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Burns, ISSN 0305-4179, 05/2015, Volume 41, Issue 3, p. 558
* Non-severe burn injury leads to loss of trabecular bone in a mouse model. * No changes are seen in cortical bone after non-severe burn injury. * The loss of... 
Burns and scalds | Tumor necrosis factor | Analysis
Journal Article
Journal of Biological Chemistry, ISSN 0021-9258, 05/2009, Volume 284, Issue 21, pp. 14667 - 14675
Journal Article
Small GTPases, ISSN 2154-1248, 01/2018, pp. 1 - 17
The ability to rapidly respond to applied force underpins cell/tissue homeostasis. This response is mediated by mechanotransduction pathways that regulate... 
mechano-reciprocity | extracellular matrix (ECM) | ROCK | actomyosin tension | cytoskeleton | compressive stress | mechanical signaling | RHOA
Journal Article
The Journal of Biological Chemistry, ISSN 0021-9258, 5/2009, Volume 284, Issue 21, pp. 14667 - 14676
The V-ATPase d2 protein constitutes an important subunit of the V-ATPase proton pump, which regulates bone homeostasis; however, currently little is known... 
Mechanisms of Signal Transduction
Journal Article
Bone, ISSN 8756-3282, 2010, Volume 47, pp. S444 - S444
Journal Article
02/2018, ISBN 1119282489
Wound healing is a highly orchestrated process that requires cooperation between different local and systemic processes. In this chapter, the authors detail... 
mechanoreciprocity | mechanical signaling | actomyosin tension | cytoskeleton | Rho‐ROCK | compressive stress | Cytoskeleton | Compressive stress | Rho-ROCK | Mechanical signaling | Mechanoreciprocity | Actomyosin tension
Book Chapter
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