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Novel Strategies for Malaria Vaccine Design.疟疾疫苗设计的新策略。
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2
A mosquito salivary gland protein partially inhibits Plasmodium sporozoite cell traversal and transmission.一种疟蚊唾液腺蛋白部分抑制疟原虫孢子穿透和传播。
Nat Commun. 2018 Jul 25;9(1):2908. doi: 10.1038/s41467-018-05374-3.
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Host-parasite interactions and ecology of the malaria parasite-a bioinformatics approach.寄生虫与宿主的相互作用及疟原虫生态学:一种生物信息学方法。
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Advances in malaria vaccine development: report from the 2017 malaria vaccine symposium.疟疾疫苗研发进展:2017年疟疾疫苗研讨会报告
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Engineered Livers for Infectious Diseases.用于传染病的工程肝脏
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An in vitro assay to measure antibody-mediated inhibition of P. berghei sporozoite invasion against P. falciparum antigens.一种用于测量抗疟原虫孢子入侵的抗体介导抑制作用的体外检测方法,针对疟原虫抗原。
Sci Rep. 2017 Dec 5;7(1):17011. doi: 10.1038/s41598-017-17274-5.
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In silico design of knowledge-based Plasmodium falciparum epitope ensemble vaccines.基于知识的恶性疟原虫表位组合疫苗的计算机辅助设计
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Profiling MHC II immunopeptidome of blood-stage malaria reveals that cDC1 control the functionality of parasite-specific CD4 T cells.分析血期疟原虫 MHC II 免疫肽组揭示 cDC1 控制寄生虫特异性 CD4 T 细胞的功能。
EMBO Mol Med. 2017 Nov;9(11):1605-1621. doi: 10.15252/emmm.201708123.
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当前红细胞前期疟疾疫苗候选抗原鉴定中的挑战。

Current Challenges in the Identification of Pre-Erythrocytic Malaria Vaccine Candidate Antigens.

机构信息

The Jenner Institute, University of Oxford, Oxford, United Kingdom.

出版信息

Front Immunol. 2020 Feb 21;11:190. doi: 10.3389/fimmu.2020.00190. eCollection 2020.

DOI:10.3389/fimmu.2020.00190
PMID:32153565
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7046804/
Abstract

spp.-infected mosquitos inject sporozoites into the skin of a mammalian host during a blood meal. These enter the host's circulatory system and establish an infection in the liver. After a silent metamorphosis, merozoites invade the blood leading to the symptomatic and transmissible stages of malaria. The silent pre-erythrocytic malaria stage represents a bottleneck in the disease which is ideal to block progression to clinical malaria, through chemotherapeutic and immunoprophylactic interventions. RTS,S/AS01, the only malaria vaccine close to licensure, although with poor efficacy, blocks the sporozoite invasion mainly through the action of antibodies against the CSP protein, a major component of the pellicle of the sporozoite. Strikingly, sterile protection against malaria can be obtained through immunization with radiation-attenuated sporozoites, genetically attenuated sporozoites or through chemoprophylaxis with infectious sporozoites in animals and humans, but the deployability of sporozoite-based live vaccines pose tremendous challenges. The protection induced by sporozoites occurs in the pre-erythrocytic stages and is mediated mainly by antibodies against the sporozoite and CD8 T cells against peptides presented by MHC class I molecules in infected hepatocytes. Thus, the identification of malaria antigens expressed in the sporozoite and liver-stage may provide new vaccine candidates to be included, alone or in combination, as recombinant protein-based, virus-like particles or sub-unit virally-vectored vaccines. Here I review the efforts being made to identify antigens expressed during liver-stage with focus on the development of parasite, hepatocyte, mouse models, and resulting rate of infection in order to identify new vaccine candidates and to improve the efficacy of the current vaccines. Finally, I propose new approaches for the identification of liver-stage antigens based on immunopeptidomics.

摘要

感染了疟原虫的蚊子在吸血时将子孢子注入哺乳动物宿主的皮肤中。这些子孢子进入宿主的循环系统,并在肝脏中建立感染。在无声的变态之后,裂殖子侵入血液,导致疟疾的有症状和可传播阶段。无声的红细胞前期疟疾阶段是疾病的一个瓶颈,通过化学治疗和免疫预防干预,是阻止进展为临床疟疾的理想选择。RTS,S/AS01 是唯一接近许可的疟疾疫苗,尽管疗效不佳,但主要通过针对 CSP 蛋白的抗体作用来阻止子孢子的入侵,CSP 蛋白是子孢子包膜的主要成分。引人注目的是,通过用辐射减毒的子孢子、遗传减毒的子孢子或用感染性子孢子进行化学预防来免疫,在动物和人类中可以获得针对疟疾的无菌保护,但基于子孢子的活疫苗的部署仍然面临巨大挑战。子孢子诱导的保护发生在红细胞前期阶段,主要由针对子孢子的抗体和针对感染肝细胞中 MHC Ⅰ类分子呈递的肽的 CD8 T 细胞介导。因此,鉴定在子孢子和肝期表达的疟疾抗原可能提供新的疫苗候选物,单独或组合使用,作为基于重组蛋白的、病毒样颗粒或亚单位病毒载体疫苗。在这里,我回顾了鉴定肝期表达抗原的努力,重点是寄生虫、肝细胞、小鼠模型的发展,以及由此导致的感染率,以鉴定新的疫苗候选物,并提高现有疫苗的疗效。最后,我提出了基于免疫肽组学鉴定肝期抗原的新方法。