Skip to main content
Top
Published in: International Orthopaedics 4/2017

01-04-2017 | Original Paper

Role of platelet gel embedded within gelatin scaffold on healing of experimentally induced critical-sized radial bone defects in rats

Authors: Soodeh Alidadi, Ahmad Oryan, Amin Bigham-Sadegh, Ali Moshiri

Published in: International Orthopaedics | Issue 4/2017

Login to get access

Abstract

Purpose

We investigated the role of human platelet gel (PG) embedded within gelatin (Gel) scaffold on healing of critical-sized radial bone defects in rats.

Methods

Twenty-five Sprague–Dawley rats were randomly divided into five equal groups. In each animal, critical-sized 5-mm bone defects were created in the radial bones of both forelimbs (n = 10/group). The defects were then either left untreated or filled with autograft, Gel, PG or Gel–PG. Before euthanasia, the healing defects were evaluated radiologically and clinically. The animals were euthanized after eight weeks and their radial bones evaluated by radiography, computed tomography (CT) scan, histology, biomechanical testing and ultrastructural evaluations.

Results

PG implantation significantly increased cellular differentiation, osteoblastic proliferation and consequently new bone formation so that those defects treated with PG showed superior structural and biomechanical properties to the Gel and PG–Gel-treated defects. The PG-treated defects had radiological, morphological and mechanical properties closely comparable with those of the autograft group. In contrast, in the PG–Gel group, Gel significantly reduced the beneficial effects of PG on bone healing.

Conclusions

Human PG had beneficial effects on bone regeneration, while combination of PG and Gel had no remarkable beneficial effect. Therefore, PG when used alone can be regarded as a promising osteoinductive and osteoconductive option in bone tissue engineering applications.
Literature
1.
go back to reference Hernandez-Fernandez A, Velez R, Soldado F, Saenaz-Rios JC, Barber I, Aquirre-Canyadell M (2013) Effect of administration of platelet-rich plasma in early phases of distraction osteogenesis: an experimental study in an ovine femur model. Injury 44:901–917. doi:10.1016/j.injury.2012.10.018 CrossRefPubMed Hernandez-Fernandez A, Velez R, Soldado F, Saenaz-Rios JC, Barber I, Aquirre-Canyadell M (2013) Effect of administration of platelet-rich plasma in early phases of distraction osteogenesis: an experimental study in an ovine femur model. Injury 44:901–917. doi:10.​1016/​j.​injury.​2012.​10.​018 CrossRefPubMed
3.
go back to reference Yoshida K, Sumita Y, Marukawa E, Harashima M, Asahina I (2013) Effect of platelet-rich plasma on bone engineering with an alloplastic substitute containing BMP2. Biomed Mater Eng 23:163–172. doi:10.3233/BME-130741 PubMed Yoshida K, Sumita Y, Marukawa E, Harashima M, Asahina I (2013) Effect of platelet-rich plasma on bone engineering with an alloplastic substitute containing BMP2. Biomed Mater Eng 23:163–172. doi:10.​3233/​BME-130741 PubMed
7.
go back to reference Son SR, Sarkar SK, Nguyen-Thuy BL, Padalhin AR, Kim BR, Jung HI, Lee BT (2015) Platelet-rich plasma encapsulation in hyaluronic acid/gelatin-BCP hydrogel for growth factor delivery in BCP sponge scaffold for bone regeneration. J Biomater Appl 29:988–1002. doi:10.1177/0885328214551373 CrossRefPubMed Son SR, Sarkar SK, Nguyen-Thuy BL, Padalhin AR, Kim BR, Jung HI, Lee BT (2015) Platelet-rich plasma encapsulation in hyaluronic acid/gelatin-BCP hydrogel for growth factor delivery in BCP sponge scaffold for bone regeneration. J Biomater Appl 29:988–1002. doi:10.​1177/​0885328214551373​ CrossRefPubMed
8.
11.
go back to reference Mooren RE, Dankers AC, Merkx MA, Bronkhorst EM, Jansen JA, Stoelinga PJ (2010) The effect of platelet-rich plasma on early and late bone healing using a mixture of particulate autogenous cancellous bone and Bio-Oss: an experimental study in goats. Int J Oral Maxillofac Surg 39:371–378. doi:10.1016/j.ijom.2009.12.019 CrossRefPubMed Mooren RE, Dankers AC, Merkx MA, Bronkhorst EM, Jansen JA, Stoelinga PJ (2010) The effect of platelet-rich plasma on early and late bone healing using a mixture of particulate autogenous cancellous bone and Bio-Oss: an experimental study in goats. Int J Oral Maxillofac Surg 39:371–378. doi:10.​1016/​j.​ijom.​2009.​12.​019 CrossRefPubMed
12.
go back to reference Shafiei-Sarvestani Z, Oryan A, Bigham AS, Meimandi-Parizi A (2012) The effect of hydroxyapatite-hPRP, and coral-hPRP on bone healing in rabbits: radiological, biomechanical, macroscopic and histopathologic evaluation. Int J Surg 10:96–101. doi:10.1016/j.ijsu.2011.12.010 CrossRefPubMed Shafiei-Sarvestani Z, Oryan A, Bigham AS, Meimandi-Parizi A (2012) The effect of hydroxyapatite-hPRP, and coral-hPRP on bone healing in rabbits: radiological, biomechanical, macroscopic and histopathologic evaluation. Int J Surg 10:96–101. doi:10.​1016/​j.​ijsu.​2011.​12.​010 CrossRefPubMed
13.
14.
go back to reference Dasmah A, Thor A, Ekestubbe A, Sennerby L, Rasmusson L (2013) Marginal bone-level alterations at implants installed in block versus particulate onlay bone grafts mixed with platelet-rich plasma in atrophic maxilla. A prospective 5-year follow-up study of 15 patients. Clin Implant Dent Relat Res 15:7–14. doi:10.1111/j.1708-8208.2011.00377.x CrossRefPubMed Dasmah A, Thor A, Ekestubbe A, Sennerby L, Rasmusson L (2013) Marginal bone-level alterations at implants installed in block versus particulate onlay bone grafts mixed with platelet-rich plasma in atrophic maxilla. A prospective 5-year follow-up study of 15 patients. Clin Implant Dent Relat Res 15:7–14. doi:10.​1111/​j.​1708-8208.​2011.​00377.​x CrossRefPubMed
18.
go back to reference Lane JM, Sandhu HS (1987) Current approach to experimental bone grafting. Orthop Clin N Am 18:213–225 Lane JM, Sandhu HS (1987) Current approach to experimental bone grafting. Orthop Clin N Am 18:213–225
19.
go back to reference Parizi AM, Oryan A, Shafiei-Sarvestani Z, Bigham AS (2012) Human platelet rich plasma plus Persian Gulf coral effects on experimental bone healing in rabbit model: radiological, histological, macroscopical and biomechanical evaluation. J Mater Sci Mater Med 23:473–483. doi:10.1007/s10856-011-4478-1 CrossRefPubMed Parizi AM, Oryan A, Shafiei-Sarvestani Z, Bigham AS (2012) Human platelet rich plasma plus Persian Gulf coral effects on experimental bone healing in rabbit model: radiological, histological, macroscopical and biomechanical evaluation. J Mater Sci Mater Med 23:473–483. doi:10.​1007/​s10856-011-4478-1 CrossRefPubMed
20.
go back to reference Oryan A, Meimandi Parizi A, Shafiei-Sarvestani Z, Bigham AS (2012) Effects of combined hydroxyapatite and human platelet rich plasma on bone healing in rabbit model: radiological, macroscopical, histopathological and biomechanical evaluation. Cell Tissue Bank 13:639–651. doi:10.1007/s10561-011-9285-x CrossRefPubMed Oryan A, Meimandi Parizi A, Shafiei-Sarvestani Z, Bigham AS (2012) Effects of combined hydroxyapatite and human platelet rich plasma on bone healing in rabbit model: radiological, macroscopical, histopathological and biomechanical evaluation. Cell Tissue Bank 13:639–651. doi:10.​1007/​s10561-011-9285-x CrossRefPubMed
21.
go back to reference van Bergen CJ, Kerkhoffs GM, Ozdemir M, Korstjens CM, Everts V, van Ruijven LJ, Blankevoort L (2013) Demineralized bone matrix and platelet-rich plasma do not improve healing of osteochondral defects of the talus: an experimental goat study. Osteoarthr Cartil 21:1746–1754. doi:10.1016/j.joca.2013.07.014 CrossRefPubMed van Bergen CJ, Kerkhoffs GM, Ozdemir M, Korstjens CM, Everts V, van Ruijven LJ, Blankevoort L (2013) Demineralized bone matrix and platelet-rich plasma do not improve healing of osteochondral defects of the talus: an experimental goat study. Osteoarthr Cartil 21:1746–1754. doi:10.​1016/​j.​joca.​2013.​07.​014 CrossRefPubMed
23.
go back to reference Grageda E, Lozada JL, Boyne PJ, Caplanis N, McMillan PJ (2005) Bone formation in the maxillary sinus by using platelet-rich plasma: an experimental study in sheep. J Oral Implantol 31:2–17. doi:10.1563/0-692.1 CrossRefPubMed Grageda E, Lozada JL, Boyne PJ, Caplanis N, McMillan PJ (2005) Bone formation in the maxillary sinus by using platelet-rich plasma: an experimental study in sheep. J Oral Implantol 31:2–17. doi:10.​1563/​0-692.​1 CrossRefPubMed
Metadata
Title
Role of platelet gel embedded within gelatin scaffold on healing of experimentally induced critical-sized radial bone defects in rats
Authors
Soodeh Alidadi
Ahmad Oryan
Amin Bigham-Sadegh
Ali Moshiri
Publication date
01-04-2017
Publisher
Springer Berlin Heidelberg
Published in
International Orthopaedics / Issue 4/2017
Print ISSN: 0341-2695
Electronic ISSN: 1432-5195
DOI
https://doi.org/10.1007/s00264-016-3393-y

Other articles of this Issue 4/2017

International Orthopaedics 4/2017 Go to the issue