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用于增强下颌骨再生的增强和活性氧清除水凝胶的多尺度设计

Multiscale design of stiffening and ROS scavenging hydrogels for the augmentation of mandibular bone regeneration.

作者信息

Wu Yanlin, Li Xuan, Sun Yimin, Tan Xiujun, Wang Chenglin, Wang Zhenming, Ye Ling

机构信息

State Key Laboratory of Oral Diseases, West China Hospital of Stomatology, Sichuan University, Chengdu, 610041, China.

出版信息

Bioact Mater. 2022 May 23;20:111-125. doi: 10.1016/j.bioactmat.2022.05.021. eCollection 2023 Feb.

Abstract

Although biomimetic hydrogels play an essential role in guiding bone remodeling, reconstructing large bone defects is still a significant challenge since bioinspired gels often lack osteoconductive capacity, robust mechanical properties and suitable antioxidant ability for bone regeneration. To address these challenges, we first engineered molecular design of hydrogels (gelatin/polyethylene glycol diacrylate/2-(dimethylamino)ethyl methacrylate, GPEGD), where their mechanical properties were significantly enhanced via introducing trace amounts of additives (0.5 wt%). The novel hybrid hydrogels show high compressive strength (>700 kPa), stiff modulus (>170 kPa) and strong ROS-scavenging ability. Furthermore, to endow the GPEGD hydrogels excellent osteoinductions, novel biocompatible, antioxidant and BMP-2 loaded polydopamine/heparin nanoparticles (BPDAH) were developed for functionalization of the GPEGD gels (BPDAH-GPEGD). results indicate that the antioxidant BPDAH-GPEGD is able to deplete elevated ROS levels to protect cells viability against ROS damage. More importantly, the BPDAH-GPEGD hydrogels have good biocompatibility and promote the osteo differentiation of preosteoblasts and bone regenerations. At 4 and 8 weeks after implantation of the hydrogels in a mandibular bone defect, Micro-computed tomography and histology results show greater bone volume and enhancements in the quality and rate of bone regeneration in the BPDAH-GPEGD hydrogels. Thus, the multiscale design of stiffening and ROS scavenging hydrogels could serve as a promising material for bone regeneration applications.

摘要

尽管仿生水凝胶在引导骨重塑中起着至关重要的作用,但重建大的骨缺损仍然是一项重大挑战,因为受生物启发的凝胶通常缺乏骨传导能力、强大的机械性能和适合骨再生的抗氧化能力。为了应对这些挑战,我们首先对水凝胶(明胶/聚乙二醇二丙烯酸酯/甲基丙烯酸2-(二甲基氨基)乙酯,GPEGD)进行了分子设计,通过引入痕量添加剂(0.5 wt%)显著增强了它们的机械性能。新型杂化水凝胶表现出高抗压强度(>700 kPa)、刚性模量(>170 kPa)和强大的活性氧清除能力。此外,为了赋予GPEGD水凝胶优异的骨诱导能力,开发了新型生物相容性、抗氧化且负载骨形态发生蛋白-2的聚多巴胺/肝素纳米颗粒(BPDAH)用于GPEGD凝胶的功能化(BPDAH-GPEGD)。结果表明,抗氧化的BPDAH-GPEGD能够降低升高的活性氧水平,保护细胞活力免受活性氧损伤。更重要的是,BPDAH-GPEGD水凝胶具有良好的生物相容性,可促进前成骨细胞的骨分化和骨再生。在下颌骨缺损处植入水凝胶4周和8周后,微型计算机断层扫描和组织学结果显示,BPDAH-GPEGD水凝胶中的骨体积更大,骨再生的质量和速率有所提高。因此,具有增强和活性氧清除功能的水凝胶的多尺度设计可作为一种有前途的骨再生应用材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c6f7/9133584/7a19ac8ca479/ga1.jpg

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