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Citrate bridges between mineral platelets in bone
by
David G. Reid
, Wai Ching Wong
, Jeremy N. Skepper
, Erika Davies
, Chris J. Pickard
, Karin H. Müller
, Melinda J. Duer
in
Animals
/ Anions
/ Biological Sciences
/ Blood platelets
/ Bone and Bones - metabolism
/ Bones
/ Bound water
/ Calcium phosphates
/ Calcium Phosphates - metabolism
/ citrates
/ Citric Acid - metabolism
/ Crystals
/ Diffraction
/ Horses
/ Magnetic Resonance Spectroscopy
/ Minerals
/ Minerals - metabolism
/ nuclear magnetic resonance spectroscopy
/ phosphate minerals
/ PNAS Plus
/ Powder Diffraction
/ Rabbits
/ Salt
/ Spectrum analysis
/ X-ray diffraction
2014
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Citrate bridges between mineral platelets in bone
by
David G. Reid
, Wai Ching Wong
, Jeremy N. Skepper
, Erika Davies
, Chris J. Pickard
, Karin H. Müller
, Melinda J. Duer
in
Animals
/ Anions
/ Biological Sciences
/ Blood platelets
/ Bone and Bones - metabolism
/ Bones
/ Bound water
/ Calcium phosphates
/ Calcium Phosphates - metabolism
/ citrates
/ Citric Acid - metabolism
/ Crystals
/ Diffraction
/ Horses
/ Magnetic Resonance Spectroscopy
/ Minerals
/ Minerals - metabolism
/ nuclear magnetic resonance spectroscopy
/ phosphate minerals
/ PNAS Plus
/ Powder Diffraction
/ Rabbits
/ Salt
/ Spectrum analysis
/ X-ray diffraction
2014
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Citrate bridges between mineral platelets in bone
by
David G. Reid
, Wai Ching Wong
, Jeremy N. Skepper
, Erika Davies
, Chris J. Pickard
, Karin H. Müller
, Melinda J. Duer
in
Animals
/ Anions
/ Biological Sciences
/ Blood platelets
/ Bone and Bones - metabolism
/ Bones
/ Bound water
/ Calcium phosphates
/ Calcium Phosphates - metabolism
/ citrates
/ Citric Acid - metabolism
/ Crystals
/ Diffraction
/ Horses
/ Magnetic Resonance Spectroscopy
/ Minerals
/ Minerals - metabolism
/ nuclear magnetic resonance spectroscopy
/ phosphate minerals
/ PNAS Plus
/ Powder Diffraction
/ Rabbits
/ Salt
/ Spectrum analysis
/ X-ray diffraction
2014
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Journal Article
Citrate bridges between mineral platelets in bone
2014
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Overview
We provide evidence that citrate anions bridge between mineral platelets in bone and hypothesize that their presence acts to maintain separate platelets with disordered regions between them rather than gradual transformations into larger, more ordered blocks of mineral. To assess this hypothesis, we take as a model for a citrate bridging between layers of calcium phosphate mineral a double salt octacalcium phosphate citrate (OCP-citrate). We use a combination of multinuclear solid-state NMR spectroscopy, powder X-ray diffraction, and first principles electronic structure calculations to propose a quantitative structure for this material, in which citrate anions reside in a hydrated layer, bridging between apatitic layers. To assess the relevance of such a structure in native bone mineral, we present for the first time, to our knowledge, ¹⁷O NMR data on bone and compare them with ¹⁷O NMR data for OCP-citrate and other calcium phosphate minerals relevant to bone. The proposed structural model that we deduce from this work for bone mineral is a layered structure with thin apatitic platelets sandwiched between OCP-citrate–like hydrated layers. Such a structure can explain a number of known structural features of bone mineral: the thin, plate-like morphology of mature bone mineral crystals, the presence of significant quantities of strongly bound water molecules, and the relatively high concentration of hydrogen phosphate as well as the maintenance of a disordered region between mineral platelets.
Publisher
National Academy of Sciences,National Acad Sciences
Subject
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