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Article

The Bone Regeneration Capacity of BMP-2 + MMP-10 Loaded Scaffolds Depends on the Tissue Status

by
Patricia Garcia-Garcia
1,2,
Ricardo Reyes
2,3,
José Antonio Rodriguez
4,5,
Tomas Martín
6,7,
Carmen Evora
1,2,
Patricia Díaz-Rodríguez
1,2,* and
Araceli Delgado
1,2,*
1
Department of Chemical Engineering and Pharmaceutical Technology, Universidad de La Laguna, 38206 La Laguna, Spain
2
Institute of Biomedical Technologies (ITB), Universidad de La Laguna, 38320 La Laguna, Spain
3
Department of Biochemistry, Microbiology, Cell Biology and Genetics, Universidad de La Laguna, 38200 La Laguna, Spain
4
Laboratory of Atherothrombosis, CIMA, Universidad de Navarra, Instituto de Investigación Sanitaria de Navarra (IdisNA), 31009 Pamplona, Spain
5
Centro de Investigación Biomédica en Red en Enfermedades Cardiovasculares (CIBERCV), Instituto de Salud Carlos III, 28029 Madrid, Spain
6
Instituto de Productos Naturales y Agrobiología, CSIC, Francisco Sánchez 3, 38206 La Laguna, Spain
7
Instituto Universitario de Bio-Orgánica Antonio González, Universidad de La Laguna, Francisco Sánchez 2, 38206 La Laguna, Spain
*
Authors to whom correspondence should be addressed.
Pharmaceutics 2021, 13(7), 979; https://doi.org/10.3390/pharmaceutics13070979
Submission received: 1 June 2021 / Revised: 16 June 2021 / Accepted: 25 June 2021 / Published: 29 June 2021
(This article belongs to the Section Drug Delivery and Controlled Release)

Abstract

Biomaterials-mediated bone formation in osteoporosis (OP) is challenging as it requires tissue growth promotion and adequate mineralization. Based on our previous findings, the development of scaffolds combining bone morphogenetic protein 2 (BMP-2) and matrix metalloproteinase 10 (MMP-10) shows promise for OP management. To test our hypothesis, scaffolds containing BMP-2 + MMP-10 at variable ratios or BMP-2 + Alendronate (ALD) were prepared. Systems were characterized and tested in vitro on healthy and OP mesenchymal stem cells and in vivo bone formation was studied on healthy and OP animals. Therapeutic molecules were efficiently encapsulated into PLGA microspheres and embedded into chitosan foams. The use of PLGA (poly(lactic-co-glycolic acid)) microspheres as therapeutic molecule reservoirs allowed them to achieve an in vitro and in vivo controlled release. A beneficial effect on the alkaline phosphatase activity of non-OP cells was observed for both combinations when compared with BMP-2 alone. This effect was not detected on OP cells where all treatments promoted a similar increase in ALP activity compared with control. The in vivo results indicated a positive effect of the BMP-2 + MMP-10 combination at both of the doses tested on tissue repair for OP mice while it had the opposite effect on non-OP animals. This fact can be explained by the scaffold’s slow-release rate and degradation that could be beneficial for delayed bone regeneration conditions but had the reverse effect on healthy animals. Therefore, the development of adequate scaffolds for bone regeneration requires consideration of the tissue catabolic/anabolic balance to obtain biomaterials with degradation/release behaviors suited for the existing tissue status.
Keywords: BMP-2; MMP-10; osteoporotic bone; microspheres; mesenchymal stem cells BMP-2; MMP-10; osteoporotic bone; microspheres; mesenchymal stem cells
Graphical Abstract

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MDPI and ACS Style

Garcia-Garcia, P.; Reyes, R.; Rodriguez, J.A.; Martín, T.; Evora, C.; Díaz-Rodríguez, P.; Delgado, A. The Bone Regeneration Capacity of BMP-2 + MMP-10 Loaded Scaffolds Depends on the Tissue Status. Pharmaceutics 2021, 13, 979. https://doi.org/10.3390/pharmaceutics13070979

AMA Style

Garcia-Garcia P, Reyes R, Rodriguez JA, Martín T, Evora C, Díaz-Rodríguez P, Delgado A. The Bone Regeneration Capacity of BMP-2 + MMP-10 Loaded Scaffolds Depends on the Tissue Status. Pharmaceutics. 2021; 13(7):979. https://doi.org/10.3390/pharmaceutics13070979

Chicago/Turabian Style

Garcia-Garcia, Patricia, Ricardo Reyes, José Antonio Rodriguez, Tomas Martín, Carmen Evora, Patricia Díaz-Rodríguez, and Araceli Delgado. 2021. "The Bone Regeneration Capacity of BMP-2 + MMP-10 Loaded Scaffolds Depends on the Tissue Status" Pharmaceutics 13, no. 7: 979. https://doi.org/10.3390/pharmaceutics13070979

APA Style

Garcia-Garcia, P., Reyes, R., Rodriguez, J. A., Martín, T., Evora, C., Díaz-Rodríguez, P., & Delgado, A. (2021). The Bone Regeneration Capacity of BMP-2 + MMP-10 Loaded Scaffolds Depends on the Tissue Status. Pharmaceutics, 13(7), 979. https://doi.org/10.3390/pharmaceutics13070979

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