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光敏剂封装的双功能金属catanionic 囊泡对耐甲氧西林金黄色葡萄球菌的高抗菌光动力活性。

High antimicrobial photodynamic activity of photosensitizer encapsulated dual-functional metallocatanionic vesicles against drug-resistant bacteria S. aureus.

机构信息

Department of Chemistry and Centre of Advanced Studies in Chemistry, Panjab University, Chandigarh, India.

出版信息

Biomater Sci. 2020 May 21;8(10):2905-2920. doi: 10.1039/d0bm00323a. Epub 2020 Apr 20.

Abstract

Developments in the field of photodynamic therapy (PDT) are being made by investigating appropriate photosensitizers (PSs) and enhancing the penetration effect of light by developing new nano-carriers. So, to boost the PDT effect, in the present work, new metallocatanionic vesicles were fabricated by a convenient, efficient, green and inexpensive method to encapsulate PSs and evaluate their antimicrobial PDT against the drug-resistant bacterium Staphylococcus aureus. They were prepared from a combination of a double-chained copper-based cationic metallosurfactant (CuCPCII) and an anionic surfactant sodium bis(2-ethylhexyl)sulfosuccinate (Aerosol OT or AOT). The surface charge, structure and ability to encapsulate oppositely charged photosensitizers are some crucial factors that need to be controlled for their effective utilization in PDT. In this approach, two of the fractions, one each from a cationic rich and anionic rich side, were selected to encapsulate cationic (methylene blue; MB) and anionic (rose bengal (RB)) PSs after characterization by SAXS, AFM, FESEM, DLS, and zeta-potential, and conductivity measurements. Afterwards, PDT was performed on S. aureus (a multidrug-resistant bacterium) by the colony forming unit (CFU) method using PS encapsulated metallocatanionic vesicles that demonstrated high bactericidal activity by using visible light (532 nm) and facilitated the generation of singlet oxygen. The singlet oxygen generation capability of both the PSs was enhanced under irradiation when encapsulated in metallocatanionic vesicles because the presence of metal accelerated the intersystem crossing of triplet oxygen to singlet oxygen. Furthermore, these studies reveal that the metallocatanionic vesicles have dual functionality i.e. encapsulate PSs and even show dark toxicity against S. aureus. To study the killing of S. aureus, bacterial DNA was extracted and its interactions and conformational changes in the presence of metallocatanionic vesicles were analyzed via., UV-Visible, and circular dichroism (CD) spectroscopy. Comet assay (single-cell gel-electrophoresis) demonstrated the DNA damage after PDT treatment in an individual cell. The bacterial DNA damage was more with the metallosurfactant rich 70 : 30 fraction than with the 30 : 70 fraction, in combination with RB under irradiation. This work provides a new metal hybrid smart material that possesses dual functionality and is prepared by an easy, economical and feasible procedure which resulted in enhanced PDT against a drug-resistant bacterium, thus, providing an alternative for antibacterial therapy.

摘要

光动力疗法(PDT)领域的发展正在通过研究合适的光敏剂(PSs)和通过开发新的纳米载体来增强光的穿透效果来进行。因此,为了提高 PDT 效果,在本工作中,通过一种方便、高效、绿色且廉价的方法制备了新型金属cat 阴离子囊泡,以封装 PSs 并评估其对耐多药细菌金黄色葡萄球菌的抗菌 PDT 作用。它们是由双链铜基阳离子金属表面活性剂(CuCPCII)和阴离子表面活性剂双(2-乙基己基)磺基琥珀酸钠(Aerosol OT 或 AOT)组合制备的。表面电荷、结构和封装相反电荷的光敏剂的能力是需要控制的一些关键因素,以便在 PDT 中有效利用。在这种方法中,选择两种从阳离子丰富侧和阴离子丰富侧各一个的部分,在通过小角 X 射线散射(SAXS)、原子力显微镜(AFM)、FESEM、动态光散射(DLS)和 Zeta 电位以及电导率测量进行表征后,分别封装阳离子(亚甲蓝;MB)和阴离子(玫瑰红 B(RB))PSs。随后,通过菌落形成单位(CFU)法,在可见光(532nm)照射下对耐多药金黄色葡萄球菌(一种多药耐药菌)进行 PDT,使用封装 PS 的金属 cat 阴离子囊泡证明了其具有高杀菌活性,并促进了单线态氧的产生。当 PS 封装在金属 cat 阴离子囊泡中时,由于金属的存在加速了三重态氧向单线态氧的系间窜跃,两种 PS 的单线态氧生成能力都得到了增强。此外,这些研究表明,金属 cat 阴离子囊泡具有双重功能,即封装 PSs,甚至对金黄色葡萄球菌表现出暗毒性。为了研究金黄色葡萄球菌的杀灭情况,提取了细菌 DNA,并通过紫外可见光谱和圆二色性(CD)光谱分析了其在金属 cat 阴离子囊泡存在下的相互作用和构象变化。彗星试验(单细胞凝胶电泳)在单个细胞中证明了 PDT 处理后 DNA 的损伤。与 30:70 比例相比,在光照下,富含金属表面活性剂的 70:30 比例与 RB 结合时,细菌 DNA 损伤更大。这项工作提供了一种新的金属杂化智能材料,具有双重功能,并且通过一种简单、经济和可行的程序制备,对耐多药细菌的 PDT 效果增强,从而为抗菌治疗提供了一种替代方法。

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