Bone fracture healing: perspectives according to molecular basis

骨细胞 细胞骨架 细胞生物学 肌动蛋白细胞骨架 骨愈合 细胞外基质 长春新碱 Wnt信号通路 化学 成骨细胞 信号转导 生物 细胞 解剖 焦点粘着 生物化学 体外
作者
Iván Nadir Camal Ruggieri,Andrés Mauricio Cícero,João Paulo Mardegan Issa,Sara Feldman
出处
期刊:Journal of Bone and Mineral Metabolism [Springer Science+Business Media]
卷期号:39 (3): 311-331 被引量:32
标识
DOI:10.1007/s00774-020-01168-0
摘要

Fractures have a great impact on health all around the world and with fracture healing optimization; this problem could be resolved partially. To make a practical contribution to this issue, the knowledge of bone tissue, cellularity, and metabolism is essential, especially cytoskeletal architecture and its transformations according to external pressures. Special physical and chemical characteristics of the extracellular matrix (ECM) allow the transmission of mechanical stimuli from outside the cell to the plasmatic membrane. The osteocyte cytoskeleton is conformed by a complex network of actin and microtubules combined with crosslinker proteins like vinculin and fimbrin, connecting and transmitting outside stimuli through EMC to cytoplasm. Herein, critical signaling pathways like Cx43-depending ones, MAPK/ERK, Wnt, YAP/TAZ, Rho-ROCK, and others are activated due to mechanical stimuli, resulting in osteocyte cytoskeletal changes and ECM remodeling, altering the tissue and, therefore, the bone. In recent years, the osteocyte has gained more interest and value in relation to bone homeostasis as a great coordinator of other cell populations, thanks to its unique functions. By integrating the latest advances in relation to intracellular signaling pathways, mechanotransmission system of the osteocyte and bone tissue engineering, there are promising experimental strategies, while some are ready for clinical trials. This work aims to show clearly and precisely the integration between cytoskeleton and main molecular pathways in relation to mechanotransmission mechanism in osteocytes, and the use of this theoretical knowledge in therapeutic tools for bone fracture healing.
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