EventsMOL2NET'15, Conference on Molecular, Biomed., Comput. & Network Science and Engineering, 1st ed.
Published
This submission belongs to the session 02. NANOBIO.MAT-01: NANOBIO.MAT-09: Nanotechnology, Biomed. Eng., & Materials Science Congress, Jackson & Fargo, USA, 2015. of the event MOL2NET'15, Conference on Molecular, Biomed., Comput. & Network Science and Engineering, 1st ed.
Published date
04 Dec, 2015
Citation
Juan M. Ruso, Paula Messina, 3D hierarchically scaffolds for bone repair: at the crossroads of experimental and computational outlooks, in Proceedings of MOL2NET'15, Conference on Molecular, Biomed., Comput. & Network Science and Engineering, 1st ed., 5 December–15 December 2015, MDPI: Basel, Switzerland, doi: 10.3390/MOL2NET-1-c008
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3D hierarchically scaffolds for bone repair: at the crossroads of experimental and computational outlooks

1. Department of Chemistry, INQUISUR-CONICET, Universidad Nacional del Sur, 8000 Bahía Blanca, Argentina
2. Soft Matter and Molecular Biophysics Group, Department of Applied Physics, University of Santiago de Compostela, Santiago de Compostela E-15782, Spain.
Abstract

A combination of experimental and theoretical approaches is proposed to determine the best template and conditions to synthesized a bio-active open mesopore structure material with a 3D- sponge-like network similar than those existed in trabecular bone with a consequent saving of time and products. Specifically, we discuss the possibility of combining experimental methods with theoretical methods that have been published in J Mater Sci 2012, 47, 2837-2844 and Langmuir 2015, doi: 10.1021/acs.langmuir.5b03074, respectively. The strategy proposed opens a new gate to the rational design of 3D hierarchically scaffolds for bone repair in the future.

Keywords
Self-Assembly
Scaffolds
QSPR
Biomaterials
Biomineralization
Bones
Biomaterials
Nanoparticles
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