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Design, synthesis and evaluation of praziquantel analogues and new molecular hybrids as potential antimalarial and anti-schistosomal agents
JournalArticle (Originalarbeit in einer wissenschaftlichen Zeitschrift)
 
ID 4700040
Author(s) Kasago, F. M.; Häberli, C.; Keiser, J.; Masamba, W.
Author(s) at UniBasel Häberli, Cécile
Keiser, Jennifer
Year 2023
Title Design, synthesis and evaluation of praziquantel analogues and new molecular hybrids as potential antimalarial and anti-schistosomal agents
Journal Molecules
Volume 28
Number 13
Pages / Article-Number 5184
Keywords Animals; Praziquantel/pharmacology/therapeutic use; *Antimalarials/pharmacology/therapeutic use; Schistosoma mansoni; *Schistosomicides/pharmacology/therapeutic use; *Schistosomiasis/drug therapy; S. mansoni; antimalarial; cinnamic acids; molecular hybrids; praziquantel; schistosomiasis
Mesh terms Animals; Praziquantel, therapeutic use; Antimalarials, therapeutic use; Schistosoma mansoni; Schistosomicides, therapeutic use; Schistosomiasis, drug therapy
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 Plasmodium falciparum (IC(50) > 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 32, 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.
ISSN/ISBN 1420-3049
URL https://doi.org/10.3390/molecules28135184
edoc-URL https://edoc.unibas.ch/95983/
Full Text on edoc Available
Digital Object Identifier DOI 10.3390/molecules28135184
PubMed ID http://www.ncbi.nlm.nih.gov/pubmed/37446846
ISI-Number WOS:001028029700001
Document type (ISI) Journal Article
 
   

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