Synthesis and SAR of Imidazo[1,2-a] Pyridinyl-Phenylacrylonitrile Derivatives as Potent Anticandidosis Agents

Deto N'guessan, S. Coulibaly, F. Kassi, Pierre‐Olivier Delaye, M. Pénichon, C. Enguehard-Gueiffier, H. Allouchi, M. Ouattara
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Abstract

The increase of immunodeficiency situations such as HIV and cancer is stemmed from the expansion of fungal infections due to the genus Candida. Although Candida albicans remains the most widespread species in pathogenic isolates, its epidemiological impact in human infectiology has declined in favor of new emerging species of Candida refractory to conventional treatment. Faced with this situation, we decided to contribute to the development of some imidazo [1,2-a] pyridinyl-arylacrylonitriles, as potential new anticandidosics. We proposed the design by molecular hybridization and the synthesis of some imidazo [1,2-a]pyridinyl-arylacrylonitriles following a Knoevenagel condensation reaction between aldehydes and various arylacetonitriles. Furthermore, we carried out the evaluation of the antifungal activities of these hybrid derivatives against Candida albicans, Candida tropicalis and Candida glabrata using the microplate dilution methodology. In the end, imidazo[1,2-a]pyridinyl-arylacrylonitriles turned out to be molecules with strong antifungal activities. The best anticandidosis profile on the three Candida species tested was obtained with the 3-chlorinated compound (5), the MICs of which varied between 357.5 - 0.52 µM. Likewise, the doubly modulated derivative (3c), was particularly illustrated by its good efficacy against Candida tropicalis. These two best compounds can be proposed as the "hit molecules" for further pharmacomodulations in order to have a drug candidate for anticandidosis purpose.
咪唑[1,2-a]吡啶基苯基丙烯腈衍生物的合成及抗结核活性研究
艾滋病毒和癌症等免疫缺陷情况的增加源于念珠菌属真菌感染的扩大。尽管白色念珠菌仍然是致病性分离株中分布最广的一种,但它在人类传染病学中的流行病学影响已经下降,传统治疗难治的新出现的念珠菌种类越来越多。面对这种情况,我们决定致力于开发一些咪唑[1,2-a]吡啶基芳基丙烯腈,作为潜在的新型抗结核药物。我们提出了通过分子杂交的设计,并在醛与各种芳基乙腈之间发生Knoevenagel缩合反应后合成了一些咪唑[1,2-a]吡啶基芳基丙烯腈。此外,我们还利用微孔板稀释法对这些杂交衍生物对白色念珠菌、热带念珠菌和光秃念珠菌的抑菌活性进行了评价。最后,咪唑[1,2-a]吡啶基芳基丙烯腈被证明是具有较强抗真菌活性的分子。3氯化化合物(5)对三种假丝酵母菌的抗假丝酵母菌效果最好,其mic值在357.5 ~ 0.52µM之间。同样,双调制导数(3c),特别说明其对热带假丝酵母的良好疗效。这两种最佳化合物可以作为进一步药物调节的“命中分子”,以获得抗结核的候选药物。
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