聚苯胺基聚合物在组织工程中的应用综述

IF 5 Q1 ENGINEERING, BIOMEDICAL Progress in biomedical engineering (Bristol, England) Pub Date : 2022-09-21 DOI:10.1088/2516-1091/ac93d3
R. Rai, J. Roether, A. Boccaccini
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引用次数: 7

摘要

近年来,聚苯胺(PANi)、功能化苯胺共聚物及复合材料等具有生物可降解性和导电性的导电聚合物被广泛应用于组织工程(TE)导电支架的研制。这些支架背后的原理是在支架中诱导“电活动”,因为许多研究工作表明,固有的电活动既可以提高再生速度,又可以改善受损组织的愈合。聚苯胺是导电聚合物的首选,因为它经济且易于用多种方法加工。由此得到的聚苯胺基生物材料在许多研究中显示出生物相容性、导电性、适宜的可加工性、积极的细胞反应以及固有的抗菌作用。文献分析显示,聚苯胺基支架已被研究用于TE的应用,包括皮肤/伤口愈合、骨、软骨、神经/脊髓、血管、骨骼肌修复和不孕症的治疗。尽管聚苯胺基材料在其他领域得到了广泛的应用,但尽管取得了积极的研究成果,但它们距离作为TE支架进行商业开发还很遥远。本文旨在讨论和批判性地评估聚苯胺基TE支架在不同应用中的现状。讨论了利用聚苯胺基生物材料在TE中的应用的未来前景,包括最近对潜在细胞毒性作用的考虑。
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Polyaniline based polymers in tissue engineering applications: a review
A number of electrically conducting polymers, such as polyaniline (PANi), as well as functionalized aniline copolymers and composites, which are simultaneously biodegradable and conductive, have been applied for developing electrically conductive scaffolds for tissue engineering (TE) in recent years. The rationale behind these scaffolds is to induce ‘electroactivity’ in scaffolds, as many research works have shown that an intrinsic electrical activity leads to both increased regeneration rates and improved healing of damaged tissues. PANi is the conductive polymer of choice because it is economical and easy to process with a variety of methods. The resultant PANi based biomaterials have shown biocompatibility, conductivity, suitable processability, positive cellular response, as well as an intrinsic antibacterial effect in numerous research studies. The analysis of the literature has revealed that PANi based scaffolds have been investigated for TE applications including skin/wound healing, bone, cartilage, nerve/spinal cord, vascular, skeletal muscle repair and for the treatment of infertility. Although PANi based materials find widespread applications in other sectors, they are still far away from being commercially exploited as scaffolds for TE despite positive research results. This review aims to discuss and critically assess the current state of PANi based TE scaffolds for different applications. A future perspective for utilizing PANi based biomaterials for applications in TE is discussed, including recent considerations about potential cytotoxic effects.
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CiteScore
9.40
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