune cells in this article.
由于在调节人体免疫系统方面具有新的潜力,生物材料领域迎来了强劲的复兴。这类特殊的材料被称为“免疫调节生物材料”。一般来说,免疫调节生物材料的设计遵循三种基本策略:(1)免疫惰性生物材料,(2)免疫激活生物材料,以及(3)免疫耐受生物材料。虽然在过去几十年中已经提出了免疫惰性生物材料的许多应用,如生物相容性医疗植入物,但将生物活性设计到合成材料中的能力大大增加了它们潜在用途的数量,并提高了它们在更传统应用中的性能。研究人员目前的主要重点是开发用于抗炎治疗的免疫耐受生物材料。因此,在本综述中,我们介绍了免疫耐受生物材料的最新进展。特别是在本文中,我们介绍了一种受凋亡细胞膜启发的聚合物及其对免疫细胞的炎症后效应。