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设计、合成和评估吡喹酮类似物和新型分子杂合物作为潜在的抗疟和抗血吸虫药物。

Design, Synthesis and Evaluation of Praziquantel Analogues and New Molecular Hybrids as Potential Antimalarial and Anti-Schistosomal Agents.

机构信息

Department of Chemical and Physical Sciences, Faculty of Natural Sciences, Walter Sisulu University, Nelson Mandela Drive, Mthatha 5117, South Africa.

Department of Medical Parasitology and Infection Biology, Swiss Tropical and Public Health Institute, Kreuzstr. 2, CH-4123 Allschwil, Switzerland.

出版信息

Molecules. 2023 Jul 3;28(13):5184. doi: 10.3390/molecules28135184.

Abstract

Malaria and schistosomiasis are two of the neglected tropical diseases that persistently wreak havoc worldwide. Although many antimalarial drugs such as chloroquine are readily available, the emergence of drug resistance necessitates the development of new therapies to combat this disease. Conversely, Praziquantel (PZQ) remains the sole effective drug against schistosomiasis, but its extensive use raises concerns about the potential for drug resistance to develop. In this project, the concept of molecular hybridization was used as a strategy to design the synthesis of new molecular hybrids with potential antimalarial and antischistosomal activity. A total of seventeen molecular hybrids and two PZQ analogues were prepared by coupling 6-alkylpraziquanamines with cinnamic acids and cyclohexane carboxylic acid, respectively. The synthesised compounds were evaluated for their antimalarial and antischistosomal activity; while all of the above compounds were inactive against (IC > 6 µM), many were active against schistosomiasis with four particular compounds exhibiting up to 100% activity against newly transformed schistosomula and adult worms at 50 µM. Compared to PZQ, the reference drug, the activity of which is 91.7% at 1 µM, one particular molecular hybrid, compound , which bears a para-isopropyl group on the cinnamic acid moiety, exhibited a notable activity at 10 µM (78.2% activity). This compound has emerged as the front runner candidate that might, after further optimization, hold promise as a potential lead compound in the fight against schistosomiasis.

摘要

疟疾和血吸虫病是两种持续肆虐全球的被忽视的热带病。虽然有许多抗疟药物,如氯喹,易于获得,但药物耐药性的出现需要开发新的疗法来对抗这种疾病。相反,吡喹酮(PZQ)仍然是唯一有效的抗血吸虫病药物,但它的广泛使用引起了人们对药物耐药性发展的担忧。在这个项目中,分子杂交的概念被用作设计具有抗疟和抗血吸虫活性的新分子杂合体的策略。总共合成了十七个分子杂合体和两个 PZQ 类似物,分别通过将 6-烷基吡喹胺与肉桂酸和环己烷羧酸偶联来制备。合成的化合物被评估了它们的抗疟和抗血吸虫病活性;虽然所有上述化合物对 (IC > 6 µM)均无活性,但许多化合物对血吸虫病具有活性,其中四个特定化合物在 50 µM 时对新转化的尾蚴和成虫表现出高达 100%的活性。与作为参考药物的 PZQ 相比,其在 1 µM 时的活性为 91.7%,一个特定的分子杂合体,化合物 ,在肉桂酸部分带有对位异丙基,在 10 µM 时表现出显著的活性(78.2%的活性)。这种化合物已成为最有前途的候选药物,经过进一步优化,可能成为抗血吸虫病的潜在先导化合物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8280/10343899/903522f59ce6/molecules-28-05184-g001.jpg

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