Koselny Kristy, Green Julianne, DiDone Louis, Halterman Justin P, Fothergill Annette W, Wiederhold Nathan P, Patterson Thomas F, Cushion Melanie T, Rappelye Chad, Wellington Melanie, Krysan Damian J
Department of Pediatrics, University of Rochester School of Medicine and Dentistry, Rochester, New York, USA.
Department of Pathology, University of Texas Health Science Center at San Antonio, San Antonio, Texas, USA.
Antimicrob Agents Chemother. 2016 Nov 21;60(12):7115-7127. doi: 10.1128/AAC.01061-16. Print 2016 Dec.
Only one new class of antifungal drugs has been introduced into clinical practice in the last 30 years, and thus the identification of small molecules with novel mechanisms of action is an important goal of current anti-infective research. Here, we describe the characterization of the spectrum of in vitro activity and in vivo activity of AR-12, a celecoxib derivative which has been tested in a phase I clinical trial as an anticancer agent. AR-12 inhibits fungal acetyl coenzyme A (acetyl-CoA) synthetase in vitro and is fungicidal at concentrations similar to those achieved in human plasma. AR-12 has a broad spectrum of activity, including activity against yeasts (e.g., Candida albicans, non-albicans Candida spp., Cryptococcus neoformans), molds (e.g., Fusarium, Mucor), and dimorphic fungi (Blastomyces, Histoplasma, and Coccidioides) with MICs of 2 to 4 μg/ml. AR-12 is also active against azole- and echinocandin-resistant Candida isolates, and subinhibitory AR-12 concentrations increase the susceptibility of fluconazole- and echinocandin-resistant Candida isolates. Finally, AR-12 also increases the activity of fluconazole in a murine model of cryptococcosis. Taken together, these data indicate that AR-12 represents a promising class of small molecules with broad-spectrum antifungal activity.
在过去30年里,仅有一类新型抗真菌药物被应用于临床实践,因此,鉴定具有新型作用机制的小分子是当前抗感染研究的一个重要目标。在此,我们描述了AR-12的体外活性谱和体内活性的特征,AR-12是一种塞来昔布衍生物,已作为抗癌药物进行了I期临床试验。AR-12在体外抑制真菌乙酰辅酶A(acetyl-CoA)合成酶,并且在与人体血浆中达到的浓度相似的浓度下具有杀菌作用。AR-12具有广泛的活性谱,包括对酵母(如白色念珠菌、非白色念珠菌、新型隐球菌)、霉菌(如镰刀菌、毛霉)和双相真菌(芽生菌、组织胞浆菌、球孢子菌)的活性,其最低抑菌浓度(MIC)为2至4μg/ml。AR-12对唑类和棘白菌素耐药的念珠菌分离株也有活性,亚抑菌浓度的AR-12可增加氟康唑和棘白菌素耐药的念珠菌分离株的敏感性。最后,在隐球菌病小鼠模型中,AR-12还增强了氟康唑的活性。综上所述,这些数据表明AR-12代表了一类具有广谱抗真菌活性的有前景的小分子。