Methanolic extract of wheatgrass (Triticum aestivum L.) prevents BPA-induced disruptions in the ovarian steroidogenic pathway and alleviates uterine inflammation in Wistar rats.

IF 2.6 4区 生物学 Q3 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
3 Biotech Pub Date : 2024-12-01 Epub Date: 2024-11-24 DOI:10.1007/s13205-024-04117-0
Ananya Barman, Angshita Ghosh, Tarun Kumar Kar, Sandip Chattopdhyay
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引用次数: 0

Abstract

The present study examined the anti-inflammatory and functional improvement of the uterus and ovary, respectively, in bisphenol-A (BPA)-fed adult Wistar rats following the ingestion of methanolic extract of wheatgrass (WG-ME). Four groups of rats were conditioned as vehicle-treated control, BPA-treated (100 mg/kg b.w.), BPA + WG-ME (100 mg BPA/kg b.w. + 200 mg WG-ME/kg b.w.), and WG-ME (200 mg/kg b.w.) groups. The LC-MS study confirmed the presence of numerous bioactive components in WG-ME. ELISA, PAGE, real-time PCR, and immunohistostaining were executed to test the efficacy of WG-ME against BPA. WG-ME was shown to induce significant weight gain of the uterus and ovaries as well as improve the estrous cycle and antioxidant status. WG-ME effectively suppressed the mRNA expression of TNF-α (tumor necrosis factor-alpha) and NF-κB (nuclear factor kappa-B). This extract also increased the expression of the antiapoptotic factor BCL2 (B-cell lymphoma 2) in the uterine tissue of rats administered BPA while impeding the abnormal expression of the tumor proteins p53, cylcin-D1, and BAX (BCL2-associated protein X). An enhanced steroidogenic event was supported by improved gonadotropins and reproductive hormone levels, feeble signaling of androgen receptors, and improved ovarian follicular growth with a distinct appearance of granulosa layer as well as better uterine histomorphology. The abundance of apigenin and catechin compounds in WG-ME may potentiate the above effects. The molecular interaction study predicted that apigenin inhibits TNF-α by interacting with its major site. Hence, WG-ME may exert its preventive efficacy in managing the functional imbalance of reproductive organs caused by BPA.

Supplementary information: The online version contains supplementary material available at 10.1007/s13205-024-04117-0.

小麦草(Triticum aestivum L.)的甲醇提取物可防止双酚 A 诱导的 Wistar 大鼠卵巢类固醇生成途径紊乱并缓解子宫炎症。
本研究探讨了双酚 A(BPA)喂养的成年 Wistar 大鼠在摄入小麦草甲醇提取物(WG-ME)后,子宫和卵巢的抗炎和功能改善情况。四组大鼠分别为车辆处理对照组、双酚 A 处理组(100 毫克/千克体重)、双酚 A + WG-ME 组(100 毫克双酚 A/千克体重 + 200 毫克 WG-ME/ 千克体重)和 WG-ME 组(200 毫克/千克体重)。LC-MS 研究证实,WG-ME 中含有多种生物活性成分。为了检测 WG-ME 对双酚 A 的疗效,还采用了 ELISA、PAGE、实时 PCR 和免疫组织染色法。结果表明,WG-ME能使子宫和卵巢的重量显著增加,并能改善发情周期和抗氧化状态。WG-ME 能有效抑制肿瘤坏死因子-α(TNF-α)和核因子卡巴-B(NF-κB)的 mRNA 表达。这种提取物还能增加服用双酚 A 的大鼠子宫组织中抗凋亡因子 BCL2(B 细胞淋巴瘤 2)的表达,同时抑制肿瘤蛋白 p53、cylcin-D1 和 BAX(BCL2 相关蛋白 X)的异常表达。促性腺激素和生殖激素水平的提高、雄激素受体信号的减弱、卵泡生长的改善、颗粒层的明显出现以及子宫组织形态的改善,都支持了类固醇生成事件的增强。WG-ME 中丰富的芹菜素和儿茶素化合物可能会增强上述作用。分子相互作用研究预测,芹菜素通过与 TNF-α 的主要位点相互作用来抑制 TNF-α。因此,WG-ME 可在控制双酚 A 引起的生殖器官功能失衡方面发挥预防功效:在线版本包含补充材料,可在 10.1007/s13205-024-04117-0获取。
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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来源期刊
3 Biotech
3 Biotech Agricultural and Biological Sciences-Agricultural and Biological Sciences (miscellaneous)
CiteScore
6.00
自引率
0.00%
发文量
314
期刊介绍: 3 Biotech publishes the results of the latest research related to the study and application of biotechnology to: - Medicine and Biomedical Sciences - Agriculture - The Environment The focus on these three technology sectors recognizes that complete Biotechnology applications often require a combination of techniques. 3 Biotech not only presents the latest developments in biotechnology but also addresses the problems and benefits of integrating a variety of techniques for a particular application. 3 Biotech will appeal to scientists and engineers in both academia and industry focused on the safe and efficient application of Biotechnology to Medicine, Agriculture and the Environment.
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