植醇对甲氨蝶呤诱导的叶酸缺乏的瑞士白化小鼠可能具有增强血红蛋白的作用:体内和硅学研究

Muhammad Torequl Islam , Raihan Chowdhury , Md Sakib Al Hasan , Salehin Sheikh , Md Shimul Bhuia , Sumaya Akter Bithi , Most Israt Jahan Oni , Mehedi Hasan Bappi , Siddique Akber Ansari , Elaine C.P. Lucetti , Catarina M. Tahim , Henrique Douglas Melo Coutinho , Irfan Aamer Ansari
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引用次数: 0

摘要

二萜植物醇对实验动物的贫血症有明显的防治作用。然而,这一问题背后的分子机制仍有待发现。本研究旨在通过体内和硅学研究,评估植醇对甲氨蝶呤诱导的叶酸缺乏动物的影响。为此,研究人员将三十只成年雄性瑞士白化小鼠随机分为六个不同的组别,即正常对照组(载体)、阴性对照组(叶酸缺乏诱导剂,甲氨蝶呤 3 毫克/千克)、标准组(叶酸 1.5 毫克/千克)、由植醇 25 毫克/千克和 50 毫克/千克组成的两个试验组,以及由标准剂量和最高试验剂量植醇组成的联合组。除载体组外,所有试验组在最初 3 天内均接受甲氨蝶呤治疗(每天一次),以诱导叶酸缺乏。然后再进行相应的治疗,每天一次,连续 3 天。在第 1 天(治疗前)、第 4 天(甲氨蝶呤治疗后)和第 7 天(治疗后)通过切尾测量外周血中的血红蛋白(Hb)水平。另一方面,利用 PyMol、PyRex、Discovery Studio 和其他辅助工具进行了计算研究。研究结果表明,植物醇能显著(p < 0.05)提高因甲氨蝶呤引起的动物 Hb 水平降低而改变的 Hb 水平。复方制剂也能提高动物的血红蛋白水平,但其效果略低于单个组(标准组和试验组)。在硅学研究中,植醇显示出与二氢叶酸还原酶(DHFR)良好的结合能力(结合能:-7.0 kcal/mol)。总之,植醇可能通过与二氢叶酸还原酶相互作用,改变甲氨蝶呤对动物的影响,从而防治叶酸缺乏症。要在不久的将来将植物醇开发成抗贫血药物,还需要进一步的验证研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Possible hemoglobin enhancing effect of phytol in methotrexate-induced folate deficient Swiss albino mice: In vivo and in silico studies

The diterpenoid phytol is evidently acting against anemia in experimental animals. However, the molecular mechanisms behind this issue are yet to be discovered. This study aimed to evaluate phytol's effect on methotrexate-induced folate-deficient animals through in vivo and in silico studies. For this, a total of thirty adult male Swiss albino mice were randomly divided into six different groups, namely the normal control (vehicle), the negative control (folate deficiency inducer, methotrexate 3 ​mg/kg), the standard (folic acid 1.5 ​mg/kg), two test groups comprising phytol 25 and 50 ​mg/kg, and a combined group composed of the standard and highest test doses of phytol. Except for the vehicle, all groups were treated with methotrexate for the first 3 days (once/day) to induce folate deficiency. Then followed by the respective treatment once a day for 3 days. Hemoglobin (Hb) level was measured from the peripheral blood (by tail cutting) on days 1st (before treatment), 4th (after methotrexate treatment), and 7th (after treatment). On the other hand, the computational studies were performed by PyMol, PyRex, Discovery Studio, and other complementary tools. Findings suggest that phytol significantly (p ​< ​0.05) augmented Hb levels that are altered by methotrexate-induced reduction of Hb levels in animals dose-dependently. The combination also augmented Hb levels in animals; however, its effect was slightly lower than the individual groups (standard and test). In the in silico study, phytol showed good binding capacity (binding energy: −7.0 ​kcal/mol) with dihydrofolate reductase (DHFR). In conclusion, phytol may act against folate deficiency by altering methotrexate's impacts in animals, possibly through interacting with DHFR. Further validated research is necessary to develop phytol as an anti-anemia drug in the near future.

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