Liu Wenbo, Wang Xin, Su Jinlei, Jiang Qingsong, Wang Jing, Xu Yang, Zheng Yudong, Zhong Zhihui, Lin Hai
School of Material Science and Engineering, University of Science and Technology Beijing, Beijing, China.
Laboratory of Nonhuman Primate Disease Modeling Research, State Key Laboratory of Biotherapy, West China Hospital, Sichuan University, Chengdu, China.
Front Bioeng Biotechnol. 2021 Feb 18;9:628129. doi: 10.3389/fbioe.2021.628129. eCollection 2021.
Dura substitutes are applied in duraplasty to repair lost or damaged dura. Collagen-based dura substitutes are mainstream products in both the US and Chinese markets. In this study, dura substitute devices with potential dura regeneration ability are evaluated. The dura substitutes are composed of fibrous type I collagen that were purified from bovine tendon. Physical and chemical characterization demonstrated that the tested dura substitute has desirable porous scaffolding structures and is composed of highly purified type I collagen. The collagen dura substitutes were further investigated with a rabbit model for 6 months to evaluate their safety and performance to repair and regenerate dura. No inflammation or infection was observed during the course of study. The integration of the collagen dura substitutes with surrounding tissue was normal as compared to native tissue. The macroscopic and microscopic histological assessments of the sampled animal tissue showed that the damaged dura were regenerated. The collagen dura substitutes were resorbed between 3 and 6 months along with newly regenerated dura. Both tissue adhesion and dura repair was the worst in blank control group as compared to those in the collagen dura substitutes. Taken together, regenerative collagen dura substitutes demonstrated with suitable physicochemical properties. The evaluation in a rabbit model further demonstrated the safety and performance of such substitutes for dura repair and regeneration.
硬脑膜替代物用于硬脑膜成形术以修复缺失或受损的硬脑膜。基于胶原蛋白的硬脑膜替代物在美国和中国市场都是主流产品。在本研究中,对具有潜在硬脑膜再生能力的硬脑膜替代装置进行了评估。这些硬脑膜替代物由从牛肌腱中纯化的I型纤维胶原蛋白组成。物理和化学特性表明,测试的硬脑膜替代物具有理想的多孔支架结构,且由高度纯化的I型胶原蛋白组成。使用兔模型对胶原蛋白硬脑膜替代物进行了为期6个月的进一步研究,以评估其修复和再生硬脑膜的安全性和性能。在研究过程中未观察到炎症或感染。与天然组织相比,胶原蛋白硬脑膜替代物与周围组织的整合正常。对采样动物组织的宏观和微观组织学评估表明,受损的硬脑膜得到了再生。胶原蛋白硬脑膜替代物在3至6个月内被吸收,同时新的硬脑膜再生。与胶原蛋白硬脑膜替代物组相比,空白对照组的组织粘连和硬脑膜修复情况最差。综上所述,再生胶原蛋白硬脑膜替代物具有合适的物理化学性质。在兔模型中的评估进一步证明了此类替代物用于硬脑膜修复和再生的安全性和性能。