Can a Biodegradable Implanted Bilayered Drug Delivery System Loaded with BMP-2/BMP-12 Take an Effective Role in the Biological Repair Process of Bone–Tendon Injuries? A Preliminary Report

Author:

Komur Baran1ORCID,Akyuva Yener2,Karaslan Numan3ORCID,Isyar Mehmet4ORCID,Gumustas Seyit Ali5,Yilmaz Ibrahim6ORCID,Akkaya Semih7,Sirin Duygu Yasar8,Mutlu Cagri Ata9,Batmaz Ahmet Guray10,Guler Olcay11,Mahirogullari Mahir10

Affiliation:

1. Kanuni Sultan Süleyman Training and Research Hospital, Department of Orthopaedics and Traumatology, 34303 Istanbul, Turkey

2. Ministry of Health, Department of Neurosurgery, 59100 Tekirdag, Turkey

3. Namik Kemal University School of Medicine, Department of Neurosurgery, 59030 Tekirdag, Turkey

4. Acibadem Hospitals Group, Department of Orthopaedics and Traumatology, 34752 Istanbul, Turkey

5. Ministry of Health, Dr. Lutfi Kirdar Training and Research Hospital, Department of Orthopaedic Surgery, 34865 Istanbul, Turkey

6. Department of Medical Pharmacology, Istanbul Medipol University School of Medicine, 34810 Istanbul, Turkey

7. Private Denizli Surgery Hospital, Department of Orthopaedics and Traumatology, 20070 Denizli, Turkey

8. Faculty of Arts and Sciences, Department of Molecular Biology and Genetics, Namik Kemal University, 59030 Tekirdag, Turkey

9. Department of Medical Sciences, Acıbadem University School of Medicine, 34752 Istanbul, Turkey

10. Memorial Health Group, Department of Orthopaedics and Traumatology, 34758 Istanbul, Turkey

11. Medical Park Bahcelievler Hospital, Department of Orthopaedics and Traumatology, 34180 Istanbul, Turkey

Abstract

Background. Use of biodegradable and biocompatible materials in the orthopedic surgery is gaining popularity. In this research, the rate of controlled release of a bilayered prototype biomaterial designed to promote osteoblastic and tenoblastic activity was calculated using pharmacochemical methods. Methods. The first part of the design, composed of a sodium tetraborate, polyvinyl alcohol, and starch based hydrogel, was loaded with bone morphogenic protein-2. The second part which was composed of a sodium tetraborate, polyvinyl alcohol, and chitosan based hydrogel was loaded with bone morphogenic protein-12. Osteochondral and tendon tissue specimens were obtained from patients with a diagnosis of gonarthrosis and primary bone cells and tendon cells cultures were prepared following treatment with collagenase enzyme. Cell samples were collected from the groups by means of an invert light microscope and environmental scanning electron microscope underwent at the 1st and 21st days. The level of osteogenic differentiation was measured by the activity of alkaline phosphatase. For the statistical evaluation of the obtained data, groups were compared with post hoc Tukey test following analysis of variance. Level of significance was accepted to be <0,01. Results. Both osteogenic and tenogenic stimulation were observed in the cultured specimens. In comparison to the control groups, the rate of proliferation of healthy cells was found to be higher in the groups to which the design was added (p<0.01). Conclusions. Our research is a preliminary report that describes a study conducted in an in vitro experimental setting. We believe that such prototype systems may be pioneers in targeted drug therapies after reconstructional surgeries.

Publisher

Hindawi Limited

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