Division of Biology, Kansas State University, Manhattan, Kansas, United States of America ; Institut Pasteur, Unité Biologie et Pathogénicité Fongiques, Département Génomes et Génétique, Paris, France ; INRA, USC2019, Paris, France.
PLoS One. 2013 Sep 11;8(9):e74189. doi: 10.1371/journal.pone.0074189. eCollection 2013.
Candida albicans is an opportunistic and polymorphic fungal pathogen that causes mucosal, disseminated and invasive infections in humans. Transition from the yeast form to the hyphal form is one of the key virulence factors in C. albicans contributing to macrophage evasion, tissue invasion and biofilm formation. Nontoxic small molecules that inhibit C. albicans yeast-to-hypha conversion and hyphal growth could represent a valuable source for understanding pathogenic fungal morphogenesis, identifying drug targets and serving as templates for the development of novel antifungal agents. Here, we have identified the triterpenoid saponin family of gymnemic acids (GAs) as inhibitor of C. albicans morphogenesis. GAs were isolated and purified from Gymnema sylvestre leaves, the Ayurvedic traditional medicinal plant used to treat diabetes. Purified GAs had no effect on the growth and viability of C. albicans yeast cells but inhibited its yeast-to-hypha conversion under several hypha-inducing conditions, including the presence of serum. Moreover, GAs promoted the conversion of C. albicans hyphae into yeast cells under hypha inducing conditions. They also inhibited conidial germination and hyphal growth of Aspergillus sp. Finally, GAs inhibited the formation of invasive hyphae from C. albicans-infected Caenorhabditis elegans worms and rescued them from killing by C. albicans. Hence, GAs could be useful for various antifungal applications due to their traditional use in herbal medicine.
白色念珠菌是一种机会性和多态性真菌病原体,可导致人类粘膜、播散性和侵袭性感染。从酵母形式向菌丝形式的转变是白色念珠菌的关键毒力因素之一,有助于其逃避巨噬细胞、组织侵袭和生物膜形成。抑制白色念珠菌酵母向菌丝转化和菌丝生长的无毒小分子可能是理解致病真菌形态发生、鉴定药物靶点和作为新型抗真菌药物开发模板的有价值来源。在这里,我们已经确定了三萜皂苷家族的匙羹藤酸(GA)是白色念珠菌形态发生的抑制剂。GA 从匙羹藤(Gymnema sylvestre)叶中分离和纯化,该植物是用于治疗糖尿病的传统药用植物。纯化的 GA 对白色念珠菌酵母细胞的生长和活力没有影响,但在几种诱导菌丝形成的条件下抑制其酵母向菌丝的转化,包括血清存在的情况下。此外,GA 在诱导菌丝形成的条件下促进白色念珠菌菌丝向酵母细胞的转化。它们还抑制了曲霉属分生孢子的萌发和菌丝生长。最后,GA 抑制了白色念珠菌感染秀丽隐杆线虫形成侵袭性菌丝,并使线虫免受白色念珠菌的杀伤。因此,由于其在草药中的传统用途,GA 可能对各种抗真菌应用有用。