对津巴布韦用于癌症治疗的药用植物的抗增殖、细胞毒性和植物化学特性的评估。

Evaluation of the antiproliferative, cytotoxic and phytochemical properties of Zimbabwean medicinal plants used in cancer treatment.

作者信息

Mlilo Sigcono, Sibanda Samson, Sithole Simbarashe, Mukanganyama Stanley, Naik Yogehkumar S

机构信息

Department of Applied Chemistry, National University of Science and Technology (NUST), P.O.Box AC 939, Ascot, Bulawayo, Zimbabwe.

Department of Soil Science and Productivity, Sciences and Technology (MUAST), Marondera University of Agricultural, P.O Box 35, Marondera, Zimbabwe.

出版信息

BMC Complement Med Ther. 2025 Apr 24;25(1):156. doi: 10.1186/s12906-025-04883-1.

Abstract

BACKGROUND

Cancer cases have been on the rise globally and several treatment strategies have been developed but mortality rates remain high. Zimbabwe, like many other countries, has also experienced a surge in cancer cases. In Zimbabwe, medicinal plants have been widely used to treat cancer for centuries. However, there has been limited research on the effectiveness, safety, and chemical composition of these plants. The current study assessed antiproliferative, cytotoxic and phytochemical properties of selected Zimbabwean medicinal plants.

METHOD

Cytotoxic activity of Agelenthus pungu, Carissa edulis, Dombeya rotundifolia, Flacourtia indica, Lannea discolor, Leonotis ocymifolia, Leucas martinicensis, Plicosepalus kalachariensis, Pseudolachnostylis maproneifolia, Solanum incanum, Strychnos cocculoides, Strychnos spinosa and Viscum verrucosum extracts were evaluated on normal murine peritoneal cells and sheep erythrocytes while antiproliferative activity was assessed on Jurkat T and HL60 cell lines. Cell viability was determined using the trypan blue exclusion and sulforhodamine B assay. Additionally, the effect of reduced glutathione on cytotoxic extracts was examined. The phytochemicals of the methanolic extracts were qualitatively determined using standard methods.

RESULTS

Agelenthus pungu, Carissa edulis, Flacourtia indica, Strychnos cocculoides, Strychnos spinosa and Viscum verrucosum were cytotoxic to normal murine peritoneal cells. Flacourtia indica and Viscum verruscosum caused haemolysis of sheep erythrocytes at a concentration of 250 µg/mL for both plant extracts and 125 µg/mL for Viscum verrucosum. Cell viability increased on addition of 25 µg/mL of reduced glutathione to the extracts considered the most cytotoxic extracts, Agelenthus pungu and Viscum verrucosum. Agelenthus pungu, Carissa edulis, Leonotis ocymifolia, Leucas martinicensis and Viscum verrucosum significantly inhibited Jurkat T and HL60 cell proliferation. Viscum verrucosum was the most potent with the lowest half-maximum inhibitory concentration (IC) values of 33 and 34 µg/mL on Jurkat T and HL60 cell lines respectively. The most dominant phytochemical classes were alkaloids, flavonoids and saponins.

CONCLUSION

This study demonstrates that Agelenthus pungu, Carissa edulis, Leonotis ocymifolia, Leucas martinicensis and Viscum verrucosum have antiproliferative activity against Jurkat T and HL60 cell lines. Viscum verrucosum was the most potent. These findings emphasise the importance of medicinal plants as well as their potential use as sources of novel compounds in anticancer drug discovery.

摘要

背景

全球癌症病例呈上升趋势,已开发出多种治疗策略,但死亡率仍然很高。与许多其他国家一样,津巴布韦的癌症病例也出现了激增。在津巴布韦,药用植物几个世纪以来一直被广泛用于治疗癌症。然而,关于这些植物的有效性、安全性和化学成分的研究有限。本研究评估了津巴布韦一些选定药用植物的抗增殖、细胞毒性和植物化学特性。

方法

评估了刺叶藤、可食假虎刺、圆叶非洲芙蓉、印度大风子、变色厚皮树、罗勒叶狮子草、马丁尼加白绒草、卡拉查里裂药花、马普龙假糙苏、白英、非洲马钱、多花马钱和疣果槲寄生提取物对正常小鼠腹腔细胞和绵羊红细胞的细胞毒性,同时评估了对Jurkat T和HL60细胞系的抗增殖活性。使用台盼蓝排斥法和磺酰罗丹明B测定法测定细胞活力。此外,还研究了还原型谷胱甘肽对细胞毒性提取物的影响。使用标准方法对甲醇提取物的植物化学成分进行定性测定。

结果

刺叶藤、可食假虎刺、印度大风子、非洲马钱、多花马钱和疣果槲寄生对正常小鼠腹腔细胞具有细胞毒性。印度大风子和疣果槲寄生在植物提取物浓度为250µg/mL时均导致绵羊红细胞溶血,疣果槲寄生在浓度为125µg/mL时也导致溶血。向被认为细胞毒性最强的提取物刺叶藤和疣果槲寄生中添加25µg/mL还原型谷胱甘肽后,细胞活力增加。刺叶藤、可食假虎刺、罗勒叶狮子草、马丁尼加白绒草和疣果槲寄生显著抑制Jurkat T和HL60细胞增殖。疣果槲寄生的活性最强,对Jurkat T和HL60细胞系的半数最大抑制浓度(IC)值分别为33和34µg/mL,为最低。最主要的植物化学类别是生物碱、黄酮类化合物和皂苷。

结论

本研究表明,刺叶藤、可食假虎刺、罗勒叶狮子草、马丁尼加白绒草和疣果槲寄生对Jurkat T和HL60细胞系具有抗增殖活性。疣果槲寄生的活性最强。这些发现强调了药用植物的重要性以及它们作为抗癌药物发现中新化合物来源的潜在用途。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/34be/12023620/dd7a7491bb04/12906_2025_4883_Fig1_HTML.jpg

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