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负载抗菌天然药物的聚(丙交酯-乙交酯)微球的研制及其体外特性研究,用于治疗长期细菌感染

Development and in vitro characterization of poly(lactide--glycolide) microspheres loaded with an antibacterial natural drug for the treatment of long-term bacterial infections.

作者信息

Reinbold Jochen, Hierlemann Teresa, Hinkel Helena, Müller Ingrid, Maier Martin E, Weindl Tobias, Schlensak Christian, Wendel Hans Peter, Krajewski Stefanie

机构信息

Department of Thoracic, Cardiac and Vascular Surgery, University Hospital Tuebingen, Tuebingen.

Department of Pharmaceutical Engineering, Albstadt-Sigmaringen University, Sigmaringen.

出版信息

Drug Des Devel Ther. 2016 Sep 7;10:2823-2832. doi: 10.2147/DDDT.S105367. eCollection 2016.

Abstract

Biodegradable polymers, especially poly(lactide--glycolide) (PLGA), have good biocompatibility and toxicological properties. In combination with active ingredients, a specialized drug delivery system can be generated. The aim of the present study was to develop a drug delivery system consisting of PLGA microspheres loaded with the natural active ingredient totarol, which has several antimicrobial mechanisms. Totarol, isolated from the tree, was purified using column chromatography, and the eluate was checked for purity using thin layer chromatography. The spherically shaped microspheres with mean diameters of 147.21±3.45 µm and 131.14±3.69 µm (totarol-loaded and -unloaded microspheres, respectively) were created using the single emulsion evaporation method. Furthermore, the encapsulation efficiency, in a range of 84.72%±6.68% to 92.36%±0.99%, was measured via UV/vis spectroscopy. In a 90-day in vitro drug release study, the release of totarol was investigated by UV/vis spectroscopy as well, showing a release of 53.76%. The toxicity on cells was determined using BJ fibroblasts or Human Embryonic Kidney cells and an 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide assay, which showed no influence on the cell growth. The minimal inhibitory concentration was ascertained. A totarol concentration between 64 µg/mL and 128 µg/mL was necessary to inhibit the bacterial growth over a period of 24 hours. Biofilm formation on the surface of totarol-loaded microspheres was determined using transmission electron microscopy. No biofilm formation could be detected, even if the totarol concentration was below the minimal inhibitory concentration. The hemocompatibility investigations on various markers with fresh heparinized blood (1.5 IU/mL) showed that totarol and totarol-loaded microspheres have no influence on different blood parameters. The PLGA microspheres characterized by slow release of totarol and great entrapment efficiency represent a novel drug delivery system, which may be highly beneficial for the long-term therapy of bacterial infections.

摘要

可生物降解聚合物,尤其是聚(丙交酯-乙交酯)(PLGA),具有良好的生物相容性和毒理学特性。与活性成分结合,可生成一种特殊的药物递送系统。本研究的目的是开发一种由负载天然活性成分托塔酚的PLGA微球组成的药物递送系统,托塔酚具有多种抗菌机制。从该树中分离出的托塔酚通过柱色谱法纯化,并用薄层色谱法检查洗脱液的纯度。使用单乳液蒸发法制备了平均直径为147.21±3.45 µm和131.14±3.69 µm的球形微球(分别为负载托塔酚和未负载托塔酚的微球)。此外,通过紫外/可见光谱法测得包封率在84.72%±6.68%至92.36%±0.99%之间。在为期90天的体外药物释放研究中,也通过紫外/可见光谱法研究了托塔酚的释放情况,释放率为53.76%。使用BJ成纤维细胞或人胚肾细胞以及3-(4,5-二甲基噻唑-2-基)-2,5-二苯基四氮唑溴盐试验测定对细胞的毒性,结果显示对细胞生长无影响。确定了最低抑菌浓度。在24小时内抑制细菌生长需要64 µg/mL至128 µg/mL的托塔酚浓度。使用透射电子显微镜测定负载托塔酚的微球表面生物膜的形成情况。即使托塔酚浓度低于最低抑菌浓度,也未检测到生物膜形成。对新鲜肝素化血液(1.5 IU/mL)的各种标志物进行的血液相容性研究表明,托塔酚和负载托塔酚的微球对不同血液参数无影响。以托塔酚缓释和高包封率为特征的PLGA微球代表了一种新型药物递送系统,这可能对细菌感染的长期治疗非常有益。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/44b8/5019313/d1fef5b010e1/dddt-10-2823Fig1.jpg

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