4.4 Article

Deproteinization of Cortical Bone: Effects of Different Treatments

期刊

CALCIFIED TISSUE INTERNATIONAL
卷 103, 期 5, 页码 554-566

出版社

SPRINGER
DOI: 10.1007/s00223-018-0453-x

关键词

Deproteinization; Thermogravimetric analysis; Cortical bone; Raman spectroscopy; Scanning electron microscopy

资金

  1. National Science Foundation Biomaterials Grants [1507978, 1507169]
  2. Multi-University Research Initiative grant through the Air Force Office of Scientific Research [AFOSR-FA9550-15-1-0009]
  3. National Science Foundation [ECCS-1542148]
  4. NSF REU Discoveries in Bioimaging [EEC 14-61038]
  5. Direct For Mathematical & Physical Scien
  6. Division Of Materials Research [1507169] Funding Source: National Science Foundation
  7. Direct For Mathematical & Physical Scien
  8. Division Of Materials Research [1507978] Funding Source: National Science Foundation

向作者/读者索取更多资源

Bone is a biological composite material having collagen and mineral as its main constituents. In order to better understand the arrangement of the mineral phase in bone, porcine cortical bone was deproteinized using different chemical treatments. This study aims to determine the best method to remove the protein constituent while preserving the mineral component. Chemicals used were H2O2, NaOCl, NaOH, and KOH, and the efficacy of deproteinization treatments was determined by thermogravimetric analysis and Raman spectroscopy. The structure of the residual mineral parts was examined using scanning electron microscopy. X-ray diffraction was used to confirm that the mineral component was not altered by the chemical treatments. NaOCl was found to be the most effective method for deproteinization and the mineral phase was self-standing, supporting the hypothesis that bone is an interpenetrating composite. Thermogravimetric analyses and Raman spectroscopy results showed the preservation of mineral crystallinity and presence of residual organic material after all chemical treatments. A defatting step, which has not previously been used in conjunction with deproteinization to isolate the mineral phase, was also used. Finally, Raman spectroscopy demonstrated that the inclusion of a defatting procedure resulted in the removal of some but not all residual protein in the bone.

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