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通过增材制造制备的载左氧氟沙星星型聚己内酯支架

Levofloxacin-loaded star poly(ε-caprolactone) scaffolds by additive manufacturing.

作者信息

Puppi Dario, Piras Anna Maria, Pirosa Alessandro, Sandreschi Stefania, Chiellini Federica

机构信息

BIOLab Research Group, Department of Chemistry and Industrial Chemistry, University of Pisa, UdR INSTM Pisa, Via Moruzzi 13, 56124, Pisa, Italy.

出版信息

J Mater Sci Mater Med. 2016 Mar;27(3):44. doi: 10.1007/s10856-015-5658-1. Epub 2016 Jan 12.

Abstract

The employment of a tissue engineering scaffold able to release an antimicrobial agent with a controlled kinetics represents an effective tool for the treatment of infected tissue defects as well as for the prevention of scaffolds implantation-related infectious complications. This research activity was aimed at the development of additively manufactured star poly(ε-caprolactone) (*PCL) scaffolds loaded with levofloxacin, investigated as antimicrobial fluoroquinolone model. For this purpose a computer-aided wet-spinning technique allowing functionalizing the scaffold during the fabrication process was explored. Scaffolds with customized composition, microstructure and anatomical external shape were developed by optimizing the processing parameters. Morphological, thermal and mechanical characterization showed that drug loading did not compromise the fabrication process and the final performance of the scaffolds. The developed *PCL scaffolds showed a sustained in vitro release of the loaded antibiotic for 5 weeks. The proposed computer-aided wet-spinning technique appears well suited for the fabrication of anatomical scaffolds endowed with levofloxacin-releasing properties to be tested in vivo for the regeneration of long bone critical size defects in a rabbit model.

摘要

使用一种能够以可控动力学释放抗菌剂的组织工程支架,是治疗感染性组织缺损以及预防支架植入相关感染并发症的有效手段。本研究旨在开发加载左氧氟沙星的增材制造星形聚(ε-己内酯)(PCL)支架,并将其作为抗菌氟喹诺酮模型进行研究。为此,探索了一种计算机辅助湿纺技术,该技术可在制造过程中使支架功能化。通过优化加工参数,开发出了具有定制成分、微观结构和解剖外形的支架。形态学、热学和力学表征表明,药物负载并未影响支架的制造过程和最终性能。所开发的PCL支架在体外持续释放负载抗生素达5周。所提出的计算机辅助湿纺技术似乎非常适合制造具有左氧氟沙星释放特性的解剖支架,以便在兔模型中对长骨临界尺寸缺损的再生进行体内测试。

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