Li Hongwei, Chen Xin, Wang Bozhao, Wu Caiming, Li Jian, Xu Ling
State Key Laboratory of Vaccines for Infectious Diseases, Xiang an Biomedicine Laboratory, National Innovation Platform for Industry-Education Integration in Vaccine Research, Department of Stomatology, Xiang'an Hospital of Xiamen University, School of Public Health, Xiamen University, Xiamen, 361102, China.
Department of Burn, Beijing Jishuitan Hospital, Beijing, 100035, China.
Bioact Mater. 2025 May 11;51:138-149. doi: 10.1016/j.bioactmat.2025.04.023. eCollection 2025 Sep.
The study aimed to develop a radiation cross-linked collagen scaffold (RCS) and assess its potential for root coverage and keratinized gingival regeneration, addressing the prevalent issue of gingival recession and limitations of traditional treatments. RCS was prepared through electron beam irradiation and cross-linking followed by freeze-drying. Its properties were evaluated, including Fourier transform infrared analysis, swelling behavior, microscopic observation, porosity measurement, compression modulus and structural stability. In a rat gingival recession model with 96 rats divided into four groups, the root coverage index and gingival health indices were measured, and histological analyses were conducted. The cross-linked network structure of RCS provided excellent mechanical properties and stability. In the rat model, RCS effectively promoted gingival regeneration, with the RCS group achieving a root coverage index of 87.7 ± 2.7 %, which was 54.13 %, 42.83 % and 8.41 % higher than that of the sham operation group, non-crosslinked group and chemical crosslinked group respectively. Histological analysis showed that RCS promoted anti-inflammatory macrophage polarization, enhanced collagen deposition and gingival lamina propria fiber density and increased angiogenesis. Additionally, RCS exhibited good biosafety, as blood indices and organ coefficients remained normal. In conclusion, RCS effectively promotes gingival regeneration and is a promising keratinized gingiva substitute for gingival recession, offering a new option for oral tissue repair.
该研究旨在开发一种辐射交联胶原蛋白支架(RCS),并评估其在牙根覆盖和角化牙龈再生方面的潜力,以解决牙龈退缩这一普遍问题以及传统治疗方法的局限性。RCS通过电子束辐照和交联,然后冷冻干燥制备而成。对其性能进行了评估,包括傅里叶变换红外分析、溶胀行为、显微镜观察、孔隙率测量、压缩模量和结构稳定性。在一个将96只大鼠分为四组的大鼠牙龈退缩模型中,测量了牙根覆盖指数和牙龈健康指数,并进行了组织学分析。RCS的交联网络结构提供了优异的机械性能和稳定性。在大鼠模型中,RCS有效地促进了牙龈再生,RCS组的牙根覆盖指数达到87.7±2.7%,分别比假手术组、非交联组和化学交联组高54.13%、42.83%和8.41%。组织学分析表明,RCS促进了抗炎性巨噬细胞极化,增强了胶原蛋白沉积、牙龈固有层纤维密度,并增加了血管生成。此外,RCS表现出良好的生物安全性,因为血液指标和器官系数保持正常。总之,RCS有效地促进了牙龈再生,是一种有前途的用于牙龈退缩的角化牙龈替代物,为口腔组织修复提供了新的选择。