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Anticancer properties of green-synthesised zinc oxide nanoparticles using Hyssopus officinalis extract on prostate carcinoma cells and its effects on testicular damage and spermatogenesis in Balb/C mice.

抗c一个c er的绿色合成zin c氧化物nanoparti c les使用Hyssopus offi c inalis的额外c t前列腺c ar c inoma c ells及其展厅效应c ts歌词c balb/C mi c e.

  • 影响因子:1.78
  • DOI:10.1111/and.13450
  • 作者列表:"Rahimi Kalateh Shah Mohammad G","Karimi E","Oskoueian E","Homayouni-Tabrizi M
  • 发表时间:2020-02-01
Abstract

:The unclear bio-safety issue and potential risk of nanoparticles (NPs) on various organelles can be considered as a major challenge. In the present study, we have assessed the green synthesis of ZnO nanoparticles using Hyssop (Hyssopus officinalis) extract and their effects on PC3 cell line and BALB/c mice model. The cytotoxicity of the ZnO-NPs was assessed on PC3 cell line by MTT test after characterisation. Apoptotic effect of ZnO-NPs was determined by in vitro AO/PI staining. The histopathological assessments and determination of LH and FSH levels carried out as in vivo analysis in BALB/c adult male mice. The expression of major genes involved in spermatogenesis and sperm maturation (Adam3, Prm1, Spata19, Tnp2, Gpx5) were also analysed. The obtained result demonstrated that the IC50 for PC3 cell line treated with green-synthesised ZnO-NPs during 24 and 48 hr was reported 8.07 and 5 µg/ml respectively. Meanwhile, the induced apoptosis was recorded 26.6% ± 0.05, 44% ± 0.12 and 80% ± 0.07 of PC3 cells. The results of gene expression analysis revealed that the increase in the concentration of ZnO-NPs significantly (p < .05) down-regulated the Adam3, Prm1, Spata-19, Tnp2 and Gpx5 genes. The overall results of this research elucidated that ZnO-NPs impaired spermatogenesis, sperm maturation process and sperm motility.

摘要

: 纳米颗粒 (NPs) 在各种细胞器上的生物安全问题和潜在风险尚不清楚,可以被认为是一个重大挑战。在本研究中,我们评估了使用海索草 (Hyssopus offi c inalis) 绿色合成ZnO nanoparti c les额外的c t和它们的effe c ts在P C 3 c ell系和BALB/c mi c e模型。表征后通过MTT test评估ZnO-NPs在PC3 细胞系上的细胞毒性。通过体外AO/PI染色测定ZnO-NPs的凋亡作用。在BALB/c成年雄性小鼠中进行组织病理学评估和LH和FSH水平的测定作为体内分析。还分析了参与精子发生和精子成熟的主要基因 (Adam3 、Prm1 、Spata19 、Tnp2 、Gpx5) 的表达。获得的结果表明,在 24 和 48 h内用绿色合成的ZnO-NPs处理的PC3 细胞系的IC 5 0 分别报告为 8.07 和 5 µ g/ml。同时记录PC3 细胞 26.6% ± 0.05 、 44% ± 0.12 和 80% ± 0.07 的诱导凋亡。基因表达分析结果表明,ZnO-NPs浓度的增加显著 (p < .05) 下调Adam3 、Prm1 、Spata-19 、Tnp2 和Gpx5 基因。本研究的总体结果阐明了ZnO-NPs损害了精子发生、精子成熟过程和精子活力。

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相关文献
影响因子:1.78
发表时间:2020-02-01
来源期刊:Andrologia
DOI:10.1111/and.13378
作者列表:["Bezerra Espinola MS","Aragona C"]

METHODS::The identification of idiopathic infertility cases, actually, is impossible. Among new functional tests, developed to improve the male fertility diagnosis, the evaluation of spermatic myo-inositol (MI) level, known as Andrositol® test (AT), is one of the most interesting, considering its weak economic burden and ease of use. The aim of this study was to evaluate the predictive power of AT and its potential use for a preliminary evaluation of semen samples. To evaluate the predictive power of AT, 87 sperm samples were analysed in comparison with spermiogram and sperm chromatin dispersion (SCD) Test, the gold standard analyses for male fertility evaluation. The application of AT resulted very useful for a preliminary sample evaluation, predicting the absence of DNA fragmentation in case of Low Responder samples precisely, and the presence of DNA fragmentation in case of medium or High Responder samples with abnormal morphology, predicting SCD results with a probability of 80% for Medium Responder sample and of 96.7% for High Responder sample. Considering the predictive power of this method, we could imagine, as preliminary qualitative analysis, its application before SCD test, deepening sperm analysis, improving the daily activities of laboratory operators and maintaining a good reliability of sperm evaluation.

翻译标题与摘要 下载文献
影响因子:1.78
发表时间:2020-02-01
来源期刊:Andrologia
DOI:10.1111/and.13450
作者列表:["Rahimi Kalateh Shah Mohammad G","Karimi E","Oskoueian E","Homayouni-Tabrizi M"]

METHODS::The unclear bio-safety issue and potential risk of nanoparticles (NPs) on various organelles can be considered as a major challenge. In the present study, we have assessed the green synthesis of ZnO nanoparticles using Hyssop (Hyssopus officinalis) extract and their effects on PC3 cell line and BALB/c mice model. The cytotoxicity of the ZnO-NPs was assessed on PC3 cell line by MTT test after characterisation. Apoptotic effect of ZnO-NPs was determined by in vitro AO/PI staining. The histopathological assessments and determination of LH and FSH levels carried out as in vivo analysis in BALB/c adult male mice. The expression of major genes involved in spermatogenesis and sperm maturation (Adam3, Prm1, Spata19, Tnp2, Gpx5) were also analysed. The obtained result demonstrated that the IC50 for PC3 cell line treated with green-synthesised ZnO-NPs during 24 and 48 hr was reported 8.07 and 5 µg/ml respectively. Meanwhile, the induced apoptosis was recorded 26.6% ± 0.05, 44% ± 0.12 and 80% ± 0.07 of PC3 cells. The results of gene expression analysis revealed that the increase in the concentration of ZnO-NPs significantly (p < .05) down-regulated the Adam3, Prm1, Spata-19, Tnp2 and Gpx5 genes. The overall results of this research elucidated that ZnO-NPs impaired spermatogenesis, sperm maturation process and sperm motility.

翻译标题与摘要 下载文献
影响因子:1.78
发表时间:2020-02-01
来源期刊:Andrologia
DOI:10.1111/and.13451
作者列表:["Khazaei M","Asgari R","Bakhtiari M"]

METHODS::Clomiphene citrate (CC), as a medication in male infertility, improves the sperm parameters in oral consumption but various detrimental side effects have been reported including testicular tumours, gynaecomastia, skin allergic reactions and ocular symptoms. Therefore, this study was designed to evaluate the in vitro effects of CC on sperm parameters and fertilisation rate in IVF protocol. Sperm samples of NMRI adult mice were divided into six groups: group 1 received no treatment (control group), while groups of 2, 3, 4, 5 and 6 (experimental groups) were incubated with the doses of 0.001, 0.01, 0.1, 1 and 10 µg/ml of CC in culture medium respectively. Sperm parameters (viability, morphology and motility), DNA fragmentation levels and fertilisation rate in IVF were evaluated. The results demonstrated that the doses of 0.1 µg/ml (p = .000007 for viability and p = .00006 for fertilisation rate) and 1 µg/ml (p = .032 for viability and p = .005 for fertilisation rate) CC cause a significant improvements; also, the dose of 0.1 µg/ml CC found effective on sperm motility (p = .0003). In the field of IVF, the application of 0.1 and 1 µg/ml of CC in the culture medium may improve the sperm parameters in IVF protocol with no side effects.

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