11
Views
23
CrossRef citations to date
0
Altmetric
Original Article

Long-lived Radicals in Irradiated Apatites of Biological Interest: An e.s.r. Study of Apatite Samples Treated with 13CO2

&
Pages 621-633 | Received 06 Dec 1984, Accepted 28 Mar 1985, Published online: 03 Jul 2009

References

  • Aoba T., Doi Y., Okazaki M., Takahashi J., Moriwaki Y. Electron spin resonance study of sound and carious enamel. Calcified Tissue International 1982; 34: S88–S92
  • Bacquet G., Vo Quang Truong, Vignoles M., Trombe J.C., Bonel G. ESR of CO-2 in X-irradiated tooth enamel and A-type carbonated apatite. Calcified Tissue International 1981; 33: 105–109
  • Bernardi G. Methods in Enzymology, Vol. XXVII part D, C.H.W. Hirs, S.N. Timasheff. Academic Press, New York and London 1973; 471–471
  • Bladon J.J. Adsorption of aqueous n-alkyl carboxylic and dicarboxylic acids onto hydroxyapatite simulated by a lattice adsorption model. Journal of Colloid and Interface Science 1980; 78: 175–190
  • Bonel G. Contribution l'étude de la carbonation des apatites. I. Synthèse et étude des propriétés physico-chimiques des apatites carbonatées du type A. Annales de Chimie 1972; 7: 65–88
  • Cevc P., Schara M., Ravnik C. Electron paramagnetic resonance study of irradiated tooth enamel. Radiation Research 1972; 51: 581–589
  • Dallemagne J. Une méthode de dosage du CO2 dans les solides pulvérisés. Bulletin de la Société Chimique et Biologique 1950; 32: 282–286
  • Despain R.R., Devries K.L., Luntz R.D., Williams M.L. Study of microscopic degradation in teeth. Journal of Dental Research 1970; 49: 876–883
  • Doi Y., Aoba T., Okazaki J., Moriwaki Y. Analysis of paramagnetic centers in X-ray-irradiated enamel, bone, and carbonate-containing hydroxyapatite by electron spin resonance spectroscopy. Calcified Tissue International 1979; 28: 107–112
  • Doi Y., Moriwaki Y., Aoba T., Okazaki M., Takahashi J., Joshin K. Carbonate apatites from aqueous and non-aqueous media studied by ESR, IR, and X-ray diffraction: effect of NH+4 ions on crystallographic parameters. Journal of Dental Research 1982; 61: 429–434
  • Edlund O., Sohma J., Sogabe K. ESR study on molecular motion of CO-2 radical adsorbed zeolite. Bulletin of the Chemical Society of Japan 1974; 47: 3163–3164
  • Fairhurst S.A., Morton J.R., Preston K.F. The EPR spectra of irradiated KHCO3 crystals. Chemical Physics Letters 1983; 95: 30–32
  • Geoffroy M., Tochon-Danguy H.J. ESR identification of radiation damage in synthetic apatites: a study of the 13C-hyperfine coupling. Calcified Tissue International 1982; 34: S99–S102
  • Holmes J.M., Beebe R.A. Surface areas by gas adsorption on amorphous calcium phosphate and crystalline hydroxyapatite. Calcified Tissue Research 1971; 7: 163–174
  • Houben J.L. Free radicals produced by ionizing radiation in bone and its constituents. International Journal of Radiation Biology 1971; 20: 373–389
  • Jacquet J., Very J.M., Flack H.D. The 2ϑ determination of diffraction peaks from ‘poor’ powder samples. Application of biological apatite. Journal of Applied Crystallography 1980; 13: 380–384
  • Labarthe J.C., Bonel G., Montel G. Sur la structure et les propriétés des apatites carbonatées de type B phospho-calciques. Annales de Chimie 1973; 8: 289–301
  • Lercher J., Colombier C., Noller H. Acid-base properties of aluminamagnesia mixed oxides. Part 4. Infrared study of adsorption of carbon dioxide. Journal of the Chemical Society, Faraday Transactions I 1984; 80: 949–959
  • Marino A.A., Becker R.O. Mechanically induced free radicals in bone. Nature 1968; 218: 466–467
  • Marschall S.A., McMillan J.A., Nistor S.V. Super-hyperfine structure in the ESR spectra of CO-2 and CO33 molecule-ions in single-crystal calcite. Journal of Magnetic Resonance 1974; 14: 20–30
  • Meriaudeau P., Vedrine J.C., Ben Taarit Y., Naccache C. Electron paramagnetic resonance studies of CO-2 radicals adsorbed on MgO. Identification and structure of the species using 13C and 17O labelling. Journal of the Chemical Society, Faraday Transactions I 1975; 71: 736–748
  • Neuman W.F., Mulryan B.J. Synthetic hydroxyapatite crystals III. The carbonate system. Calcified Tissue Research 1967; 1: 94–104
  • Ostrowski K., Dziedzic-Goclawska A., Stachowicz W. Stable radiation-induced paramagnetic entities in tissue mineral and their use in calcified tissue research. Free Radicals in Biology. Academic Press, New York 1980; IV: 321–344
  • Ostrowski K., Dziedzic-Goclawska A., Stachowicz W., Michalik J., Tarsoly E., Komender A. Application of the electron spin resonance technique for quantitative evaluation of the resorption rate of irradiated bone grafts. Calcified Tissue Research 1970; 7: 58–66
  • Ostrowski K., Dziedzic-Goclawska A., Stachowicz W., Michalik J. Sensitivity of the electron spin resonance technique as applied in histochemical research on normal and pathological calcified tissues. Histochemie 1972; 32: 343–351
  • Peckauskas R.A., Pullman I. Radiogenic free radicals as molecules probes in bone. Calcified Tissue Research 1978 a; 25: 37–43
  • Peckauskas R.A., Pullman I. Radiation induced free radicals as molecular probes in synthetic apatites. Calcified Tissue Research 1978 b; 25: 191–195
  • Reddy M.V.V.S., Lingam K.V., Gundo, Rao T.K. CO-2 radical in γ-irradiated single crystal of calcium formate: reinvestigation. Journal of Molecular Structure 1981; 73: 105–109
  • Sato K. Study of an asymmetric ESR signal in X-irradiated human tooth enamel. Calcified Tissue International 1979; 29: 95–99
  • Skaleric U., Ravnik C., Cevc P., Schara M. Microcrystal arrangement in human deciduous dental enamel studied by electron paramagnetic resonance. Caries Research 1982; 16: 47–50
  • Tochon-Danguy H.J., Geoffroy M., Baud C.A. Electron-spin resonance study of the effects of carbonate substitution in synthetic apatites and apatites from human teeth. Archives of Oral Biology 1980; 25: 357–361
  • Tochon-Danguy H.J., Very J.M., Geoffroy M., Baud C.A. Paramagnetic and crystallographic effects of low temperature ashing on human bone and tooth enamel. Calcified Tissue Research 1978; 25: 99–104
  • Tochon-Danguy H.J., Geoffroy M., Boivin G., Baud C.A. Mineral substance of bone tissue and of experimental cutaneous calcinosis in rats: chemical analysis and ESR study. Calcified Tissue Research 1978; 26: 259–265

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.