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Kinetic characterization of the deproteinization of trabecular and cortical bovine femur bones
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Kinetic characterization of the deproteinization of trabecular and cortical bovine femur bones

Ana B. Castro-Ceseña, M. Pilar Snchez-Saavedra, Ekaterina E. Novitskaya, Po-Yu Chen, Gustavo A. HirataJoanna McKittrick
Materials Science and Engineering C, 卷.33(8), 頁碼.4958-4964
12/2013
PMID: 24094210

摘要

Activation energy Bone Deproteinization Kinetics Rate constant Materials Science (all) Condensed Matter Physics Mechanics of Materials Mechanical Engineering
The present study proposes an interpretation of the mechanismof bone deproteinization. Cortical and trabecular bovine femur bones were deproteinized using 6% NaOCl (37, 50, 60 °C). The kinetic parameters (rate constant and activation energy) were calculated, and the surface area of each type of bone was considered. A statistical analysis of the rate constants shows that cortical bone deproteinizes at a lower rate than trabecular. The activation energy is higher for trabecular than cortical bone, and no significant differences are found in the protein concentration values for both bones. Therefore, although trabecular bone deproteinizes at a higher rate than cortical, trabecular bone requires more energy for the deproteinization reaction to take place. Considering that both types of bones are constituted bymineral, protein, and water; the present work shows that the individual innermatrix architecture of trabecular and cortical bones, alongwith characteristics such as the mineral concentration and its bonding with collagen fibers, may be the responsible factors that control protein depletion. © 2013 Elsevier B.V. All rights reserved.

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