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无机/有机结合:用于组织工程应用的无机颗粒/聚合物复合材料。

Inorganic/organic combination: Inorganic particles/polymer composites for tissue engineering applications.

作者信息

Sharma Astha, Kokil Ganesh R, He Yan, Lowe Baboucarr, Salam Arwa, Altalhi Tariq A, Ye Qingsong, Kumeria Tushar

机构信息

School of Materials Science and Engineering, University of New South Wales, Kensington, Sydney, NSW, 2052, Australia.

Australian Centre for Nanomedicine, University of New South Wales, Kensington, Sydney, NSW, 2052, Australia.

出版信息

Bioact Mater. 2023 Jan 11;24:535-550. doi: 10.1016/j.bioactmat.2023.01.003. eCollection 2023 Jun.

Abstract

Biomaterials have ushered the field of tissue engineering and regeneration into a new era with the development of advanced composites. Among these, the composites of inorganic materials with organic polymers present unique structural and biochemical properties equivalent to naturally occurring hybrid systems such as bones, and thus are highly desired. The last decade has witnessed a steady increase in research on such systems with the focus being on mimicking the peculiar properties of inorganic/organic combination composites in nature. In this review, we discuss the recent progress on the use of inorganic particle/polymer composites for tissue engineering and regenerative medicine. We have elaborated the advantages of inorganic particle/polymer composites over their organic particle-based composite counterparts. As the inorganic particles play a crucial role in defining the features and regenerative capacity of such composites, the review puts a special emphasis on the various types of inorganic particles used in inorganic particle/polymer composites. The inorganic particles that are covered in this review are categorised into two broad types (1) solid (e.g calcium phosphate, hydroxyapatite, ) and (2) porous particles (e.g mesoporous silica, porous silicon ), which are elaborated in detail with recent examples. The review also covers other new types of inorganic material (e.g 2D inorganic materials, clays, ) based polymer composites for tissue engineering applications. Lastly, we provide our expert analysis and opinion of the field focusing on the limitations of the currently used inorganic/organic combination composites and the immense potential of new generation of composites that are in development.

摘要

随着先进复合材料的发展,生物材料将组织工程与再生领域带入了一个新时代。其中,无机材料与有机聚合物的复合材料具有与骨骼等天然混合系统相当的独特结构和生化特性,因此备受青睐。在过去十年中,对这类系统的研究稳步增加,重点是模仿自然界中无机/有机组合复合材料的特殊性能。在这篇综述中,我们讨论了无机颗粒/聚合物复合材料在组织工程和再生医学应用方面的最新进展。我们阐述了无机颗粒/聚合物复合材料相对于有机颗粒基复合材料的优势。由于无机颗粒在定义这类复合材料的特性和再生能力方面起着关键作用,因此本综述特别强调了无机颗粒/聚合物复合材料中使用的各种类型的无机颗粒。本综述涵盖的无机颗粒分为两大类:(1)固体颗粒(如磷酸钙、羟基磷灰石)和(2)多孔颗粒(如介孔二氧化硅、多孔硅),并结合近期实例进行了详细阐述。该综述还涵盖了用于组织工程应用的其他新型无机材料(如二维无机材料、粘土)基聚合物复合材料。最后,我们针对该领域给出了专家分析和意见,重点关注当前使用的无机/有机组合复合材料的局限性以及正在开发的新一代复合材料的巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4ef4/9860401/183269554c74/ga1.jpg

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