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镁纳米复合水凝胶逆转病理状态以促进下颌骨再生。

Magnesium Nanocomposite Hydrogel Reverses the Pathologies to Enhance Mandible Regeneration.

作者信息

Guo Jiaxin, Yao Hao, Chang Liang, Zhu Wangyong, Zhang Yuantao, Li Xu, Yang Boguang, Dai Bingyang, Chen Xin, Lei Lei, Chen Ziyi, Li Ye, Zheng Lizhen, Liu Weiyang, Tong Wenxue, Su Yuxiong, Qin Ling, Xu Jiankun

机构信息

Musculoskeletal Research Laboratory, Department of Orthopedics & Traumatology, Faculty of Medicine, The Chinese University of Hong Kong, Hong Kong SAR, 999077, P. R. China.

Innovative Orthopedic Biomaterial and Drug Translational Research Laboratory, Li Ka Shing Institute of Health Sciences, Prince of Wales Hospital, The Chinese University of Hong Kong, Hong Kong SAR, 999077, P. R. China.

出版信息

Adv Mater. 2025 Jan;37(2):e2312920. doi: 10.1002/adma.202312920. Epub 2024 Oct 10.

Abstract

The healing of bone defects after debridement in medication-related osteonecrosis of the jaw (MRONJ) is a challenging medical condition with impaired angiogenesis, susceptible infection, and pro-inflammatory responses. Magnesium (Mg) nanocomposite hydrogel is developed to specifically tackle multiple factors involved in MRONJ. Mg-oxide nanoparticles tune the gelation kinetics in the reaction between N-hydroxysuccinimide-functionalized hyperbranched poly (ethylene glycol) and proteins. This reaction allows an enhanced mechanical property after instant solidification and, more importantly, also stable gelation in challenging environments such as wet and hemorrhagic conditions. The synthesized hydrogel guides mandible regeneration in MRONJ rats by triggering the formation of type H vessels, activating Osterix+ osteoprogenitor cells, and generating anti-inflammatory microenvironments. Additionally, this approach demonstrates its ability to suppress infection by inhibiting specific pathogens while strengthening stress tolerance in the affected alveolar bone. Furthermore, the enhanced osteogenic properties and feasibility of implantation of the hydrogel are validated in mandible defect and iliac crest defect created in minipigs, respectively. Collectively, this study offers an injectable and innovative bone substitute to enhance mandible defect healing by tackling multiple detrimental pathologies.

摘要

药物相关性颌骨坏死(MRONJ)清创术后骨缺损的愈合是一种具有挑战性的医学状况,存在血管生成受损、易感染和促炎反应等问题。开发镁(Mg)纳米复合水凝胶以专门应对MRONJ中涉及的多种因素。氧化镁纳米颗粒调节N-羟基琥珀酰亚胺功能化超支化聚(乙二醇)与蛋白质之间反应的凝胶化动力学。该反应在瞬间固化后可增强机械性能,更重要的是,在诸如潮湿和出血条件等具有挑战性的环境中也能实现稳定的凝胶化。合成的水凝胶通过触发H型血管的形成、激活Osterix+骨祖细胞以及产生抗炎微环境来引导MRONJ大鼠的下颌骨再生。此外,这种方法通过抑制特定病原体来抑制感染,同时增强受影响牙槽骨的应力耐受性,从而证明了其抑制感染的能力。此外,水凝胶增强的成骨特性和植入可行性分别在小型猪制造的下颌骨缺损和髂嵴缺损中得到验证。总体而言,本研究提供了一种可注射的创新型骨替代物,通过应对多种有害病理状况来促进下颌骨缺损的愈合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2e4f/11733717/faec0a58431c/ADMA-37-2312920-g006.jpg

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