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曲霉病的潜在原研药物:1-N,N-二甲基氨基-5-异氰基萘(DIMICAN)的体外和体内作用

Potential Original Drug for Aspergillosis: In Vitro and In Vivo Effects of 1-N,N-Dimethylamino-5-Isocyanonaphthalene (DIMICAN) on .

作者信息

Szigeti Zsuzsa Máthéné, Tálas László, Széles Adrienn, Hargitai Zoltán, Nagy Zsolt László, Nagy Miklós, Kiss Alexandra, Kéki Sándor, Szemán-Nagy Gábor

机构信息

Department of Molecular Biotechnology and Microbiology, Faculty of Science, University of Debrecen, 4010 Debrecen, Hungary.

Department of Lang Utilisation, Engineering and Precision Farming Technology, Faculty of Agricultural and Food Sciences and Environmental Management, University of Debrecen, Böszörményi 138, 4032 Debrecen, Hungary.

出版信息

J Fungi (Basel). 2022 Sep 20;8(10):985. doi: 10.3390/jof8100985.

Abstract

As the recent outbreak of coronavirus disease 2019 (COVID-19) has shown, viral infections are prone to secondary complications like invasive aspergillosis with a high mortality rate, and therefore the development of novel, effective antifungals is of paramount importance. We have previously demonstrated that 1-amino-5-isocyanonaphthalene (ICAN) derivatives are promising original drug candidates against strains (Patent pending), even against fluconazole resistant Consequently, in this study ICANs were tested on , an opportunistic pathogen, which is the leading cause of invasive and systematic pulmonary aspergillosis in immunosuppressed, transplanted and cancer- or COVID-19 treated patients. We have tested several N-alkylated ICANs, a well as 1,5-naphthalene-diisocyanide (DIN) with the microdilution method against strains. The results revealed that the diisocyanide (DIN) was the most effective with a minimum inhibitory concentration (MIC) value as low as 0.6 µg mL (3.4 µM); however, its practical applicability is limited by its poor water solubility, which needs to be overcome by proper formulation. The other alkylated derivatives also have in vitro and in vivo anti- effects. For animal experiments the second most effective derivative 1-N, N-dimethylamino-5-isocyanonaphthalene (DIMICAN, MIC: 7-8 µg mL, 36-41 µM) was selected, toxicity tests were made with mice, and then the antifungal effect of DIMICAN was tested in a neutropenic aspergillosis murine model. Compared to amphotericin B (AMB), a well-known antifungal, the antifungal effect of DIMICAN in vivo turned out to be much better (40% vs. 90% survival after eight days), indicating its potential as a clinical drug candidate.

摘要

正如近期爆发的2019冠状病毒病(COVID-19)所显示的那样,病毒感染容易引发继发性并发症,如侵袭性曲霉病,死亡率很高,因此开发新型有效的抗真菌药物至关重要。我们之前已经证明,1-氨基-5-异氰基萘(ICAN)衍生物是有前景的抗菌株原始候选药物(专利申请中),甚至对氟康唑耐药菌株也有效。因此,在本研究中,对烟曲霉(一种机会性病原体)进行了ICAN测试,它是免疫抑制、移植以及癌症或COVID-19治疗患者侵袭性和系统性肺曲霉病的主要病因。我们用微量稀释法对几种N-烷基化ICAN以及1,5-萘二异氰酸酯(DIN)针对烟曲霉菌株进行了测试。结果显示,二异氰酸酯(DIN)最有效,最低抑菌浓度(MIC)值低至0.6 µg/mL(3.4 µM);然而,其实际应用受到其水溶性差的限制,这需要通过适当的制剂来克服。其他烷基化衍生物也具有体外和体内抗烟曲霉作用。对于动物实验,选择了第二有效的衍生物1-N,N-二甲基氨基-5-异氰基萘(DIMICAN,MIC:7-8 µg/mL,36-41 µM),对小鼠进行了毒性测试,然后在中性粒细胞减少性曲霉病小鼠模型中测试了DIMICAN的抗真菌效果。与著名的抗真菌药物两性霉素B(AMB)相比,DIMICAN在体内的抗真菌效果要好得多(八天后生存率分别为40%和90%),表明其作为临床候选药物的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8903/9605569/2ff9ab87ee25/jof-08-00985-g001.jpg

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