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不同地理来源的[具体名称未给出,推测为某种植物,此处用L.代替]的抗糖尿病和抗癌潜力。

Antidiabetic and Anticancer Potentials of L. from Different Geographical Origins.

作者信息

Ahmad Rizwan, Alqathama Aljawharah, Aldholmi Mohammed, Riaz Muhammad, Abdalla Ashraf N, Aljishi Fatema, Althomali Ebtihal, Amir Mohd, Abdullah Omeima, Alamer Muntathir Ali, Alaswad Deema, Alsulais Wala, Alsulays Ahad

机构信息

Natural Products and Alternative Medicine, College of Clinical Pharmacy, Imam Abdulrahman Bin Faisal University, Dammam 31441, Saudi Arabia.

Department of Pharmacognosy, Faculty of Pharmacy, Umm Al-Qura University, Makkah 21955, Saudi Arabia.

出版信息

Pharmaceuticals (Basel). 2023 Feb 24;16(3):350. doi: 10.3390/ph16030350.

Abstract

Mango fruit is well known for its nutritional and health benefits due to the presence of a plethora of phytochemical classes. The quality of mango fruit and its biological activities may change depending upon the variation in geographical factors. For the first time, this study comprehensively screened the biological activities of all four parts of the mango fruit from twelve different origins. Various cell lines (MCF7, HCT116, HepG2, MRC5) were used to screen the extracts for their cytotoxicity, glucose uptake, glutathione peroxidase activity, and α-amylase inhibition. MTT assays were carried out to calculate the IC values for the most effective extracts. The seed part from Kenya and Sri Lanka origins exhibited an IC value of 14.44 ± 3.61 (HCT116) and 17.19 ± 1.60 (MCF7). The seed part for Yemen Badami (119 ± 0.08) and epicarp part of Thailand (119 ± 0.11) mango fruit showed a significant increase in glucose utilization (50 μg/mL) as compared to the standard drug metformin (123 ± 0.07). The seed extracts of Yemen Taimoor seed (0.46 ± 0.05) and Yemen Badami (0.62 ± 0.13) produced a significant reduction in GPx activity (50 μg/mL) compared to the control cells (100 μg/mL). For α-amylase inhibition, the lowest IC value was observed for the endocarp part of Yemen Kalabathoor (108.8 ± 0.70 μg/mL). PCA, ANOVA, and Pearson's statistical models revealed a significant correlation for the fruit part vs. biological activities, and seed part vs. cytotoxicity and α-amylase activity ( = 0.05). The seed of mango fruit exhibited significant biological activities; hence, further in-depth metabolomic and in vivo studies are essential to effectively utilize the seed part for the treatment of various diseases.

摘要

芒果因其含有大量植物化学物质而在营养和健康益处方面广为人知。芒果的品质及其生物活性可能会因地理因素的变化而改变。本研究首次全面筛选了来自十二个不同产地的芒果果实所有四个部分的生物活性。使用了各种细胞系(MCF7、HCT116、HepG2、MRC5)来筛选提取物的细胞毒性、葡萄糖摄取、谷胱甘肽过氧化物酶活性和α-淀粉酶抑制活性。进行MTT试验以计算最有效提取物的IC值。来自肯尼亚和斯里兰卡产地的种子部分对HCT116细胞的IC值为14.44±3.61,对MCF7细胞的IC值为17.19±1.60。也门巴达米芒果种子(119±0.08)和泰国芒果的外果皮部分(119±0.11)在50μg/mL时与标准药物二甲双胍(123±0.07)相比,葡萄糖利用率显著增加。也门泰穆尔种子(0.46±0.05)和也门巴达米种子(0.62±0.13)的提取物在50μg/mL时与对照细胞(100μg/mL)相比,GPx活性显著降低。对于α-淀粉酶抑制,也门卡拉巴图尔芒果的内果皮部分IC值最低(108.8±0.70μg/mL)。主成分分析(PCA)、方差分析(ANOVA)和皮尔逊统计模型显示果实部分与生物活性、种子部分与细胞毒性和α-淀粉酶活性之间存在显著相关性(P = 0.05)。芒果种子表现出显著的生物活性;因此,进一步深入的代谢组学和体内研究对于有效利用种子部分治疗各种疾病至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/99d7/10055559/a54ad1dc5547/pharmaceuticals-16-00350-g001.jpg

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