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Bone Regeneration Using Bone Morphogenetic Proteins and Various Biomaterial Carriers

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Publisher MDPI
Date 2017 Aug 10
PMID 28788032
Citations 48
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Abstract

Trauma and disease frequently result in fractures or critical sized bone defects and their management at times necessitates bone grafting. The process of bone healing or regeneration involves intricate network of molecules including bone morphogenetic proteins (BMPs). BMPs belong to a larger superfamily of proteins and are very promising and intensively studied for in the enhancement of bone healing. More than 20 types of BMPs have been identified but only a subset of BMPs can induce bone formation. Many research groups have shown that BMPs can induce differentiation of mesenchymal stem cells and stem cells into osteogenic cells which are capable of producing bone. This review introduces BMPs and discusses current advances in preclinical and clinical application of utilizing various biomaterial carriers for local delivery of BMPs to enhance bone regeneration.

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References
1.
Myllyla R, Haapasaari K, Lehenkari P, Tuukkanen J . Bone morphogenetic proteins 4 and 2/7 induce osteogenic differentiation of mouse skin derived fibroblast and dermal papilla cells. Cell Tissue Res. 2013; 355(2):463-70. DOI: 10.1007/s00441-013-1745-0. View

2.
Cao X, Liu C, Chen J . [Experimental studies on the porous calcium phosphate cement combined with recombinant human bone morphogenetic protein 2 for bone defects repair]. Zhongguo Xiu Fu Chong Jian Wai Ke Za Zhi. 2006; 20(9):916-9. View

3.
Qin Y, Pei G, Xie D, Jin D, Wei K . [Effect of bone morphogenetic protein microspheres on biological behavior of rabbit bone marrow stem cells]. Di Yi Jun Yi Da Xue Xue Bao. 2003; 23(10):1021-4. View

4.
David L, Mallet C, Mazerbourg S, Feige J, Bailly S . Identification of BMP9 and BMP10 as functional activators of the orphan activin receptor-like kinase 1 (ALK1) in endothelial cells. Blood. 2006; 109(5):1953-61. DOI: 10.1182/blood-2006-07-034124. View

5.
Mizumoto Y, Moseley T, Drews M, Cooper 3rd V, Reddi A . Acceleration of regenerate ossification during distraction osteogenesis with recombinant human bone morphogenetic protein-7. J Bone Joint Surg Am. 2003; 85-A Suppl 3:124-30. DOI: 10.2106/00004623-200300003-00019. View