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用于刺激成骨细胞活性和骨相关疾病中骨整合的合成纳米柱

Synthetic Nanopillars for Stimulating Osteoblast Activity and Osteointegration in Bone-Related Disorders.

作者信息

Liang Wenqing, Zhou Chao, Liu Xiankun, Xie Qiong, Xia Linying, Li Qingping, Lin Hongming, Xiong Xiaochun, Zhang Hao, Zheng Zeping, Zhao Jiayi

机构信息

Department of Orthopedics, Zhoushan Hospital of Traditional Chinese Medicine Affiliated to Zhejiang Chinese Medical University, Zhoushan, 316000, People's Republic of China.

Department of Orthopedics, Zhoushan Guanghua Hospital, Zhoushan, 316000, People's Republic of China.

出版信息

Int J Nanomedicine. 2025 Feb 19;20:2205-2223. doi: 10.2147/IJN.S501963. eCollection 2025.

Abstract

Osteoporosis, osteoarthritis, and fractures are bone-related disorders that have a huge impact on the quality of life and healthcare systems worldwide. Traditional treatments, including bone grafts, have their limitations, with bone grafts often being rejected by the immune system and infected, making new treatments necessary. Nanopillars based on synthetic polymers have been demonstrated to be promising tools for bone regeneration and repair, showing to emulate the extracellular matrix composition, stimulate osteoblast activity and induce osteointegration. In this review, nanopillars fabrication techniques, such as electrospinning, nanoimprint lithography and self-assembly, also the state of the art of nanopillars technology are presented. Their role in modulating cellular responses via both physical and biochemical means, to enhance mineralization and to stabilize implants is also discussed. Additionally, their applications in treating bone-related disorders, eg promotion of fracture healing, augmentation of dental or orthopedic implants, and improvement of bone tissue engineering are discussed in the review. Using these focuses, each section examines opportunities and challenges (eg optimizing fabrication processes, improving biocompatibility, and investigating the integration of nanopillars with upcoming therapies like gene and stem cell therapy) for the potential of nanopillar technology. Finally, this review points out the requirement of scalable fabrication techniques, long term biocompatibility studies and multifunctional therapeutic strategies to fully employ the therapeutic applications of nanopillars in clinical scenarios. This review seeks to consolidate current knowledge of synthetic polymer based nanopillars and identify future directions for their use in bone related disorders through a comprehensive synthetic polymer nanopillar review.

摘要

骨质疏松症、骨关节炎和骨折是与骨骼相关的疾病,对全球的生活质量和医疗保健系统都有巨大影响。包括骨移植在内的传统治疗方法存在局限性,骨移植常常会被免疫系统排斥并受到感染,因此需要新的治疗方法。基于合成聚合物的纳米柱已被证明是用于骨再生和修复的有前景的工具,显示出能够模拟细胞外基质组成、刺激成骨细胞活性并诱导骨整合。在这篇综述中,介绍了纳米柱的制造技术,如静电纺丝、纳米压印光刻和自组装,以及纳米柱技术的现状。还讨论了它们通过物理和生化手段调节细胞反应、增强矿化和稳定植入物的作用。此外,综述中还讨论了它们在治疗与骨骼相关疾病中的应用,例如促进骨折愈合、增强牙科或骨科植入物以及改善骨组织工程。利用这些重点,每个部分都探讨了纳米柱技术潜力所面临的机遇和挑战(例如优化制造工艺、提高生物相容性以及研究纳米柱与基因和干细胞治疗等新兴疗法的整合)。最后,这篇综述指出了可扩展制造技术、长期生物相容性研究和多功能治疗策略的需求,以便在临床场景中充分利用纳米柱的治疗应用。这篇综述旨在通过全面的合成聚合物纳米柱综述巩固基于合成聚合物的纳米柱的当前知识,并确定其在与骨骼相关疾病中使用的未来方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6f88/11847438/b41f042343e0/IJN-20-2205-g0001.jpg

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