Banda-Flores Iván A, Torres-Tirado David, Mora-Montes Héctor M, Pérez-Flores Gabriela, Pérez-García Luis A
Facultad de Estudios Profesionales Zona Huasteca, Universidad Autónoma de San Luis Potosí, Romualdo del Campo 501, Fracc. Rafael Curiel, Ciudad Valles 79060, San Luis Potosi, Mexico.
Departamento de Biología, División de Ciencias Naturales y Exactas, Campus Guanajuato, Universidad de Guanajuato, Noria Alta s/n, Col. Noria Alta, Guanajuato 36050, Guanajuato, Mexico.
J Fungi (Basel). 2025 Apr 1;11(4):271. doi: 10.3390/jof11040271.
The species cell wall plays a pivotal role as a structural and functional barrier against external aggressors and as an intermediary in host-pathogen interactions. species exhibit unique adaptations in their cell wall composition, with varying proportions of chitin, mannans, and β-glucans influenced by the environmental conditions and the morphological states. These components not only maintain cellular viability under osmotic, thermal, and chemical stress, but also serve as the key targets for novel antifungal strategies. MAPK signaling pathways, like the cell wall integrity pathway and the high-osmolarity glycerol pathway, play a crucial role in responding to cell wall stressors. Due to the rise of antifungal resistance and its clinical challenges, there is a need to identify new antifungal targets. This review discusses the recent advances in understanding the mechanisms underlying cell wall integrity, their impact on antifungal resistance and virulence, and their potential as therapeutic targets of , , and .
该物种的细胞壁作为抵御外部侵害的结构和功能屏障以及宿主 - 病原体相互作用的中介发挥着关键作用。该物种在其细胞壁组成上表现出独特的适应性,几丁质、甘露聚糖和β - 葡聚糖的比例因环境条件和形态状态而异。这些成分不仅在渗透、热和化学应激下维持细胞活力,而且还是新型抗真菌策略的关键靶点。丝裂原活化蛋白激酶(MAPK)信号通路,如细胞壁完整性通路和高渗甘油通路,在应对细胞壁应激源方面起着至关重要的作用。由于抗真菌耐药性的增加及其临床挑战,需要确定新的抗真菌靶点。本综述讨论了在理解细胞壁完整性潜在机制、它们对抗真菌耐药性和毒力的影响以及它们作为[具体物种1]、[具体物种2]和[具体物种3]治疗靶点的潜力方面的最新进展。