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Interactions between Muscle and Bone—Where Physics Meets Biology

机译:肌肉与骨骼之间的相互作用-物理与生物学相遇的地方

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摘要

Muscle and bone interact via physical forces and secreted osteokines and myokines. Physical forces are generated through gravity, locomotion, exercise, and external devices. Cells sense mechanical strain via adhesion molecules and translate it into biochemical responses, modulating the basic mechanisms of cellular biology such as lineage commitment, tissue formation, and maturation. This may result in the initiation of bone formation, muscle hypertrophy, and the enhanced production of extracellular matrix constituents, adhesion molecules, and cytoskeletal elements. Bone and muscle mass, resistance to strain, and the stiffness of matrix, cells, and tissues are enhanced, influencing fracture resistance and muscle power. This propagates a dynamic and continuous reciprocity of physicochemical interaction. Secreted growth and differentiation factors are important effectors of mutual interaction. The acute effects of exercise induce the secretion of exosomes with cargo molecules that are capable of mediating the endocrine effects between muscle, bone, and the organism. Long-term changes induce adaptations of the respective tissue secretome that maintain adequate homeostatic conditions. Lessons from unloading, microgravity, and disuse teach us that gratuitous tissue is removed or reorganized while immobility and inflammation trigger muscle and bone marrow fatty infiltration and propagate degenerative diseases such as sarcopenia and osteoporosis. Ongoing research will certainly find new therapeutic targets for prevention and treatment.
机译:肌肉和骨骼通过物理力以及分泌的骨因子和肌肉因子相互作用。物理力是通过重力,运动,锻炼和外部设备产生的。细胞通过粘附分子感知机械应变,并将其转化为生化反应,从而调节细胞生物学的基本机制,例如谱系定型,组织形成和成熟。这可能导致骨骼形成,肌肉肥大和细胞外基质成分,黏附分子和细胞骨架成分的产生增加。骨骼和肌肉质量,抗应变能力以及基质,细胞和组织的刚度得到增强,从而影响骨折的抵抗力和肌肉力量。这传播了物理化学相互作用的动态和连续的互惠性。分泌的生长和分化因子是相互影响的重要因素。运动的急性作用诱导货物分子分泌外泌体,这些货物分子能够介导肌肉,骨骼和有机体之间的内分泌作用。长期的变化会引起维持适当的稳态条件的各个组织分泌组的适应。卸载,微重力和废料的教训告诉我们,无用组织被去除或重组,而固定和炎症触发肌肉和骨髓脂肪浸润并传播退化性疾病,如肌肉减少症和骨质疏松症。正在进行的研究肯定会找到预防和治疗的新治疗靶标。

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