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掺杂 TiO 化合物的溶液燃烧合成及其通过光动力疗法介导的潜在抗利什曼原虫活性。

Solution-combustion synthesis of doped TiO compounds and its potential antileishmanial activity mediated by photodynamic therapy.

机构信息

Universidad Nacional de Colombia, Sede Medellín, Grupo de Cerámicos y Vítreos, Colombia; School of Pharmaceutical Sciences, São Paulo State University (UNESP), Araraquara, Brazil.

School of Pharmaceutical Sciences, São Paulo State University (UNESP), Araraquara, Brazil; São Paulo State University (UNESP), Institute of Chemistry, Araraquara, Brazil.

出版信息

J Photochem Photobiol B. 2018 Jun;183:64-74. doi: 10.1016/j.jphotobiol.2018.04.017. Epub 2018 Apr 13.

Abstract

Photodynamic therapy has emerged as an alternative treatment for cutaneous leishmaniasis, and compounds with photocatalytic behavior are promising candidates to develop new therapeutic strategies for the treatment of this parasitic disease. Titanium dioxide TiO is a semiconductor ceramic material that shows excellent photocatalytic and antimicrobial activity under Ultraviolet irradiation. Due to the harmful effects of UV radiation, many efforts have been made in order to enhance both photocatalytic and antimicrobial properties of TiO in the visible region of the spectrum by doping or through modifications in the route of synthesis. Herein, Fe-, Zn-, or Pt- doped TiO nanostructures were synthesized by solution-combustion route. The obtained compounds presented aggregates of 100 nm, formed by particles smaller than 20 nm. Doping compounds shift the absorption spectrum towards the visible region, allowing production of reactive oxygen species in the presence of oxygen and molecular water when the system is irradiated in the visible spectrum. The Pt (EC = 18.2 ± 0.8 μg/mL) and Zn (EC = 16.4 ± 0.3 μg/mL) -doped TiO presented the higher antileishmanial activities under visible irradiation and their application as photosensitizers in photodynamic therapy (PDT) strategies for the treatment of cutaneous leishmaniasis should be considered.

摘要

光动力疗法已成为治疗皮肤利什曼病的一种替代疗法,具有光催化行为的化合物是开发治疗这种寄生虫病的新治疗策略的有前途的候选物。二氧化钛 TiO 是一种半导体陶瓷材料,在紫外线照射下显示出优异的光催化和抗菌活性。由于紫外线辐射的有害影响,人们做出了许多努力,以便通过掺杂或通过合成途径的修改来增强 TiO 在光谱可见区域的光催化和抗菌性能。在此,通过溶液燃烧法合成了 Fe、Zn 或 Pt 掺杂的 TiO 纳米结构。所得化合物呈现出 100nm 的团聚体,由小于 20nm 的颗粒组成。掺杂化合物将吸收光谱移向可见光区域,允许在可见光谱照射下,在存在氧气和分子水的情况下产生活性氧物质。Pt(EC=18.2±0.8μg/mL)和 Zn(EC=16.4±0.3μg/mL)掺杂的 TiO 表现出在可见光照射下更高的抗利什曼原虫活性,并且它们作为光动力疗法(PDT)治疗皮肤利什曼病的光敏剂的应用应予以考虑。

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