Drug combinations as effective anti-leishmanials against drug resistant Leishmania mexicana

文献信息

发布日期 2020-07-02
DOI 10.1039/D0MD00101E
影响因子 0
作者

Humera Ahmed, Charlotte R. Curtis, Sara Tur-Gracia, Toluwanimi O. Olatunji, Katharine C. Carter, Roderick A. M. Williams


查看原文

摘要

Leishmania is a parasite that causes the disease leishmaniasis, and 700 000 to 1 million new cases occur each year. There are few drugs that treat the disease and drug resistance in the parasite limits the clinical utility of existing drugs. One way to combat drug resistance is to use combination therapy rather than monotherapy. In this study we have compared the effect of single and combination treatments with four different compounds, i.e. alkylphosphocholine analogues APC12 and APC14, miltefosine (MIL), ketoconazole (KTZ), and amphotericin B (AmpB), on the survival of Leishmania mexicana wild-type promastigotes and a cell line derived from the WT with induced resistance to APC12 (C12Rx). The combination treatment with APC14 and APC16 had a synergistic effect in killing the WT while the combination treatment with KTZ and APC12 or APC14 or APC12 and APC14 had a synergistic effect against C12Rx. More than 90% killing efficiency was obtained using APC12 alone at >1 mg ml−1 against the C12Rx strain; however, combinations with APC14 produced a similar killing efficiency using APC12 at 0.063–0.25 mg ml−1 and APC14 at 0.003–0.5 mg ml−1. These results show that combination therapy can negate induced drug resistance in L. mexicana and that the use of this type of screening system could accelerate the development of drug combinations for clinical use.

相关文献

Thermodynamics of the formation of surface PtO2 stripes on Pt(111) in the absence of subsurface oxygen

Selwyn Hanselman, Ian T. McCrum, Marcel J. Rost, Marc T. M. Koper

2019-10-30 Paper

DOI: 10.1039/C9CP05107D

Influence of Er3+ concentration and Ln3+ on the Judd–Ofelt parameters in LnOCl (Ln = Y, La, Gd) phosphors

Chunfeng Yu, Baojiu Chen, Xizhen Zhang, Xiangping Li, Jinsu Zhang, Sai Xu, Hongquan Yu, Jiashi Sun, Yongze Cao, Haiping Xia

2020-02-21 Paper

DOI: 10.1039/C9CP06755H

Solar-driven plasmonic heterostructure Ti/TiO2−x with gradient doping for sustainable plasmon-enhanced catalysis

Chaoqun Cheng, Muhammad Nadeem Akram, Ola Nilsen, Nini Pryds, Kaiying Wang

2020-03-16 Paper

DOI: 10.1039/D0CP00672F

Selective host–guest chemistry, self-assembly and conformational preferences of m-xylene macrocycles probed by ion-mobility spectrometry mass spectrometry

Benjamin A. Link, Ammon J. Sindt, Linda S. Shimizu, Thanh D. Do

2020-04-14 Paper

DOI: 10.1039/C9CP06938K

Enhanced extraction of phenol from model oils using ionic liquids elucidated with neutron diffraction

Emily L. Byrne, Thaise Pereira, John D. Holbrey

2020-04-08 Paper

DOI: 10.1039/D0CP01013H

Ligand binding to G-quadruplex DNA: new insights from ultraviolet resonance Raman spectroscopy

Silvia Di Fonzo, Jussara Amato, Federica D’Aria, Marco Caterino, Francesco D’Amico, Alessandro Gessini, John W. Brady, Bruno Pagano, Concetta Giancola

2020-03-25 Paper

DOI: 10.1039/D0CP01022G

Hybrid density functional studies of native defects and H impurities in wurtzite CdSe

Bo Kong, Xin-You An, Ti-Xian Zeng, Jihua Zhang

2020-03-11 Paper

DOI: 10.1039/C9CP06094D

Can glycine betaine denature proteins?

Arusha Acharyya, Dayoung Shin, Thomas Troxler, Feng Gai

2020-03-30 Paper

DOI: 10.1039/D0CP00397B

您可能还喜欢

化合物问答

3 - (二氟甲基)-1 -氟苯(CAS号:26029-52-7)适用哪些法规指南?

3 - (二氟甲基)-1 -氟苯需遵循联合国全球化学品统一分类和标签制度(GHS),包括急性毒性、皮肤腐蚀/刺激、严重眼损伤/眼刺激等分类。同时,该化合物还需符...

26029-52-71-(Difluoromethyl)-3...
化合物问答

3,5-二甲基苯胺(CAS号:108-69-0)通常如何合成?

3,5-二甲基苯胺通常通过乙苯的氨解反应合成。反应中使用硫酸作为催化剂,反应温度为120-130°C。乙苯在硫酸存在下与氨反应,生成3,5-二甲基苯胺和苯胺副产...

108-69-03,5-Dimethylaniline
化合物问答

3-甲基异噻唑-5-胺(CAS号:24340-76-9)安全吗?

3-甲基异噻唑-5-胺在适当使用和储存条件下是相对安全的,但在操作时应注意防护措施。应避免吸入粉尘,避免与皮肤和眼睛直接接触。在操作过程中,应穿戴适当的防护装备...

24340-76-93-Methyl-1,2-thiazol...
化合物问答

3-(1,3-Thiazol-2-yl)-1H-indole(CAS号:135531-86-1)通常如何合成?

3-(1,3-噻唑-2-基)-1H-吲哚通常通过多步合成方法制备。首先,由噻唑-2-基溴化物和吲哚进行偶联反应,得到中间体。然后,通过还原反应将中间体转化为所需...

135531-86-13-(1,3-Thiazol-2-yl)...
化合物问答

4-溴-2-氟苯甲基氯(CAS号:85510-82-3)的主要用途是什么?

4-溴-2-氟苯甲基氯主要用于有机合成中间体,特别是在医药、农药和染料等领域。作为一种具有特定结构的化合物,它在合成复杂有机分子时扮演重要角色。

85510-82-34-Bromo-1-(chloromet...
化合物问答

处理Fmoc-β-(3-噻吩基)-D-Ala-OH(CAS号:220497-90-5)时应注意哪些实验室安全事项?

处理Fmoc-β-(3-噻吩基)-D-Ala-OH时,应佩戴防护手套、护目镜和实验服。操作应在通风橱内进行。如发生泄露,应立即用大量水冲洗,并通知实验室管理人员...

220497-90-5N-[(9H-Fluoren-9-ylm...
化合物问答

氮化硅(CAS号:12033-89-5)通常如何合成?

氮化硅通常通过氮化硅的直接反应合成,即在高温下将四氯化硅与氨气反应。具体步骤是将四氯化硅和氨气混合并加热至1300-1700℃,在该条件下,四氯化硅与氨气反应生...

12033-89-5Trisilicon tetranitr...
化合物问答

Cetirizine EP Impurity B DiHCl(CAS号:1000690-91-4)通常如何合成?

Cetirizine EP Impurity B DiHCl通常通过一锅法合成,首先将4-氯苯基-苯甲基氯甲酸酯与1-哌嗪乙酸反应,生成相应的酸,然后与盐酸反应...

1000690-91-4{4-[(4-Chlorophenyl)...
化合物问答

如何储存1-哌啶-4-基丁-1-酮(CAS号:3509-15-7)?

1-哌啶-4-基丁-1-酮应储存在阴凉、干燥的地方,避免阳光直射。存储容器应密封,并确保通风良好。建议储存温度不超过25℃,湿度保持在相对较低的水平。

3509-15-71-Piperidin-4-ylbuta...
化合物问答

如何处理含有VORUCICLIB(CAS号:1000023-04-0)的废料?

含有VORUCICLIB的废料应进行专业的收集和处理,包括使用适当的容器进行隔离,避免与其他化学品接触。处理方法通常包括化学中和、沉淀反应或吸附过程,随后进行焚...

1000023-04-02-[2-Chloro-4-(trifl...
免责声明
本页面提供的学术期刊信息仅供参考和研究使用。我们与任何期刊出版商均无关联,也不处理投稿事宜。如有投稿相关咨询,请直接联系相关期刊出版商。
如发现页面信息有误,请发送邮件至 support@chemtradehub.com 联系我们。我们将及时核实并处理您的问题。