Surface Modifications of Biodegradable Metallic Foams for Medical Applications

Significant progress was achieved presently in the development of metallic foam-like materials improved by biocompatible coatings. Material properties of the iron, magnesium, zinc, and their alloys are promising for their uses in medical applications, especially for orthopedic and bone tissue purpos...

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Veröffentlicht in:Coatings (Basel) 2020-09, Vol.10 (9), p.819
Hauptverfasser: Orinakova, Renata, Gorejova, Radka, Kralova, Zuzana Orsagova, Orinak, Andrej
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container_issue 9
container_start_page 819
container_title Coatings (Basel)
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creator Orinakova, Renata
Gorejova, Radka
Kralova, Zuzana Orsagova
Orinak, Andrej
description Significant progress was achieved presently in the development of metallic foam-like materials improved by biocompatible coatings. Material properties of the iron, magnesium, zinc, and their alloys are promising for their uses in medical applications, especially for orthopedic and bone tissue purposes. Current processing technologies and a variety of modifications of the surface and composition facilitate the design of adjusted medical devices with desirable mechanical, morphological, and functional properties. This article reviews the recent progress in the design of advanced degradable metallic biomaterials perfected by different coatings: polymer, inorganic ceramic, and metallic. Appropriate coating of metallic foams could improve the biocompatibility, osteogenesis, and bone tissue-bonding properties. In this paper, a comprehensive review of different coating types used for the enhancement of one or several properties of biodegradable porous implants is given. An outline of the conventional preparation methods of metallic foams and a brief overview of different alloys for medical applications are also provided. In addition, current challenges and future research directions of processing and surface modifications of biodegradable metallic foams for medical applications are suggested.
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Material properties of the iron, magnesium, zinc, and their alloys are promising for their uses in medical applications, especially for orthopedic and bone tissue purposes. Current processing technologies and a variety of modifications of the surface and composition facilitate the design of adjusted medical devices with desirable mechanical, morphological, and functional properties. This article reviews the recent progress in the design of advanced degradable metallic biomaterials perfected by different coatings: polymer, inorganic ceramic, and metallic. Appropriate coating of metallic foams could improve the biocompatibility, osteogenesis, and bone tissue-bonding properties. In this paper, a comprehensive review of different coating types used for the enhancement of one or several properties of biodegradable porous implants is given. An outline of the conventional preparation methods of metallic foams and a brief overview of different alloys for medical applications are also provided. 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subjects Biocompatibility
Biodegradability
Biodegradable materials
Biodegradation
Biomaterials
Biomedical materials
Bones
Cell growth
Ceramic coatings
Chemical properties
Composite materials
Corrosion
Design modifications
Foamed metals
Foams (Chemistry)
Gases
Heart surgery
Magnesium
Material properties
Mechanical properties
Medical equipment
Medical research
Metals
Orthopedics
Plasma sintering
Plastic foam
Porous materials
Powder metallurgy
Production processes
Protective coatings
Surgical implants
Transplants & implants
title Surface Modifications of Biodegradable Metallic Foams for Medical Applications
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