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药物洗脱多层可生物降解薄膜的增材制造

Additive Manufacturing of Drug-Eluting Multilayer Biodegradable Films.

作者信息

Proshin Pavel I, Abdurashitov Arkady S, Sindeeva Olga A, Ivanova Anastasia A, Sukhorukov Gleb B

机构信息

A.V. Zelmann Center for Neurobiology and Brain Rehabilitation, Skolkovo Institute of Science and Technology, Bolshoy Boulevard 30, 121205 Moscow, Russia.

Skoltech Center for Petroleum Science and Engineering, Skolkovo Institute of Science and Technology, Bolshoy Boulevard 30, 121205 Moscow, Russia.

出版信息

Polymers (Basel). 2022 Oct 14;14(20):4318. doi: 10.3390/polym14204318.

Abstract

Drug-eluting films made of bioresorbable polymers are a widely used tool of modern personalized medicine. However, most currently existing methods of producing coatings do not go beyond the laboratory, as they have low encapsulation efficiency and/or difficulties in scaling up. The PLACE (Printed Layered Adjustable Cargo Encapsulation) technology proposed in this article uses an additive approach for film manufacturing. PLACE technology is accessible, scalable, and reproducible in any laboratory. As a demonstration of the technology capabilities, we fabricated layered drug-eluting polyglycolic acid films containing different concentrations of Cefazolin antibiotic. The influence of the amount of loaded drug component on the film production process and the release kinetics was studied. The specific loading of drugs was significantly increased to 200-400 µg/cm while maintaining the uniform release of Cefazolin antibiotic in a dosage sufficient for local antimicrobial therapy for 14 days. The fact that the further increase in the drug amount results in the crystallization of a substance, which can lead to specific defects in the cover film formation and accelerated one-week cargo release, was also shown, and options for further technology development were proposed.

摘要

由生物可吸收聚合物制成的药物洗脱膜是现代个性化医疗中广泛使用的工具。然而,目前大多数现有的涂层生产方法仍停留在实验室阶段,因为它们的包封效率低和/或难以扩大规模。本文提出的PLACE(印刷分层可调货物封装)技术采用了一种添加剂方法来制造薄膜。PLACE技术在任何实验室都易于使用、可扩展且可重复。作为该技术能力的展示,我们制备了含有不同浓度头孢唑林抗生素的分层药物洗脱聚乙醇酸薄膜。研究了负载药物成分的量对薄膜生产过程和释放动力学的影响。在维持头孢唑林抗生素以足以进行14天局部抗菌治疗的剂量均匀释放的同时,药物的特定负载量显著提高到200-400μg/cm。还表明,药物量的进一步增加会导致物质结晶,这可能导致覆盖膜形成中的特定缺陷并加速一周的货物释放,并提出了进一步技术开发的方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f679/9611279/b8cf3e2553ca/polymers-14-04318-g0A1.jpg

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