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首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >A novel antiamoebic agent against Acanthamoeba sp - A causative agent for eye keratitis infection
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A novel antiamoebic agent against Acanthamoeba sp - A causative agent for eye keratitis infection

机译:一种新型抗阿米巴虫的抗厌氧剂-眼角膜炎感染的病原体

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摘要

The terbium trinitrate.trihydrate.18-crown ether-6, Tb(NO3)(3)(OH2)(3)center dot(18C6) complex has been characterized by elemental analysis, photoluminescence and single X-ray diffraction. The IC50 values were determined based on MTT assay while light and fluorescence microscopy imaging were employed to evaluate the cellular morphological changes. Alkaline comet assay was performed to analyze the DNA damage. The photoluminescence spectrum of the Tb complex excited at 325 nm displayed seven luminescence peaks corresponding to the D-5(4) -> F-7(0, 1, 2, 3, 4, 5, 6) transitions. The cytotoxicity and genotoxicity studies indicated that the Tb(NO3)(3)(OH2)(3)center dot(18C6) complex and its salt form as well as the 18C6 molecule have excellent antiamoebic activity with very low IC50 values are 7, 2.6 and 1.2 mu g/mL, respectively, with significant decrease (p < 0.05) in Acanthamoeba viability when the concentration was increased from 0 to 30 mu g/mL. The mode of cell death in Acanthamoeba cells following treatment with the Tb complex was apoptosis. This is in contrast to the Tb(NO3)(3)center dot 6H(2)O salt- and 18C6 molecule-treated Acanthamoeba, which exhibited necrotic type cells. The percentage of DNA damage following treatment with all the compounds at the IC25 values showed high percentage of type 1 with the % nuclei damage are 14.15 +/- 2.4; 46.00 +/- 4.2; 36.36 +/- 2.4; 45.16 +/- 0.6%, respectively for untreated, treated with Tb complex, Tb salt and 18C6 molecule. The work features promising potential of Tb(NO3)(3)(OH2)(3)center dot(18C6) complex as anti-amoebic agent, representing a therapeutic option for Acanthamoeba keratitis infection. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过元素分析,光致发光和单X射线衍射对三硝酸三水合物18冠醚-6,Tb(NO3)(3)(OH2)(3)中心点(18C6)络合物进行了表征。基于MTT测定法确定IC50值,同时采用光和荧光显微镜成像评估细胞形态变化。进行碱性彗星试验以分析DNA损伤。在325 nm处激发的Tb配合物的光致发光光谱显示出七个发光峰,分别对应于D-5(4)→F-7(0、1、2、3、4、5、6)跃迁。细胞毒性和基因毒性研究表明,Tb(NO3)(3)(OH2)(3)中心点(18C6)配合物及其盐形式以及18C6分子具有优异的抗厌氧活性,非常低的IC50值为7,2.6当浓度从0μg/ mL增加到30μg/ mL时,棘阿米巴的活力分别显着降低(p <0.05)和1.2μg / mL。用Tb复合物处理后,棘阿米巴细胞的细胞死亡方式是凋亡。这与Tb(NO3)(3)中心点6H(2)O盐和18C6分子处理的棘阿米巴相反,后者表现出坏死型细胞。用所有化合物处理后的DNA损伤百分比均在IC25值处显示出高百分比的1型,其细胞核损伤百分比为14.15 +/- 2.4; 46.00 +/- 4.2; 36.36 +/- 2.4;对于未处理,分别用Tb络合物,Tb盐和18C6分子处理的未处理物质分别为45.16 +/- 0.6%。这项工作具有潜在的Tb(NO3)(3)(OH2)(3)中心点(18C6)复合物作为抗阿米巴剂的潜力,代表了棘阿米巴角膜炎感染的治疗选择。 (C)2015 Elsevier B.V.保留所有权利。

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