therapeutic action: amphotericin B antifungal activity

Multi-omics Analysis of Experimentally Evolved Candida auris Isolates Reveals Modulation of Sterols, Sphingolipids, and Oxidative Stress in Acquired Amphotericin B Resistance

Researchers studied how the fungus Candida auris develops resistance to amphotericin B, an important antifungal drug. By evolving two laboratory strains of this fungus under drug pressure, they discovered two different ways the fungus can become resistant: one through stress management genes, the other through changes in its protective lipids. These findings help explain why some clinical infections with this dangerous fungus are so hard to treat.

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Saksenaea oblongispora Rhinosinusitis in Advanced HIV: A Rare and Lethal Mucormycosis

A 32-year-old man with advanced HIV developed a severe fungal infection of his sinuses caused by a rare fungus called Saksenaea oblongispora, which typically doesn’t affect people with HIV. The patient presented with severe facial swelling that rapidly worsened, and despite doctors identifying the fungus through biopsies and lab tests, he did not receive antifungal treatment or surgery before his condition became critical. This is the first case of this particular fungal infection documented in sub-Saharan Africa and in HIV patients, highlighting how dangerous this rare infection can be and how challenging it is to diagnose quickly enough to save lives.

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