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一种用于潜在组织再生应用的生物陶瓷的合成、表征及体内研究。

The synthesis, characterisation and in vivo study of a bioceramic for potential tissue regeneration applications.

作者信息

Poinern Gérrard Eddy Jai, Brundavanam Ravi Krishna, Thi Le Xuan, Nicholls Philip K, Cake Martin A, Fawcett Derek

机构信息

Murdoch Applied Nanotechnology Research Group, Department of Physics, Energy Studies and Nanotechnology, School of Engineering and Energy, Murdoch University, Murdoch, Western Australia 6150, Australia.

School of Veterinary and Life Sciences, Molecular and Biomedical Sciences, Murdoch University, Murdoch, Western Australia 6150, Australia.

出版信息

Sci Rep. 2014 Aug 29;4:6235. doi: 10.1038/srep06235.

Abstract

Hydroxyapatite (HAP) is a biocompatible ceramic that is currently used in a number of current biomedical applications. Recently, nanometre scale forms of HAP have attracted considerable interest due to their close similarity to the inorganic mineral component of the bone matrix found in humans. In this study ultrafine nanometre scale HAP powders were prepared via a wet precipitation method under the influence of ultrasonic irradiation. The resulting powders were compacted and sintered to form a series of ceramic pellets with a sponge-like structure with varying density and porosity. The crystalline structure, size and morphology of the powders and the porous ceramic pellets were investigated using advanced characterization techniques. The pellets demonstrated good biocompatibility, including mixed cell colonisation and matrix deposition, in vivo following surgical implantation into sheep M. latissimus dorsi.

摘要

羟基磷灰石(HAP)是一种生物相容性陶瓷,目前用于许多当前的生物医学应用中。最近,纳米级的HAP因其与人类骨基质中的无机矿物质成分极为相似而引起了广泛关注。在本研究中,通过超声辐照下的湿沉淀法制备了超细纳米级HAP粉末。将所得粉末压实并烧结,以形成一系列具有海绵状结构、密度和孔隙率各不相同的陶瓷颗粒。使用先进的表征技术研究了粉末和多孔陶瓷颗粒的晶体结构、尺寸和形态。将这些颗粒手术植入绵羊背阔肌后,在体内表现出良好的生物相容性,包括混合细胞定植和基质沉积。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/571e/4148651/8dd91e632d8b/srep06235-f1.jpg

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