Wang Xiao, Zeng Jia, Gan Donglin, Ling Kun, He Mingfang, Li Jianshu, Lu Yongping
Scientific and Technological Innovation Center for Biomedical Materials and Clinical Research, Guangyuan Key Laboratory of Multifunctional Medical Hydrogel, Guangyuan Central Hospital, Guangyuan, 628000, People's Republic of China.
Jiangsu Collaborative Innovation Center of Biomedical Functional Materials, Jiangsu Key Laboratory of Bio-Functional Materials, School of Chemistry and Materials Science, Nanjing Normal University, Nanjing, 210023, People's Republic of China.
Nanomicro Lett. 2024 Nov 27;17(1):73. doi: 10.1007/s40820-024-01557-4.
Bioactive molecules have shown great promise for effectively regulating various bone formation processes, rendering them attractive therapeutics for bone regeneration. However, the widespread application of bioactive molecules is limited by their low accumulation and short half-lives in vivo. Hydrogels have emerged as ideal carriers to address these challenges, offering the potential to prolong retention times at lesion sites, extend half-lives in vivo and mitigate side effects, avoid burst release, and promote adsorption under physiological conditions. This review systematically summarizes the recent advances in the development of bioactive molecule-loaded hydrogels for bone regeneration, encompassing applications in cranial defect repair, femoral defect repair, periodontal bone regeneration, and bone regeneration with underlying diseases. Additionally, this review discusses the current strategies aimed at improving the release profiles of bioactive molecules through stimuli-responsive delivery, carrier-assisted delivery, and sequential delivery. Finally, this review elucidates the existing challenges and future directions of hydrogel encapsulated bioactive molecules in the field of bone regeneration.
生物活性分子已显示出有效调节各种骨形成过程的巨大潜力,使其成为骨再生的有吸引力的治疗方法。然而,生物活性分子的广泛应用受到其在体内低积累和短半衰期的限制。水凝胶已成为应对这些挑战的理想载体,具有延长在病变部位的保留时间、延长体内半衰期和减轻副作用、避免突释以及在生理条件下促进吸附的潜力。本综述系统总结了用于骨再生的负载生物活性分子水凝胶开发的最新进展,包括在颅骨缺损修复、股骨缺损修复、牙周骨再生以及伴有基础疾病的骨再生中的应用。此外,本综述讨论了旨在通过刺激响应递送、载体辅助递送和顺序递送改善生物活性分子释放曲线的当前策略。最后,本综述阐明了水凝胶包裹的生物活性分子在骨再生领域的现有挑战和未来方向。