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1.
Mol Divers ; 26(6): 3399-3409, 2022 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-35143033

RESUMO

The rise of antimicrobial-resistant phenotypes and the spread of the global pandemic of COVID-19 are worsening the outcomes of hospitalized patients for invasive fungal infections. Among them, candidiases are seriously worrying, especially since the currently available drug armamentarium is extremely limited. We recently reported a new class of macrocyclic amidinoureas bearing a guanidino tail as promising antifungal agents. Herein, we present the design and synthesis of a focused library of seven derivatives of macrocyclic amidinoureas, bearing a second phenyl ring fused with the core. Biological activity evaluation shows an interesting antifungal profile for some compounds, resulting to be active on a large panel of Candida spp. and C. neoformans. PAMPA experiments for representative compounds of the series revealed a low passive diffusion, suggesting a membrane-based mechanism of action or the involvement of active transport systems. Also, compounds were found not toxic at high concentrations, as assessed through MTT assays.


Assuntos
COVID-19 , Cryptococcus neoformans , Antifúngicos/farmacologia , Testes de Sensibilidade Microbiana , Candida
2.
Bioorg Med Chem Lett ; 27(15): 3332-3336, 2017 08 01.
Artigo em Inglês | MEDLINE | ID: mdl-28610983

RESUMO

In the last ten years, we identified and developed a new therapeutic class of antifungal agents, the macrocyclic amidinoureas. These compounds are active against several Candida species, including clinical isolates resistant to currently available antifungal drugs. The mode of action of these molecules is still unknown. In this work, we developed an in-silico target fishing procedure to identify a possible target for this class of compounds based on shape similarity, inverse docking procedure and consensus score rank-by-rank. Chitinase enzyme emerged as possible target. To confirm this hypothesis a novel macrocyclic derivative has been produced, specifically designed to increase the inhibition of the chitinase. Biological evaluation highlights a stronger enzymatic inhibition for the new derivative, while its antifungal activity drops probably because of pharmacokinetic issues. Collectively, our data suggest that chitinase represent at least one of the main target of macrocyclic amidinoureas.


Assuntos
Antifúngicos/farmacologia , Quitinases/antagonistas & inibidores , Desenho de Fármacos , Inibidores Enzimáticos/farmacologia , Trichoderma/efeitos dos fármacos , Antifúngicos/síntese química , Antifúngicos/química , Quitinases/metabolismo , Relação Dose-Resposta a Droga , Inibidores Enzimáticos/síntese química , Inibidores Enzimáticos/química , Testes de Sensibilidade Microbiana , Modelos Moleculares , Estrutura Molecular , Relação Estrutura-Atividade , Trichoderma/enzimologia
3.
Int J Antimicrob Agents ; 55(3): 105865, 2020 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-31866465

RESUMO

BACKGROUND: Candida species are one of the most common causes of nosocomial bloodstream infections among the opportunistic fungi. Extensive use of antifungal agents, most of which were launched on the market more than 20 years ago, led to the selection of drug-resistant or even multidrug-resistant fungi. We recently described a novel class of antifungal macrocyclic compounds with an amidinourea moiety that is highly active against azole-resistant Candida strains. OBJECTIVE: A compound from this family, BM1, was investigated in terms of in vitro activity against various Candida species, including C. auris isolates, interaction with the ABC transporter, CDR6, and in vivo distribution and safety. METHODS: In vitro assays (CYP inhibition, microsomal stability, permeability, spot assays) were used to collect chemical and biological data; animal models (rat) paired with LC-MS analysis were utilised to evaluate in vivo toxicology, pharmacokinetics, and distribution. RESULTS: The current research shows BM1 has a low in vivo toxicity profile, affinity for the renal system in rats, and good absorption, distribution, metabolism, and excretion (ADME). BM1 also has potent activity against azole-resistant fungal strains, including C. auris isolates and CDR6-overexpressing strains. CONCLUSIONS: The results confirmed low minimum inhibitory concentrations (MICs) against several Candida species, including preliminary data vs. C. auris. BM1 has good ADME and biochemical characteristics, is suitable and safe for daily administration and is particularly indicated for renal infections. These data indicate BM1 and its derivatives form a novel, promising antifungal class.


Assuntos
Antifúngicos/farmacologia , Candida/efeitos dos fármacos , Guanidina/análogos & derivados , Ureia/análogos & derivados , Animais , Antifúngicos/uso terapêutico , Azóis/farmacologia , Candidíase/tratamento farmacológico , Farmacorresistência Fúngica/efeitos dos fármacos , Guanidina/farmacologia , Guanidina/uso terapêutico , Testes de Sensibilidade Microbiana , Ratos , Ureia/farmacologia , Ureia/uso terapêutico
4.
J Med Chem ; 61(20): 9162-9176, 2018 10 25.
Artigo em Inglês | MEDLINE | ID: mdl-30265809

RESUMO

Nowadays, the increasing of multidrug-resistant pathogenic bacteria represents a serious threat to public health, and the lack of new antibiotics is becoming a global emergency. Therefore, research in antibacterial fields is urgently needed to expand the currently available arsenal of drugs. We have recently reported an alkyl-guanidine derivative (2), characterized by a symmetrical dimeric structure, as a good candidate for further developments, with a high antibacterial activity against both Gram-positive and Gram-negative strains. In this study, starting from its chemical scaffold, we synthesized a small library of analogues. Moreover, biological and in vitro pharmacokinetic characterizations were conducted on some selected derivatives, revealing notable properties: broad-spectrum profile, activity against resistant clinical isolates, and appreciable aqueous solubility. Interestingly, 2 seems neither to select for resistant strains nor to macroscopically alter the membranes, but further studies are required to determine the mode of action.


Assuntos
Antibacterianos/química , Antibacterianos/farmacologia , Guanidina/química , Guanidina/farmacologia , Alquilação , Antibacterianos/metabolismo , Células CACO-2 , Guanidina/metabolismo , Humanos , Testes de Sensibilidade Microbiana , Permeabilidade , Relação Estrutura-Atividade
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