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      An Engineered Multiphase Three-Dimensional Microenvironment to Ensure the Controlled Delivery of Cyclic Strain and Human Growth Differentiation Factor 5 for the Tenogenic Commitment of Human Bone Marrow Mesenchymal Stem Cells.

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          Abstract

          At present, injuries or rupture of tendons are treated by surgical repair or conservative approaches with unpredictable clinical outcome. Alternative strategies to repair tendon defects without the undesirable side effects associated with the current options are needed. With this in mind, a tissue engineering approach has gained considerable attention as a promising strategy. Here we investigated a synthetic three-dimensional (3D) microenvironment able to interact with stem cells and inducing, via coupled biochemical and physical signals, their early commitment toward the tenogenic lineage. This multiphase 3D construct consisted of a braided hyaluronate elastic band merged with human bone marrow mesenchymal stem cells (hBMSCs) and poly-lactic-co-glycolic acid microcarriers loaded with human growth differentiation factor 5 (hGDF-5) by means of fibrin hydrogel. The multiphase structure allowed hBMSC culture under cyclic strain within a microenvironment where a controlled amount of hGDF-5 was regularly delivered. The cooperative biochemical and physical stimuli induced significantly increased expression of tenogenic markers, such as collagen type I and III, decorin, scleraxis, and tenascin-C, within only 3 days of dynamic hBMSC culture. This approach opens exciting perspectives for future development of engineered tendon tissue substitutes.

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          Author and article information

          Journal
          Tissue Eng Part A
          Tissue engineering. Part A
          Mary Ann Liebert Inc
          1937-335X
          1937-3341
          May 15 2017
          Affiliations
          [1 ] 1 Health Sciences and Technologies-Interdepartmental Center for Industrial Research (HST-ICIR), University of Bologna , Bologna, Italy .
          [2 ] 2 Laboratory "Stem Cells" U.O.C. Laboratory of Immunohematology and Transfusion Center , "Spirito Santo" Hospital, Pescara, Italy .
          [3 ] 3 Department of Biomedical and Neuromotor Sciences (DIBINEM), University of Bologna , Bologna, Italy .
          [4 ] 4 Department of Industrial Engineering, University of Salerno , Fisciano, Italy .
          [5 ] 5 Department of Electrical, Electronic and Information Engineering "Guglielmo Marconi" (DEI), University of Bologna , Cesena, Italy .
          [6 ] 6 Advanced Research Center on Electronic Systems (ARCES), University of Bologna , Bologna, Italy .
          [7 ] 7 Department of Medicine, Surgery and Dentistry, University of Salerno , Baronissi, Italy .
          Article
          10.1089/ten.TEA.2016.0407
          28401805
          e9f0a1cf-4702-49e0-8de9-87810ec82ca1
          History

          PLGA microcarriers,bioactive 3D scaffold,cyclic strain,human bone marrow mesenchymal stem cells,human growth differentiation factor 5

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