Evaluating the Anti-Cancer Effect of Pomegranate Aqueous Extract of Gold Nanoparticles by Using Photodynamic Laser on Laboratory Mice.

Entidhar Jasim Khamees Altae
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Abstract

Background: This study evaluated the anticancer effects of gold nanoparticles (Au- NPs) generated by reducing hydrated gold metal ions in the presence of aqueous pomegranate peel extract. Aim of study: To test the possibility that Au-NPs generated from the pomegranate aqueous extract could be employed as an anti-cancer therapy. Materials and methods: The study aimed to evaluate Photodynamic therapy (PDT) using a laser at a wavelength of 532 nm with green gold particles as a photosensitizer in in-vivo experiment. Gold nanoparticles (Au-NPs) were produced by reducing hydrated gold metal ions in the presence of aqueous pomegranate peel extract. Using UV-visible spectroscopy, the absorption peak of the gold particles was found near 550- 592 nm. All diffraction peaks for 2θ at = 37.8227º at 43.7014º, 63.8103º and 77.1540º correspond to the (111), (200), (220), and (311) levels, respectively by X-ray diffraction(XRD) analysis, imaging confirmed Au-NP by Transmission electron microscopy (TEM), the nanoparticle size ranged between 19.96 ± 0.784 nm. Forty Mature Swiss females weighing 20–25 g and aged 6–8 weeks were used, the animals were placed in well-ventilated rooms. Results: The best exposure time to eradicate the tumor is with a duration of exposure of 30 minutes using the diode laser, as histological investigations indicated the development of anti-immunity with the same exposure period.
光动力激光评价石榴金纳米颗粒水提物对实验小鼠的抗癌作用。
背景:本研究评价了在石榴皮水提物存在下,通过还原水合金金属离子生成金纳米粒子(Au- NPs)的抗癌作用。研究目的:探讨石榴水提物制备的Au-NPs作为抗癌药物的可能性。材料与方法:利用532 nm波长激光,以绿金颗粒作为光敏剂,在体内实验中评价光动力治疗(PDT)的效果。研究了在石榴皮水溶液中还原水合金金属离子制备金纳米粒子的方法。利用紫外可见光谱法,在550 ~ 592 nm附近发现了金颗粒的吸收峰。x射线衍射(XRD)分析表明,在43.7014º、63.8103º和77.1540º处2θ = 37.8227º的衍射峰分别对应于(111)、(200)、(220)和(311)能级,透射电镜(TEM)成像证实为Au-NP,纳米颗粒尺寸在19.96±0.784 nm之间。40只体重20-25克、年龄6-8周龄的瑞士成年雌性动物被放置在通风良好的房间里。结果:用二极管激光照射30分钟是根除肿瘤的最佳照射时间,组织学研究表明,在相同的照射时间内,抗免疫的发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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