In vitro and in vivo evaluation of efficacy of berberine chloride: phyto-alternative approach against Trypanosoma evansi infection.

IF 1.4 4区 医学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY Molecular and biochemical parasitology Pub Date : 2023-04-01 DOI:10.2139/ssrn.4379251
Snehil Gupta, S. Vohra, Khushboo Sethi, R. Rani, Surbhi Gupta, Surinder Kumar, Raj Kumar
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Abstract

Current chemotherapy against the Surra organism, Trypanosoma evansi has several limitations in terms of efficacy, toxicity, availability and emerging resistance. These reasons make the search of new chemo-preventive and chemo-therapeutic agent with high potency and low toxicity. Alkaloid phyto-molecules, berberine has shown promising anti-kinetoplastid activity against T. cruzi, T. congolense, T. brucei, Leishmania donovani and L. tropica. However, till date, there is no investigation of therapeutic efficacy of berberine chloride (BC) against T. evansi. The IC50 value of BC for growth inhibition of T. evansi at 24h of culture was calculated as 12.15µM. The specific selectivity index (SSI) of BC was calculated as 19.01 and 10.43 against Vero cell line and Equine PBMC's, respectively. Thirteen drug target genes affecting various metabolic pathways were studied to investigate the mode of trypanocidal action of BC. In transcript analysis, the mRNA expression of arginine kinase 1 remained refractory to exposure with BC, which provides metabolic plasticity in adverse environmental conditions. In contrary, rest all the drug target gene were down-regulated, which indicates that drug severely affect DNA replication, cell proliferation, energy homeostasis, redox homeostasis and calcium homeostasis of T. evansi, leading to the death of parasite in low concentrations. It is the first attempt to investigate in vitro anti-trypanosomal activity of BC against T. evansi. These data imply that phytochemicals as alternative strategies can be explored in the future as an alternative treatment for Surra in animal.
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氯化小檗碱:植物替代方法抗伊文氏锥虫感染的体内外疗效评价。
目前针对伊文氏锥虫的化疗在疗效、毒性、可获得性和新出现的耐药性方面存在一些局限性。这些原因促使人们寻求高效、低毒的新型化学预防和化学治疗药物。生物碱类植物分子小檗碱对克氏弓形虫、刚果弓形虫、布鲁氏弓形虫、多诺瓦利什曼原虫和热带弓形虫表现出良好的抗动质体活性。然而,到目前为止,还没有关于盐酸小檗碱(BC)对伊氏弓形虫治疗效果的研究。计算BC在培养24h时对伊氏弧菌生长抑制作用的IC50值为12.15µM。计算BC对Vero细胞株和马PBMC的特异性选择性指数(SSI)分别为19.01和10.43。研究了影响不同代谢途径的13个药物靶基因,探讨了BC的锥虫作用模式。在转录分析中,精氨酸激酶1的mRNA表达不受BC的影响,这在不利的环境条件下提供了代谢可塑性。相反,其余药物靶基因均下调,说明药物严重影响伊万氏弓形虫的DNA复制、细胞增殖、能量稳态、氧化还原稳态和钙稳态,导致低浓度下寄生虫死亡。这是首次在体外研究BC对伊氏锥虫的抗锥虫活性。这些数据表明,植物化学物质作为替代策略可以在未来探索作为动物Surra的替代治疗。
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来源期刊
CiteScore
2.90
自引率
0.00%
发文量
51
审稿时长
63 days
期刊介绍: The journal provides a medium for rapid publication of investigations of the molecular biology and biochemistry of parasitic protozoa and helminths and their interactions with both the definitive and intermediate host. The main subject areas covered are: • the structure, biosynthesis, degradation, properties and function of DNA, RNA, proteins, lipids, carbohydrates and small molecular-weight substances • intermediary metabolism and bioenergetics • drug target characterization and the mode of action of antiparasitic drugs • molecular and biochemical aspects of membrane structure and function • host-parasite relationships that focus on the parasite, particularly as related to specific parasite molecules. • analysis of genes and genome structure, function and expression • analysis of variation in parasite populations relevant to genetic exchange, pathogenesis, drug and vaccine target characterization, and drug resistance. • parasite protein trafficking, organelle biogenesis, and cellular structure especially with reference to the roles of specific molecules • parasite programmed cell death, development, and cell division at the molecular level.
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