Inácio Moisés Morais, Moreira André Luís Elias, Cruz-Leite Vanessa Rafaela Milhomem, Mattos Karine, Silva Lana O'Hara Souza, Venturini James, Ruiz Orville Hernandez, Ribeiro-Dias Fátima, Weber Simone Schneider, Soares Célia Maria de Almeida, Borges Clayton Luiz
Laboratory of Molecular Biology, Institute of Biological Sciences, Federal University of Goiás, Goiânia 74605-170, Brazil.
Estácio de Goiás University Center, Goiânia 74063-010, Brazil.
J Fungi (Basel). 2023 May 31;9(6):633. doi: 10.3390/jof9060633.
Fungal infections represent a serious global health problem, causing damage to health and the economy on the scale of millions. Although vaccines are the most effective therapeutic approach used to combat infectious agents, at the moment, no fungal vaccine has been approved for use in humans. However, the scientific community has been working hard to overcome this challenge. In this sense, we aim to describe here an update on the development of fungal vaccines and the progress of methodological and experimental immunotherapies against fungal infections. In addition, advances in immunoinformatic tools are described as an important aid by which to overcome the difficulty of achieving success in fungal vaccine development. In silico approaches are great options for the most important and difficult questions regarding the attainment of an efficient fungal vaccine. Here, we suggest how bioinformatic tools could contribute, considering the main challenges, to an effective fungal vaccine.
真菌感染是一个严重的全球健康问题,对健康和经济造成了数百万规模的损害。尽管疫苗是对抗感染因子最有效的治疗方法,但目前尚无真菌疫苗被批准用于人类。然而,科学界一直在努力克服这一挑战。从这个意义上讲,我们旨在在此描述真菌疫苗开发的最新进展以及针对真菌感染的方法学和实验性免疫疗法的进展。此外,免疫信息学工具的进展被描述为克服真菌疫苗开发取得成功困难的重要辅助手段。计算机方法是解决高效真菌疫苗最重要和最困难问题的绝佳选择。在此,考虑到主要挑战,我们建议生物信息学工具如何为有效的真菌疫苗做出贡献。