Bi Jiaming, Zeng Jiawei, Liu Xiaohao, Mo Chuzi, Yao Mingyan, Zhang Jing, Yuan Peiyan, Jia Bo, Xu Shuaimei
Department of Endodontics, Stomatological Hospital, School of Stomatology, Southern Medical University, Guangzhou, Guangdong, China.
Department of Periodontics, Stomatological Hospital, School of Stomatology, Southern Medical University, Guangzhou, Guangdong, China.
Saudi Pharm J. 2024 Dec;32(12):102209. doi: 10.1016/j.jsps.2024.102209. Epub 2024 Nov 24.
With the accumulation of knowledge on aging, people have gradually realized that among the many factors that cause individual aging, the accumulation of aging cells is an essential cause of organ degeneration and, ultimately, age-related diseases. Most cells present in the bone microenvironment gradually age over time, leading to an imbalance of osteogenesis, osteoclastogenesis, adipogenesis, and chondrogenesis. This imbalance contributes to age-related bone loss and the development of age-related bone diseases, such as osteoporosis. Bone aging can prolong the lifespan and delay the development of age-related diseases. Nanoparticles have controllable and stable physical and chemical properties and can precisely target different tissues and organs. By preparing multiple easily modified and biocompatible nanoparticles as different drug delivery carriers, specifically targeting various diseased tissues for controlled-release and sustained-release administration, the delivery efficiency of drugs can be significantly improved, and the toxicity and side effects of drugs can be substantially reduced, thereby improving the therapeutic effect of age-related bone diseases. In addition, other novel anti-aging strategies (such as stem cell exosomes) also have significant scientific and practical significance in anti-aging research on age-related bone diseases. This article reviews the research progress of various nano-drug-loaded particles and emerging anti-aging methods for treating age-related bone diseases, offering new insights and directions for precise targeted clinical therapies.
随着对衰老知识的积累,人们逐渐认识到,在导致个体衰老的诸多因素中,衰老细胞的积累是器官退化乃至与年龄相关疾病的一个重要原因。骨微环境中存在的大多数细胞会随着时间的推移逐渐衰老,导致成骨、破骨、成脂和成软骨过程失衡。这种失衡会导致与年龄相关的骨质流失以及与年龄相关的骨疾病(如骨质疏松症)的发展。骨骼衰老可以延长寿命并延缓与年龄相关疾病的发展。纳米颗粒具有可控且稳定的物理和化学性质,能够精确靶向不同的组织和器官。通过制备多种易于修饰且具有生物相容性的纳米颗粒作为不同的药物递送载体,特异性地靶向各种患病组织进行控释和缓释给药,可以显著提高药物的递送效率,并大幅降低药物的毒性和副作用,从而提高与年龄相关骨疾病的治疗效果。此外,其他新型抗衰老策略(如干细胞外泌体)在与年龄相关骨疾病的抗衰老研究中也具有重要的科学和实践意义。本文综述了各种载药纳米颗粒以及新兴抗衰老方法在治疗与年龄相关骨疾病方面的研究进展,为精准靶向临床治疗提供了新的见解和方向。