Calcium Phosphate Bioceramics: A Review of Their History, Structure, Properties, Coating Technologies and Biomedical Applications

Биокерамика на основе фосфатов кальция: обзор истории, структуры, свойств, технологий нанесения покрытий и биомедицинских применений
Noam Eliaz, Noah Metoki
2017-03-24

biomineralizationbone regenerationcalcium phosphate bioceramicselectrochemical coating technologiesfunctionally graded materials
Calcium phosphate (CaP) bioceramics are widely used in the field of bone regeneration, both in orthopedics and in dentistry, due to their good biocompatibility, osseointegration and osteoconduction. The aim of this article is to review the history, structure, properties and clinical applications of these materials, whether they are in the form of bone cements, paste, scaffolds, or coatings. Major analytical techniques for characterization of CaPs, in vitro and in vivo tests, and the requirements of the US Food and Drug Administration (FDA) and international standards from CaP coatings on orthopedic and dental endosseous implants, are also summarized, along with the possible effect of sterilization on these materials. CaP coating technologies are summarized, with a focus on electrochemical processes. Theories on the formation of transient precursor phases in biomineralization, the dissolution and reprecipitation as bone of CaPs are discussed. A wide variety of CaPs are presented, from the individual phases to nano-CaP, biphasic and triphasic CaP formulations, composite CaP coatings and cements, functionally graded materials (FGMs), and antibacterial CaPs. We conclude by foreseeing the future of CaPs.
1
Calcium phosphate bioceramics support bone regeneration through good biocompatibility, osseointegration, and osteoconduction in orthopedic and dental applications.
2
Calcium phosphate materials include individual, nano-, biphasic, triphasic, composite, functionally graded, and antibacterial formulations, with biomineralization involving transient precursors, dissolution, and bone-like reprecipitation.
3
Electrochemical processes are highlighted among calcium phosphate coating technologies for orthopedic and dental endosseous implants.
4
The article summarizes in vitro and in vivo testing, FDA requirements, international standards, and potential sterilization effects for CaP coatings.
5
The review covers CaP use as bone cements, pastes, scaffolds, and coatings, including clinical applications and characterization methods.

Calcium phosphate (CaP) bioceramics (including bone cements, pastes, scaffolds, coatings, nano-, biphasic/triphasic formulations, composites and FGMs)

The history, structure, properties, characterization, coating technologies, biomineralization behavior, sterilization effects, regulatory requirements, and biomedical applications of CaP bioceramics

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2017-03-24
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Noam Eliaz
Noah Metoki
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