Antifungal potential of the new copper(II)-theophylline/1,10-phenanthroline complex against drug-resistant Candida species.

IF 4.1 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Biometals Pub Date : 2024-04-01 Epub Date: 2023-11-02 DOI:10.1007/s10534-023-00549-y
Heloisa F Frota, Carolline M A Lorentino, Pedro F Barbosa, Lívia S Ramos, Iuri C Barcellos, Lucas Giovanini, Lucieri O P Souza, Simone S C Oliveira, Olufunso O Abosede, Adeniyi S Ogunlaja, Matheus M Pereira, Marta H Branquinha, André L S Santos
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Abstract

Candida spp. are the commonest fungal pathogens worldwide. Antifungal resistance is a problem that has prompted the discovery of novel anti-Candida drugs. Herein, 25 compounds, some of them containing copper(II), cobalt(II) and manganese(II) ions, were initially evaluated for inhibiting the growth of reference strains of Candida albicans and Candida tropicalis. Eight (32%) of the compounds inhibited the proliferation of these yeasts, displaying minimum inhibitory concentrations (MICs) ranging from 31.25 to 250 μg/mL and minimum fungicidal concentration (MFCs) from 62.5 to 250 μg/mL. Drug-likeness/pharmacokinetic calculated by SwissADME indicated that the 8 selected compounds were suitable for use as topical drugs. The complex CTP, Cu(theo)2phen(H2O).5H2O (theo = theophylline; phen = 1,10-phenanthroline), was chosen for further testing against 10 medically relevant Candida species that were resistant to fluconazole/amphotericin B. CTP demonstrated a broad spectrum of action, inhibiting the growth of all 20 clinical fungal isolates, with MICs from 7.81 to 62.5 μg/mL and MFCs from 15.62 to 62.5 μg/mL. Conversely, CTP did not cause lysis in erythrocytes. The toxicity of CTP was evaluated in vivo using Galleria mellonella and Tenebrio molitor. CTP had no or low levels of toxicity at doses ranging from 31.25 to 250 μg/mL for 5 days. After 24 h of treatment, G. mellonella larvae exhibited high survival rates even when exposed to high doses of CTP (600 μg/mL), with the 50% cytotoxic concentration calculated as 776.2 μg/mL, generating selectivity indexes varying from 12.4 to 99.4 depending on each Candida species. These findings suggest that CTP could serve as a potential drug to treat infections caused by Candida species resistant to clinically available antifungals.

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新型铜(II)-茶碱/1,10-菲咯啉复合物对耐药念珠菌的抗真菌潜力。
念珠菌是世界上最常见的真菌病原体。抗真菌耐药性是一个促使发现新型抗念珠菌药物的问题。本文初步评估了25种化合物,其中一些化合物含有铜(II)、钴(II)和锰(II)离子,可抑制白色念珠菌和热带念珠菌参考菌株的生长。八种(32%)化合物抑制了这些酵母的增殖,显示出31.25至250μg/mL的最小抑制浓度(MIC)和62.5至250μg/mL的最小杀真菌浓度(MFCs)。通过SwissADME计算的药物相似性/药代动力学表明,所选的8种化合物适合用作局部药物。配合物CTP,Cu(theo)2phen(H2O).5H2O(theo = 茶碱phen = 选择1,10-菲罗啉)对10种对氟康唑/两性霉素B具有耐药性的医学相关念珠菌进行进一步测试。CTP表现出广谱作用,抑制所有20种临床真菌分离株的生长,MIC为7.81至62.5μg/mL,MFCs为15.62至62.5µg/mL。相反,CTP不会导致红细胞裂解。用香甲藻和黄粉虫对CTP的体内毒性进行了评价。CTP在31.25至250μg/mL的剂量范围内连续5天无毒性或毒性水平低。处理24小时后,即使暴露于高剂量的CTP(600μG/mL),也能显示出较高的存活率,50%的细胞毒性浓度计算为776.2μG/mL,根据每种念珠菌产生的选择性指数在12.4至99.4之间。这些发现表明,CTP可以作为一种潜在的药物来治疗对临床可用抗真菌药物具有耐药性的念珠菌引起的感染。
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来源期刊
Biometals
Biometals 生物-生化与分子生物学
CiteScore
5.90
自引率
8.60%
发文量
111
审稿时长
3 months
期刊介绍: BioMetals is the only established journal to feature the important role of metal ions in chemistry, biology, biochemistry, environmental science, and medicine. BioMetals is an international, multidisciplinary journal singularly devoted to the rapid publication of the fundamental advances of both basic and applied research in this field. BioMetals offers a forum for innovative research and clinical results on the structure and function of: - metal ions - metal chelates, - siderophores, - metal-containing proteins - biominerals in all biosystems. - BioMetals rapidly publishes original articles and reviews. BioMetals is a journal for metals researchers who practice in medicine, biochemistry, pharmacology, toxicology, microbiology, cell biology, chemistry, and plant physiology who are based academic, industrial and government laboratories.
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