Proteomics

Dataset Information

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Canine Flexor Tendon Healing - Effect of adipose-derived stromal cells and BMP12 on intrasynovial tendon repair: A biomechanical, biochemical, and proteomics study


ABSTRACT: The project investigated the changes in proteomics profile of canine flexor digitorum profundus tendons 28 days after tendon transection and surgical repair with (ASCs+BMP12) or without a stem cell and growth factor based treatment (repair only). Specifically, adipose-derived mesenchymal stromal cells together with BMP12 were delivered with a polymer scaffold consisting of multiple alternating layers of a heparin/fibrin-based delivery system and a polylactic co-glycolic acid (PLGA) scaffold. Non-operated tendons from contralateral digits were used as normal control (Normal).

INSTRUMENT(S): TripleTOF 5600

ORGANISM(S): Canis Familiaris (dog) (canis Lupus Familiaris)

TISSUE(S): Stem Cell, Tendon

DISEASE(S): Wounds And Injuries

SUBMITTER: Hua Shen  

LAB HEAD: Richard H Gelberman

PROVIDER: PXD004097 | Pride | 2017-06-12

REPOSITORIES: Pride

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Publications

Effect of adipose-derived stromal cells and BMP12 on intrasynovial tendon repair: A biomechanical, biochemical, and proteomics study.

Gelberman Richard H RH   Shen Hua H   Kormpakis Ioannis I   Rothrauff Benjamin B   Yang Guang G   Tuan Rocky S RS   Xia Younan Y   Sakiyama-Elbert Shelly S   Silva Matthew J MJ   Thomopoulos Stavros S  

Journal of orthopaedic research : official publication of the Orthopaedic Research Society 20151014 4


The outcomes of flexor tendon repair are highly variable. As recent efforts to improve healing have demonstrated promise for growth factor- and cell-based therapies, the objective of the current study was to enhance repair via application of autologous adipose derived stromal cells (ASCs) and the tenogenic growth factor bone morphogenetic protein (BMP) 12. Controlled delivery of cells and growth factor was achieved in a clinically relevant canine model using a nanofiber/fibrin-based scaffold. Co  ...[more]

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