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真菌疫苗

Fungal vaccines.

作者信息

Pattison H T, Millar B C, Moore J E

机构信息

School of Medicine, Dentistry and Biomedical Sciences, the Wellcome-Wolfson Institute for Experimental Medicine, Queen's University, Belfast, Northern Ireland, UK.

Laboratory for Disinfection and Pathogen Elimination Studies, Northern Ireland Public Health Laboratory, Nightingale (Belfast City) Hospital, Belfast, Northern Ireland, UK.

出版信息

Br J Biomed Sci. 2021 Oct;78(4):167-176. doi: 10.1080/09674845.2021.1907953. Epub 2021 Jun 2.

Abstract

Invasive fungal disease continues to be a cause of significant life-threatening morbidity and mortality in humans, particularly in those with a diminished immune system, such as with haematological malignancies. The mainstay of treating such life-threatening fungal infection has been antifungal drugs, including azoles, echinocandins and macrocyclic polyenes. However, like antibiotic resistance, antifungal resistance is beginning to emerge, potentially jeopardizing the effectiveness of these molecules in the treatment of fungal disease. One strategy to avoid this is the development of fungal vaccines. However, the inability to provoke a sufficient immune response in the most vulnerable immunocompromised groups has hindered translation from bench to bedside. This review will assess the latest available data and will investigate potential antigens and feasible vaccine techniques, particularly for vaccination of high-risk groups, including immunocompromised and immunosuppressed populations.

摘要

侵袭性真菌病仍然是导致人类出现严重危及生命的发病和死亡的原因,特别是在免疫系统受损的人群中,如血液系统恶性肿瘤患者。治疗这种危及生命的真菌感染的主要手段一直是抗真菌药物,包括唑类、棘白菌素类和大环多烯类。然而,与抗生素耐药性一样,抗真菌耐药性也开始出现,这可能会危及这些药物分子治疗真菌病的有效性。避免这种情况的一种策略是开发真菌疫苗。然而,在最脆弱的免疫功能低下群体中无法引发足够的免疫反应阻碍了从实验室到临床的转化。本综述将评估现有最新数据,并研究潜在的抗原和可行的疫苗技术,特别是针对高危人群的疫苗接种,包括免疫功能低下和免疫抑制人群。

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