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Chondrocalcinosis due to Apatite crystal deposition
Known as:
Familial Apatite disease
National Institutes of Health
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Related topics
Related topics
3 relations
Broader (3)
Apatites
Calcium Compounds, Inorganic
Calcium pyrophosphate deposition disease
Papers overview
Semantic Scholar uses AI to extract papers important to this topic.
2017
2017
Preparation and biological effects of apatite nanosheet-constructed porous ceramics.
Ying Chen
,
Zhihui Sun
,
Yanyan Li
,
Youliang Hong
Journal of materials chemistry. B
2017
Corpus ID: 136036461
The design and processing of bioceramics into specific architectures (especially with micro-/nanoscale specific architectures) to…
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2015
2015
Transformation of vaterite nanoparticles to hydroxycarbonate apatite in a hydrogel scaffold: relevance to bone formation.
Romina Schröder
,
Hannah Pohlit
,
+4 authors
W. Tremel
Journal of materials chemistry. B
2015
Corpus ID: 97972830
Biomimetic materials have been gaining increasing importance for use as bone biomaterials, because they may provide regenerative…
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2014
2014
Development of biocompatible apatite nanorod-based drug-delivery system with in situ fluorescence imaging capacity.
R. Singh
,
Tae-Hyun Kim
,
K. Patel
,
Jung-Ju Kim
,
H. Kim
Journal of materials chemistry. B
2014
Corpus ID: 93594374
Biocompatible and multifunctional nanocarriers significantly improve the therapeutic and diagnostic efficacy of the cargo…
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Highly Cited
2007
Highly Cited
2007
Amelogenin Promotes the Formation of Elongated Apatite Microstructures in a Controlled Crystallization System.
Lijun Wang
,
X. Guan
,
C. Du
,
J. Moradian-Oldak
,
G. H. Nancollas
The journal of physical chemistry. C…
2007
Corpus ID: 11050522
The organic matrix in forming enamel consists largely of the amelogenin protein self-assembled into nanospheres that play a…
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2007
2007
Biomimetic coating of an apatite layer on poly(l-lactic acid); improvement of adhesive strength of the coating
Y. Yokoyama
,
A. Oyane
,
A. Ito
Journal of materials science. Materials in…
2007
Corpus ID: 19869433
A biodegradable polymer coated with a bonelike apatite layer on its surface would be useful as a scaffold for bone tissue…
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2005
2005
Microsphere of apatite-gelatin nanocomposite as bone regenerative filler
H. Kim
,
B. Yoon
,
Hyoun‐Ee Kim
Journal of materials science. Materials in…
2005
Corpus ID: 23473698
In this study, we developed novel microspheres comprised of an apatite-gelatin nanocomposite. This microsphere formulation is…
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2005
2005
The influence of calcium fluoride (CaF2) on biaxial flexural strength of apatite-mullite glass-ceramic materials.
Hawa M Fathi
,
A. Johnson
,
R. van Noort
,
Jennie M Ward
Dental Materials
2005
Corpus ID: 42001130
2002
2002
Preliminaryin vitro andin vivo characterizations of a sol-gel derived bioactive glass-ceramic system
S. Abiraman
,
H. Varma
,
T. Kumari
,
P. Umashankar
,
A. John
2002
Corpus ID: 137091584
This study investigates quantitatively and qualitatively the sol-gel derived bioactive glass-ceramic system (BGS)—apatite…
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1996
1996
Characterization of apatite layer formation on P2O5-CaO, P2O5-CaO-Na2O, and P2O5-CaO-Na2O-Al2O3 glass hydroxyapatite composites.
L. J. Jha
,
J. D. Santos
,
J. Knowles
Journal of Biomedical Materials Research
1996
Corpus ID: 23347811
P2O5-based glass hydroxyapatite (HA) composites denoted HA-2 oxide, HA-3 oxide, and HA-4-oxide, were immersed in Hank's balanced…
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1991
1991
Preparation-induced stability of bioactive apatite coatings.
H. Denissen
,
W. Kalk
,
H. M. de Nieuport
,
C. Mangano
,
J. Maltha
International Journal of Prosthodontics
1991
Corpus ID: 32849132
The stability of the bioactive surface is a major concern in the chemical and physical design of apatite ceramic coatings. In…
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