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Platelet-rich plasma enhances the integration of bioengineered cartilage with native tissue in an in vitro model
Journal article   Open access   Peer reviewed

Platelet-rich plasma enhances the integration of bioengineered cartilage with native tissue in an in vitro model

Corey Sermer, Rita Kandel, Jesse Anderson, Mark Hurtig and John Theodoropoulos
Journal of Tissue Engineering and Regenerative Medicine, Vol.12(2)
2018

Abstract

Aggrecans Animals Bioengineering Cartilage Cattle Collagen Type II Extracellular Matrix Matrix Metalloproteinase 13 Models, Biological Platelet-Rich Plasma Bone Collagen Gene expression Integration Plasma (human) Platelets Repair aggrecan collagen collagen type 2 collagenase 3 glycosaminoglycan aggrecan collagen type 2 collagenase 3 'current Articular cartilages Bioengineered cartilage Biologic Cartilage integration Cartilage repair Host tissues In-vitro models Platelet rich plasma Repair tissues animal cell animal experiment animal tissue Article articular cartilage bioaccumulation bioengineering bovine cartilage cartilage explant cell isolation chondrocyte controlled study gene expression immunohistochemistry in vitro study matrix metalloproteinase 13 gene nonhuman porosity priority journal protein localization thrombocyte rich plasma tissue engineering tissue repair tissue transplantation animal bioengineering biological model cartilage extracellular matrix metabolism physiology procedures thrombocyte rich plasma Cartilage
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https://doi.org/10.1002/term.2468View
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