Use of tissue engineering in the reconstruction of flexor tendon injuries

Author:

Bíró Vilmos1

Affiliation:

1. Pécs Hajnóczy u. 25/A, II. em. 2. 7633

Abstract

In his literary analysis, the author describes a novel method applied in the reconstruction of flexor tendon injuries of the hand. This procedure is named tissue engineering, and it is examined mainly under experimental circumstances. After definition of the method and descriptions of literary preliminaries the author discusses the healing process of the normal tendon tissue, then development of the scaffold, an important step of tissue engineering is described. After these topics the introduction of the pluripotent mesenchymal stem cells into the scaffold, and proliferation of these cells and development of the sliding systems are presented. The mechanical resisting ability of the formed tendon tissue is also discussed. Finally, the author concludes that as long as results of experimental research cannot be successfully applied into clinical practice, well-tried tendon reconstruction operations and high quality postoperative rehabilitation are needed. Orv. Hetil., 2015, 156(6), 216–220.

Publisher

Akademiai Kiado Zrt.

Subject

General Medicine

Reference46 articles.

1. Salamon, A.: The role of medical-biological research in the traumatology and orthopaedics. [Az orvosbiológiai kutatások jelentősége a traumatológiában és az ortopédiában.] Magyar Traumatológia, Ortopédia, Kézsebészet, Plasztikai Sebészet, 2000, 43(4), 282–288. [Hungarian]

2. Langer, R., Vacanti, J. P.: Tissue engineering. Science, 1993, 260(5110), 920–926.

3. Salamon, A.: Tissue replacement by using biology and biomaterial sciences (tissue engineering). [Szövetpótlás biológiai és biomateriális tudományok alkalmazásával (Tissue engineering).] Magyar Traumatológia, Ortopédia, Kézsebészet, Plasztikai Sebészet, 2005, 48(4), 340–351. [Hungarian]

4. Galvez, M. G., Crowe, C., Farnebo, S., et al.: Tissue engineering in flexor tendon surgery: current state and future advances. J. Hand Surg. Eur., 2014, 39(1), 71–78.

5. Salamon, A., Toldy, E.: The role of adult bone marrow derived mesenchymal stem cells, growth factors and carriers in the treatment of cartilage and bone defects. J. Stem Cells, 2009, 4(1), 71–80.

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