Integrated In-silico and In-vivo Assessments of Betaine's Effect on the Hypothalamic-Pituitary-Testicular (HPT) Axis in Fluoride-Treated Rats.

IF 3.4 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Biological Trace Element Research Pub Date : 2025-02-05 DOI:10.1007/s12011-025-04519-y
Solomon Owumi, Bayode J Oluwawibe, Harieme Agbarogi, Moses T Otunla, Olatunde Owoeye, Uche O Arunsi
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Abstract

Toxicity is associated with undue sodium fluoride (NaF) exposure, and Betaine (BET) is recognised for its nutraceutical benefits. Although it is necessary to reduce toxic level exposure to fluoride, the literature lacks information on the role of BET in mitigating fluoride-induced reproductive toxicity. Therefore, this study assesses the impact of BET on NaF-induced reproductive perturbation in male rats. Wistar rats were treated with NaF (9 mg/kg) alone or co-treated with BET (50 or 100 mg/kg) for 28 d. Our findings indicate that BET significantly mitigated alterations in sperm functionality indices caused by NaF treatment. BET substantially increased reproductive hormone levels and averted NaF-induced increases in oxidative stress biomarkers and testicular enzymes. NaF-induced increases in inflammatory markers in the testis, epididymis, and hypothalamus were effectively reversed upon BET co-treatment. Also, co-treatment with BET protected genome integrity, as evidenced by p53 and apoptotic markers Bax and Bcl-2 levels, abating damages in the testes, epididymis, and hypothalamus of NaF-treated rats. Also, our findings from in-silico studies revealed that BET moderately inhibits the molecular activation of the inhibitor of nuclear factor-κB kinase, hypoxia-inducible factor -1 alpha, and proviral integration for the Moloney murine leukaemia virus-1 kinase. While it is preferable to reduce fluoride exposure, the relevant findings here indicate that BET exhibits anti-inflammatory, antioxidant, and anti-apoptotic properties that ameliorate inadvertent NaF-mediated toxicities in experimental rats exposed to NaF.

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综合体内和体外评估甜菜碱对氟处理大鼠下丘脑-垂体-睾丸轴(HPT)的影响
过量接触氟化钠(NaF)会导致中毒,而甜菜碱(BET)因其营养保健功效而广受认可。尽管有必要降低氟化物的毒性暴露水平,但文献中缺乏有关甜菜碱在减轻氟化物引起的生殖毒性方面作用的信息。因此,本研究评估了 BET 对 NaF 诱导的雄性大鼠生殖干扰的影响。我们的研究结果表明,BET 能显著减轻 NaF 处理对精子功能指数的影响。BET 大大提高了生殖激素水平,避免了 NaF 引起的氧化应激生物标志物和睾丸酶的增加。联合使用 BET 可有效逆转 NaF 引起的睾丸、附睾和下丘脑炎症标志物的增加。此外,联合使用 BET 还能保护基因组的完整性,p53 和细胞凋亡标志物 Bax 和 Bcl-2 的水平证明了这一点,从而减轻了 NaF 处理大鼠睾丸、附睾和下丘脑的损伤。此外,我们的室内研究结果表明,BET 能适度抑制核因子-κB 激酶抑制剂、低氧诱导因子-1 α 的分子活化,以及莫罗尼小鼠白血病病毒-1 激酶的病毒整合。虽然最好是减少氟化物的接触,但本文的相关研究结果表明,BET 具有抗炎、抗氧化和抗细胞凋亡的特性,可改善接触 NaF 的实验鼠无意中受到 NaF 介导的毒性。
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来源期刊
Biological Trace Element Research
Biological Trace Element Research 生物-内分泌学与代谢
CiteScore
8.70
自引率
10.30%
发文量
459
审稿时长
2 months
期刊介绍: Biological Trace Element Research provides a much-needed central forum for the emergent, interdisciplinary field of research on the biological, environmental, and biomedical roles of trace elements. Rather than confine itself to biochemistry, the journal emphasizes the integrative aspects of trace metal research in all appropriate fields, publishing human and animal nutritional studies devoted to the fundamental chemistry and biochemistry at issue as well as to the elucidation of the relevant aspects of preventive medicine, epidemiology, clinical chemistry, agriculture, endocrinology, animal science, pharmacology, microbiology, toxicology, virology, marine biology, sensory physiology, developmental biology, and related fields.
期刊最新文献
Integrated In-silico and In-vivo Assessments of Betaine's Effect on the Hypothalamic-Pituitary-Testicular (HPT) Axis in Fluoride-Treated Rats. Investigation of the Effects of Selenium Against 4-Nonylphenol-induced Toxicity in Rat Testis. Selenium Mitigates Caerulein and LPS-induced Severe Acute Pancreatitis by Inhibiting MAPK, NF-κB, and STAT3 Signaling via the Nrf2/HO-1 Pathway. Trace Element Chromium-D-Phenylalanine Complex: Anti-Inflammatory and Antioxidant Insights from In Vivo and In Silico Studies. Correction: Impact of Trace Mineral Source and Phytase Supplementation on Prececal Phytate Degradation and Mineral Digestibility, Bone Mineralization, and Tissue Gene Expression in Broiler Chickens.
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