Regulatory cellular and molecular networks in the bone microenvironment during aging

Lingli Zhang, Zhikun Wang, Yuan Zhang, Rui Ji, Zhiben Li, Jun Zou, Bo Gao
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Abstract

Age-induced abnormalities in bone metabolism disrupt the equilibrium between bone resorption and formation. This largely stems from disturbances in bone homeostasis, in which signaling pathways exert a significant regulatory influence. Aging compromises the functionality of the bone marrow mesenchymal stem cells (BMSCs), ultimately resulting in tissue dysfunction and pathological aging. Age-related bone degradation primarily manifests as reduced bone formation and the increased accumulation of bone marrow fat. Cellular senescence diminishes bone cell vitality, thereby disrupting the balance of bone remodeling. Intensive osteoclast differentiation leads to the generation of more osteoclasts and increased bone resorption. This review provides insight into the impact of aging on bone, encompassing bone cell states during the aging process and bone signaling pathway transformations. It primarily delves into aging-related signaling pathways, such as the bone morphogenetic protein/Smad, Wnt/β-catenin, osteoprotegerin/receptor activator of NF-κB ligand/receptor activator of NF-κB, connexin43/miR21, and nuclear factor erythroid 2-related factor 2/antioxidant response element pathways, seeking to enhance our comprehension of crucial bone cells and their secretory phenotypes during aging. Furthermore, the precise molecular regulatory mechanisms underlying the interactions between bone signaling pathways and aging are investigated.
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衰老过程中骨骼微环境的细胞和分子调控网络
年龄引起的骨代谢异常破坏了骨吸收和骨形成之间的平衡。这主要源于骨平衡的紊乱,其中信号通路发挥着重要的调节作用。衰老会损害骨髓间充质干细胞(BMSCs)的功能,最终导致组织功能障碍和病理性衰老。与年龄相关的骨质退化主要表现为骨形成减少和骨髓脂肪堆积增加。细胞衰老会降低骨细胞的活力,从而破坏骨重塑的平衡。破骨细胞的密集分化会导致产生更多的破骨细胞,增加骨吸收。本综述深入探讨了衰老对骨的影响,包括衰老过程中的骨细胞状态和骨信号通路的转变。它主要探讨了与衰老相关的信号通路,如骨形态发生蛋白/Smad、Wnt/β-catenin、骨保护gerin/NF-κB配体受体激活剂/NF-κB受体激活剂、连接蛋白43/miR21和核因子红细胞2相关因子2/抗氧化反应元件通路,力求加深我们对衰老过程中关键骨细胞及其分泌表型的理解。此外,还研究了骨信号通路与衰老之间相互作用的精确分子调控机制。
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