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合成具有杀虫作用的新型喹啉衍生物,针对疟疾和登革热疾病的幼虫传播媒介。

Synthesis of new series of quinoline derivatives with insecticidal effects on larval vectors of malaria and dengue diseases.

机构信息

University of Science & Technology, Techno City, Kiling Road, Baridua, Meghalaya, 793 101, India.

Division of Entomology, Department of Zoology, School of Life Sciences, Bharathiar University, Coimbatore, Tamil Nadu, 641046, India.

出版信息

Sci Rep. 2022 Mar 19;12(1):4765. doi: 10.1038/s41598-022-08397-5.

Abstract

Mosquito borne diseases are on the rise because of their fast spread worldwide and the lack of effective treatments. Here we are focusing on the development of a novel anti-malarial and virucidal agent with biocidal effects also on its vectors. We have synthesized a new quinoline (4,7-dichloroquinoline) derivative which showed significant larvicidal and pupicidal properties against a malarial and a dengue vector and a lethal toxicity ranging from 4.408 µM/mL (first instar larvae) to 7.958 µM/mL (pupal populations) for Anopheles stephensi and 5.016 µM/mL (larva 1) to 10.669 µM/mL (pupae) for Aedes aegypti. In-vitro antiplasmodial efficacy of 4,7-dichloroquinoline revealed a significant growth inhibition of both sensitive strains of Plasmodium falciparum with IC values of 6.7 nM (CQ-s) and 8.5 nM (CQ-r). Chloroquine IC values, as control, were 23 nM (CQ-s), and 27.5 nM (CQ-r). In vivo antiplasmodial studies with P. falciparum infected mice showed an effect of 4,7-dichloroquinoline compared to chloroquine. The quinoline compound showed significant activity against the viral pathogen serotype 2 (DENV-2). In vitro conditions and the purified quinoline exhibited insignificant toxicity on the host system up to 100 µM/mL. Overall, 4,7-dichloroquinoline could provide a good anti-vectorial and anti-malarial agent.

摘要

由于蚊子传播的疾病在全球范围内迅速传播,且缺乏有效治疗方法,这些疾病的发病率正在上升。在这里,我们专注于开发一种新型抗疟原虫和抗病毒药物,该药物对其载体也具有杀菌作用。我们合成了一种新的喹啉(4,7-二氯喹啉)衍生物,该衍生物对疟疾和登革热载体的幼虫和蛹均具有显著的杀幼虫和杀蛹作用,对斯氏按蚊的半数致死浓度(第一龄幼虫)范围为 4.408 μM/mL 至 7.958 μM/mL(蛹种群),对埃及伊蚊的半数致死浓度(幼虫 1 期)范围为 5.016 μM/mL 至 10.669 μM/mL(蛹)。4,7-二氯喹啉的体外抗疟原虫功效显示,对敏感株恶性疟原虫(Pf)和氯喹耐药株恶性疟原虫(Pf-r)均有显著的生长抑制作用,IC 值分别为 6.7 nM(CQ-s)和 8.5 nM(CQ-r)。作为对照的氯喹 IC 值分别为 23 nM(CQ-s)和 27.5 nM(CQ-r)。在感染恶性疟原虫的小鼠体内抗疟原虫研究中,与氯喹相比,4,7-二氯喹啉显示出一定的效果。该喹啉化合物对血清型 2 型(DENV-2)病毒病原体表现出显著的活性。在体外条件下和纯化的喹啉在高达 100 μM/mL 的浓度下对宿主系统没有表现出显著的毒性。总体而言,4,7-二氯喹啉可能提供一种良好的抗蚊媒和抗疟原虫药物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/79a2/8934362/fa0624a77f70/41598_2022_8397_Fig1_HTML.jpg

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