4.7 Review

Extracellular vesicles in bone: dogrobbers in the eternal battle field

Journal

CELL COMMUNICATION AND SIGNALING
Volume 17, Issue -, Pages -

Publisher

BMC
DOI: 10.1186/s12964-019-0319-5

Keywords

Extracellular vesicles; Bone; Exosomes; Signalling pathways; Intercellular communications

Categories

Funding

  1. National Natural Science Foundation of China [81871834, 81802226, 81301589]
  2. Shanghai Jiao Tong University K.C.Wong Medical Fellowship Fund

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Throughout human life, bone is constantly in a delicate dynamic equilibrium of synthesis and resorption, hosting finely-tuned bone mineral metabolic processes for bone homeostasis by collaboration or symphony among several cell types including osteoclasts (OCs), osteoblasts (OBs), osteocytes (OYs), vascular endothelial cells (ECs) and their precursors. Beyond these connections, a substantial level of communication seems to occur between bone and other tissues, and together, they form an organic unit linked to human health and disease. However, the current hypothesis, which includes growth factors, hormones and specific protein secretion, incompletely explains the close connections among bone cells or between bone and other tissues. Extracellular vesicles (EVs) are widely-distributed membrane structures consisting of lipid bilayers, membrane proteins and intravesicular cargo (including proteins and nucleic acids), ranging from 30nm to 1000nm in diameter, and their characters have been highly conserved throughout evolution. EVs have targeting abilities and the potential to transmit multidimensional, abundant and complicated information, as powerful and substantial dogrobbers mediating intercellular communications. As research has progressed, EVs have gradually become thought of as dogrobbers in bone tissuethe eternal battle field in a delicate dynamic balance of destruction and reconstruction. In the current review, we give a brief description of the major constituent cells in bone tissues and explore the progress of current research on bone-derived EVs. In addition, this review also discusses in depth not only potential directions for future research to breakthrough in this area but also problems existing in current research that need to be solved for a better understanding of bone tissues.

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