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Developing functional musculoskeletal tissues through hypoxia and lysyl oxidase-induced collagen cross-linking.


ABSTRACT: The inability to recapitulate native tissue biomechanics, especially tensile properties, hinders progress in regenerative medicine. To address this problem, strategies have focused on enhancing collagen production. However, manipulating collagen cross-links, ubiquitous throughout all tissues and conferring mechanical integrity, has been underinvestigated. A series of studies examined the effects of lysyl oxidase (LOX), the enzyme responsible for the formation of collagen cross-links. Hypoxia-induced endogenous LOX was applied in multiple musculoskeletal tissues (i.e., cartilage, meniscus, tendons, ligaments). Results of these studies showed that both native and engineered tissues are enhanced by invoking a mechanism of hypoxia-induced pyridinoline (PYR) cross-links via intermediaries like

SUBMITTER: Makris EA 

PROVIDER: S-EPMC4234579 | biostudies-literature | 2014 Nov

REPOSITORIES: biostudies-literature

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