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微米和纳米尺寸钽的生物医学应用概述。

An overview about biomedical applications of micron and nano size tantalum.

作者信息

Maccauro Giulio, Iommetti Pierfrancesco Rossi, Muratori Francesco, Raffaelli Luca, Manicone Paolo Francesco, Fabbriciani Carlo

机构信息

Institute of Orthopaedics and Traumatology, Catholic University, Rome, Italy.

出版信息

Recent Pat Biotechnol. 2009;3(3):157-65. doi: 10.2174/187220809789389153.

Abstract

Tantalum is obtained from the minerals colombite, tantalite and euxenite. It is greyish silver, heavy and very hard. Tantalum does not react with body fluids and is used to make surgical equipment. Tantalum also does not irritate the body and is used to make surgical sutures as well as implants, such as artificial joints and cranial plates. Bone growth around tantalum covered by calcium phosphate is described by in vitro experimentations. in vivo. Bioactive properties of porous tantalum have been recently developed. Porous tantalum consists of an interconnected porous structure with an average porosity diameter of approximately 400 microm. Hollow spheres with nanometre-to-micrometer dimensions are widely used in different range of applications such as drug delivery carriers and bioreactors. Porous tantalum metal is currently used in orthopaedic for manufacturing of structural component for primary and revision total hip and knee replacements and, more recently, in spine surgery. Good clinical outcomes have been achieved especially in hip revision surgery, using tantalum implants, and promising short term follow up have been reported for knee revision surgery. Some patents for tantalum biomedical applications have been obtained and this article reviews various recent patents on this material. Many patents are developed on tantalum for biomedical application. This paper review some of them with particular interested for biomedical applications in orthopaedic and dentistry.

摘要

钽是从钶钽铁矿、钽铁矿和黑稀金矿等矿物中提取的。它呈银灰色,密度大且非常坚硬。钽不与体液发生反应,可用于制造手术器械。钽也不会刺激身体,可用于制造手术缝线以及植入物,如人工关节和颅骨板。体外实验描述了磷酸钙覆盖的钽周围的骨生长情况。在体内,多孔钽的生物活性特性最近得到了发展。多孔钽由相互连接的多孔结构组成,平均孔隙直径约为400微米。具有纳米到微米尺寸的空心球体广泛应用于不同领域,如药物递送载体和生物反应器。多孔钽金属目前在骨科用于制造初次和翻修全髋关节和膝关节置换的结构部件,最近也用于脊柱手术。特别是在髋关节翻修手术中使用钽植入物取得了良好的临床效果,膝关节翻修手术也报告了有希望的短期随访结果。已经获得了一些钽生物医学应用的专利,本文综述了关于这种材料的各种近期专利。许多专利是关于钽在生物医学应用方面的。本文特别关注骨科和牙科生物医学应用,对其中一些专利进行综述。

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