Yadav Krishna K, Nimonkar Yogesh, Green Stefan J, Dewala Sahabram, Dhanorkar Manikprabhu N, Sharma Rohit, Rale Vinay R, Prakash Om
National Centre for Microbial Resource (NCMR), National Centre for Cell Science (NCCS), Pune, Maharashtra 411007, India.
Symbiosis Centre for Waste Resource Management (SCWRM), Symbiosis International, (Deemed University), Lavale, Pune 412115, India.
iScience. 2023 Oct 24;26(11):108304. doi: 10.1016/j.isci.2023.108304. eCollection 2023 Nov 17.
Although severe cases of invasive mycoses of different hypoxic and anoxic body parts have been reported, growth and drug susceptibility of fungal pathogens under anaerobic conditions remains understudied. The current study evaluated anaerobic growth potential and drug susceptibility of environmental isolates under aerobic and anaerobic conditions. All tested strains showed equivalent growth and higher sensitivity to tested antifungal drugs under anaerobic conditions with lower minimum inhibitory concentration (MIC) as compared to aerobic conditions. Antifungal azoles were effective against isolates under both aerobic and anaerobic conditions. Most strains were resistant to antifungal echinocandins and polyenes under aerobic conditions but exhibited sensitivity under anaerobic conditions. This study provides evidence that resistance of to antifungal drugs varies with oxygen concentration and availability and suggests re-evaluating clinical breakpoints for antifungal compounds to treat invasive fungal infections more effectively.
尽管已有报道不同缺氧和无氧身体部位发生侵袭性真菌病的严重病例,但真菌病原体在厌氧条件下的生长和药敏性仍研究不足。本研究评估了环境分离株在需氧和厌氧条件下的厌氧生长潜力和药敏性。所有测试菌株在厌氧条件下均表现出同等生长情况,且与需氧条件相比,对测试抗真菌药物的敏感性更高,最低抑菌浓度(MIC)更低。抗真菌唑类药物在需氧和厌氧条件下均对分离株有效。大多数菌株在需氧条件下对抗真菌棘白菌素和多烯类耐药,但在厌氧条件下表现出敏感性。本研究提供了证据表明对抗真菌药物的耐药性随氧气浓度和可利用性而变化,并建议重新评估抗真菌化合物的临床断点,以更有效地治疗侵袭性真菌感染。