Tian Pengfei, Zhao Limin, Kim Jua, Li Xian, Liu Chunyu, Cui Xu, Liang Tao, Du Yunbo, Chen Xiehui, Pan Haobo
Center for Human Tissues and Organs Degeneration, Shenzhen Institute of Advanced Technology, Chinese Academy of Sciences, Shenzhen, 518055, PR China.
Shenzhen Longhua District Central Hospital, Shenzhen, 518000, PR China.
Bioact Mater. 2023 Mar 8;26:231-248. doi: 10.1016/j.bioactmat.2023.02.023. eCollection 2023 Aug.
The regeneration of alveolar bone is still clinical challenge, particularly accompanied with diabetes, causing metabolic disorder with a protracted low-grade inflammatory phenotype. As a result, the anticipated loading of biomaterials is highly suspicious in spontaneous modulation of cells function, which is mostly disturbed by constant inflammation. In this study, we developed glucose and hydrogen peroxide dual-responsive borosilicate glass (BSG) scaffolds loaded with epigallocatechin gallate (EGCG) to synergistically modulate the abnormal inflammation of diabetic alveolar bone defects. It was found that the release of EGCG by BSG could directly regulate the shift of macrophages from M1 to the M2 phenotype by promoting autophagy and lessening the inhibition of autophagic flux. Moreover, EGCG can also indirectly regulate the polarization phenotype of macrophages by reducing the activation of NF-κb in stem cells and restoring its immunoregulatory capacity. Therefore, the addition of EGCG to BSG scaffold in diabetes allows for a more striking modulation of the macrophage phenotype in a timely manner. The altered macrophage phenotype reduces local inflammation and thus increases the ability to repair diabetic alveolar bone, showing promise for the treatment of alveolar defect in diabetic patients.
牙槽骨的再生仍然是一个临床挑战,尤其是在伴有糖尿病的情况下,糖尿病会导致代谢紊乱,并伴有长期的低度炎症表型。因此,生物材料的预期负载在细胞功能的自发调节方面非常可疑,而细胞功能大多受到持续炎症的干扰。在本研究中,我们开发了负载表没食子儿茶素没食子酸酯(EGCG)的葡萄糖和过氧化氢双响应硼硅酸盐玻璃(BSG)支架,以协同调节糖尿病牙槽骨缺损的异常炎症。研究发现,BSG释放的EGCG可通过促进自噬和减轻自噬流的抑制作用,直接调节巨噬细胞从M1表型向M2表型的转变。此外,EGCG还可通过降低干细胞中NF-κb的激活并恢复其免疫调节能力,间接调节巨噬细胞的极化表型。因此,在糖尿病中向BSG支架添加EGCG能够更及时且显著地调节巨噬细胞表型。改变后的巨噬细胞表型可减轻局部炎症,从而增强修复糖尿病牙槽骨的能力,为治疗糖尿病患者的牙槽骨缺损带来了希望。