Analysis of virulence factors in extracellular vesicles secreted by Naegleria fowleri.

IF 1.8 3区 医学 Q2 PARASITOLOGY Parasitology Research Pub Date : 2024-10-21 DOI:10.1007/s00436-024-08378-9
Itzel Berenice Rodríguez-Mera, Saúl Rojas-Hernández, Karla Alejandra Barrón-Graciano, María Maricela Carrasco-Yépez
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Abstract

Naegleria fowleri is the etiological agent of primary amebic meningoencephalitis (PAM), a rapidly progressive acute and fulminant infection that affects the central nervous system, particularly of children and young adults, which has a mortality rate greater than 95%, and its symptomatologic similarity with other meningitis caused by virus or bacteria makes it difficult to make a quick and timely diagnosis that prevents the progression of the infection. It is necessary to know the antigenic determinants as well as the pathogenicity mechanisms of this amoeba to implement strategies that allow for better antiamoebic therapeutic and diagnostic targets that directly impact the health sector. Therefore, the aim of this work was to analyze some virulence factors as part of extracellular vesicle (EV) cargo secreted by N. fowleri. The EV secretion to the extracellular medium was evaluated in trophozoites fixed and incubated with anti-N. fowleri antibody while molecular identification of EV cargo was performed by SDS-PAGE, Western blot, and RT-PCR. Our results showed that N. fowleri secretes a wide variety of vesicle sizes ranging from 0.2 to > 2 μm, and these EVs were recognized by antibodies anti-Naegleropore B, anti-19 kDa polypeptide band, anti-membrane protein Mp2CL5, anti-protease cathepsin B, and anti-actin. Furthermore, these vesicles were localized in the trophozoites cytoplasm or secreted into the extracellular medium. Specifically in relation to small vesicles, our purified exosomes were recognized by CD63 and Hsp70 markers, along with the previously mentioned proteins. RT-PCR analysis was made through the isolation of EVs from N. fowleri trophozoite culture by concentration, filtration, and ultracentrifugation. Interestingly, we obtained PCR products for Nfa1, NPB, Mp2CL5, and CatB genes as part of exosomes cargo. This suggests that the molecules identified in this work could play an important role in communication as well as in infectious processes caused by this amoeba. Therefore, the study and characterization of the pathogenicity mechanisms, as well as the virulence factors released by N. fowleri remains a key point to provide valuable information for the development of therapeutic treatments, vaccine design, or biomarkers for a timely diagnosis against infections caused by protozoa.

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分析霍乱弧菌分泌的胞外囊泡中的致病因子。
原发性阿米巴脑膜炎(PAM)的病原体是鲍勒氏阿米巴原虫(Naegleria fowleri),这是一种影响中枢神经系统(尤其是儿童和青壮年)的快速进展性急性和暴发性感染,死亡率超过 95%,其症状与其他由病毒或细菌引起的脑膜炎相似,因此很难做出快速及时的诊断以防止感染恶化。有必要了解这种阿米巴原虫的抗原决定因素和致病机制,以实施更好的抗阿米巴治疗和诊断策略,从而直接影响卫生部门。因此,这项工作的目的是分析作为 N. fowleri 分泌的胞外囊泡 (EV) 货物一部分的一些毒力因子。在用抗福氏菌抗体固定和培养的滋养体中,对EV分泌到细胞外培养基的情况进行了评估,同时通过SDS-PAGE、Western印迹和RT-PCR对EV货物进行了分子鉴定。我们的研究结果表明,N. fowleri能分泌多种大小不等的囊泡,从0.2到> 2 μm不等,抗Naegleropore B抗体、抗19 kDa多肽带抗体、抗膜蛋白Mp2CL5抗体、抗蛋白酶Cathepsin B抗体和抗肌动蛋白抗体都能识别这些EV。此外,这些囊泡定位于滋养体细胞质中或分泌到细胞外培养基中。具体到小囊泡,我们纯化的外泌体可被CD63和Hsp70标记物以及前面提到的蛋白质识别。通过浓缩、过滤和超速离心,我们从福氏滋养体培养液中分离出了外泌体,并对其进行了RT-PCR分析。有趣的是,我们获得了作为外泌体货物一部分的 Nfa1、NPB、Mp2CL5 和 CatB 基因的 PCR 产物。这表明,这项工作中发现的分子可能在该变形虫引起的交流和感染过程中发挥重要作用。因此,研究和鉴定福氏阿米巴虫的致病机制和释放的毒力因子仍然是一个关键点,可为开发治疗方法、疫苗设计或生物标记提供有价值的信息,以便及时诊断原生动物引起的感染。
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来源期刊
Parasitology Research
Parasitology Research 医学-寄生虫学
CiteScore
4.10
自引率
5.00%
发文量
346
审稿时长
6 months
期刊介绍: The journal Parasitology Research covers the latest developments in parasitology across a variety of disciplines, including biology, medicine and veterinary medicine. Among many topics discussed are chemotherapy and control of parasitic disease, and the relationship of host and parasite. Other coverage includes: Protozoology, Helminthology, Entomology; Morphology (incl. Pathomorphology, Ultrastructure); Biochemistry, Physiology including Pathophysiology; Parasite-Host-Relationships including Immunology and Host Specificity; life history, ecology and epidemiology; and Diagnosis, Chemotherapy and Control of Parasitic Diseases.
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