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基于微流控技术制备载姜黄素微纤维垫用于光动力疗法抗生物膜研究

Microfluidics Based Generation of Curcumin Loaded Microfibrous Mat against Biofilm by Photodynamic Therapy.

作者信息

Sharma Kajal, Pandey Shipra, Sekar Hariharan, Alan Tuncay, Gundabala Venkat

机构信息

Department of Chemical Engineering, Indian Institute of Technology (IIT) Bombay, Powai, Mumbai 400076, India.

Department of Mechanical and Aerospace Engineering, Monash University, Clayton, Victoria 3800, Australia.

出版信息

ACS Appl Bio Mater. 2023 Mar 20;6(3):1092-1104. doi: 10.1021/acsabm.2c00971. Epub 2023 Feb 13.

DOI:10.1021/acsabm.2c00971
PMID:36780700
Abstract

The rapid increase in multidrug resistant biofilm infections is a major concern for global health. A highly effective therapy is required for the treatment of biofilm related infections. In this study, curcumin loaded alginate microfibers were generated by using the microfluidic technique. In this strategy, alginate microfibers are used as a carrier for the encapsulation of curcumin and then are irradiated with blue light to assess the efficacy of a combined therapy (blue light + curcumin) against drug resistant (). The advantage of utilizing photodynamic therapy (PDT) is the usage of a non-antibiotic mode to inactivate bacterial cells. In the presence of blue light, the curcumin loaded alginate microfibers have shown good eradication activity against biofilms formed by multidrug resistant . We achieved different diameters of curcumin loaded alginate microfibers through manipulation of flow rates. The curcumin loaded microfibers were characterized for their size, morphology, and curcumin encapsulation. Further, the efficacy of these microfibers in the presence of blue light has been evaluated against biofilm forming (NCIM 5718) through optical and electron microscopy. This study employs microfluidic techniques to obtain an efficacious and cost-effective microfibrous scaffold for controlled release of curcumin to treat biofilms in the presence of blue light.

摘要

多重耐药生物膜感染的迅速增加是全球健康的一个主要担忧。治疗与生物膜相关的感染需要一种高效的疗法。在本研究中,利用微流控技术制备了负载姜黄素的海藻酸盐微纤维。在该策略中,海藻酸盐微纤维用作包裹姜黄素的载体,然后用蓝光照射以评估联合疗法(蓝光+姜黄素)对耐药菌的疗效。利用光动力疗法(PDT)的优势在于使用非抗生素模式使细菌细胞失活。在蓝光存在下,负载姜黄素的海藻酸盐微纤维对多重耐药菌形成的生物膜显示出良好的根除活性。通过控制流速,我们获得了不同直径的负载姜黄素的海藻酸盐微纤维。对负载姜黄素的微纤维的尺寸、形态和姜黄素包封情况进行了表征。此外,通过光学显微镜和电子显微镜评估了这些微纤维在蓝光存在下对生物膜形成菌(NCIM 5718)的疗效。本研究采用微流控技术来获得一种有效且经济高效的微纤维支架,用于在蓝光存在下控制释放姜黄素以治疗生物膜。

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引用本文的文献

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Front Pharmacol. 2024 Nov 20;15:1491363. doi: 10.3389/fphar.2024.1491363. eCollection 2024.
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biofilm: Formulation, regulatory, and emerging natural products-derived therapeutics.生物膜:制剂、调控及新兴的天然产物衍生疗法。
Biofilm. 2024 Jan 1;7:100175. doi: 10.1016/j.bioflm.2023.100175. eCollection 2024 Jun.