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- W2969082687 abstract "Although emerging studies have provided evidence that osteocytes are actively involved in fracture healing, there is a general lack of a detailed understanding of the mechanistic pathway, cellular events and expression of markers at different phases of healing.This systematic review describes the role of osteocytes in fracture healing from early to late phase. Literature search was performed in PubMed and Embase. Original animal and clinical studies with available English full-text were included. Information was retrieved from the selected studies.A total of 23 articles were selected in this systematic review. Most of the studies investigated changes of various genes and proteins expression patterns related to osteocytes. Several studies have described a constant expression of osteocyte-specific marker genes throughout the fracture healing cascade followed by decline phase with the progress of healing, denoting the important physiological role of the osteocyte and the osteocyte lacuno-canalicular network in fracture healing. The reports of various markers suggested that osteocytes could trigger coordinated bone healing responses from cell death and expression of proinflammatory markers cyclooxygenase-2 and interleukin 6 at early phase of fracture healing. This is followed by the expression of growth factors bone morphogenetic protein-2 and cysteine-rich angiogenic inducer 61 that matched with the neo-angiogenesis, chondrogenesis and callus formation during the intermediate phase. Tightly controlled regulation of osteocyte-specific markers E11/Podoplanin (E11), dentin matrix protein 1 and sclerostin modulate and promote osteogenesis, mineralisation and remodelling across different phases of fracture healing. Stabilised fixation was associated with the finding of higher number of osteocytes with little detectable bone morphogenetic proteins expressions in osteocytes. Sclerostin-antibody treatment was found to result in improvement in bone mass, bone strength and mineralisation.To further illustrate the function of osteocytes, additional longitudinal studies with appropriate clinically relevant model to study osteoporotic fractures are crucial. Future investigations on the morphological changes of osteocyte lacuno-canalicular network during healing, osteocyte-mediated signalling molecules in the transforming growth factor-beta-Smad3 pathway, perilacunar remodelling, type of fixation and putative biomarkers to monitor fracture healing are highly desirable to bridge the current gaps of knowledge.The translational potential of this article: This systematic review provides an up-to-date chronological overview and highlights the osteocyte-regulated events at gene, protein, cellular and tissue levels throughout the fracture healing cascade, with the hope of informing and developing potential new therapeutic strategies that could improve the timing and quality of fracture healing in the future." @default.
- W2969082687 created "2019-08-22" @default.
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- W2969082687 date "2020-03-01" @default.
- W2969082687 modified "2023-10-04" @default.
- W2969082687 title "How much do we know about the role of osteocytes in different phases of fracture healing? A systematic review" @default.
- W2969082687 cites W143584679 @default.
- W2969082687 cites W1628998952 @default.
- W2969082687 cites W1678945173 @default.
- W2969082687 cites W1799961617 @default.
- W2969082687 cites W1968923669 @default.
- W2969082687 cites W1969807770 @default.
- W2969082687 cites W1973570718 @default.
- W2969082687 cites W1978773348 @default.
- W2969082687 cites W1980486821 @default.
- W2969082687 cites W1982835953 @default.
- W2969082687 cites W1989320818 @default.
- W2969082687 cites W1990289437 @default.
- W2969082687 cites W1992814041 @default.
- W2969082687 cites W1997526887 @default.
- W2969082687 cites W2004046063 @default.
- W2969082687 cites W2005501262 @default.
- W2969082687 cites W2006980112 @default.
- W2969082687 cites W2013293643 @default.
- W2969082687 cites W2016894777 @default.
- W2969082687 cites W2018330233 @default.
- W2969082687 cites W2018353362 @default.
- W2969082687 cites W2019582558 @default.
- W2969082687 cites W2019777614 @default.
- W2969082687 cites W2020604945 @default.
- W2969082687 cites W2022395276 @default.
- W2969082687 cites W2037650463 @default.
- W2969082687 cites W2038416884 @default.
- W2969082687 cites W2038571307 @default.
- W2969082687 cites W2038645339 @default.
- W2969082687 cites W2041525374 @default.
- W2969082687 cites W2048162688 @default.
- W2969082687 cites W2048492086 @default.
- W2969082687 cites W2051600912 @default.
- W2969082687 cites W2051661617 @default.
- W2969082687 cites W2052513684 @default.
- W2969082687 cites W2055746941 @default.
- W2969082687 cites W2064599015 @default.
- W2969082687 cites W2072958401 @default.
- W2969082687 cites W2073558178 @default.
- W2969082687 cites W2074426211 @default.
- W2969082687 cites W2080100438 @default.
- W2969082687 cites W2080223498 @default.
- W2969082687 cites W2082466119 @default.
- W2969082687 cites W2089322787 @default.
- W2969082687 cites W2090197092 @default.
- W2969082687 cites W2091762840 @default.
- W2969082687 cites W2093678857 @default.
- W2969082687 cites W2095451506 @default.
- W2969082687 cites W2097059082 @default.
- W2969082687 cites W2098299232 @default.
- W2969082687 cites W2101299206 @default.
- W2969082687 cites W2112964941 @default.
- W2969082687 cites W2113107805 @default.
- W2969082687 cites W2119265361 @default.
- W2969082687 cites W2123033902 @default.
- W2969082687 cites W2135078980 @default.
- W2969082687 cites W2135444604 @default.
- W2969082687 cites W2135671879 @default.
- W2969082687 cites W2142302926 @default.
- W2969082687 cites W2148067910 @default.
- W2969082687 cites W2150145615 @default.
- W2969082687 cites W2155012110 @default.
- W2969082687 cites W2170595983 @default.
- W2969082687 cites W2175678752 @default.
- W2969082687 cites W2281739228 @default.
- W2969082687 cites W2339266128 @default.
- W2969082687 cites W2343938601 @default.
- W2969082687 cites W2517475752 @default.
- W2969082687 cites W2560559234 @default.
- W2969082687 cites W2566613453 @default.
- W2969082687 cites W2580915404 @default.
- W2969082687 cites W2752206022 @default.
- W2969082687 cites W2782245182 @default.
- W2969082687 cites W2893766872 @default.
- W2969082687 cites W2942343142 @default.
- W2969082687 cites W4230306199 @default.
- W2969082687 doi "https://doi.org/10.1016/j.jot.2019.07.005" @default.
- W2969082687 hasPubMedCentralId "https://www.ncbi.nlm.nih.gov/pmc/articles/7152791" @default.
- W2969082687 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/32309136" @default.
- W2969082687 hasPublicationYear "2020" @default.
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