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意大利非妊娠成年患者脑膜炎的首例报告。

First Report of Meningitis in a Non-Pregnant Adult in Italy.

作者信息

Borriello Giorgia, Fusco Giovanna, Greco Francesca, Mauro Maria Vittoria, Barca Lorella, Limone Antonio, Garzi Cosentino Maria, Campione Agata, Rinaldi Antonio, Dodaro Saveria, De Carlo Esterina, Greco Sonia, Vangeli Valeria, Paradiso Rubina, Mastroianni Antonio

机构信息

Experimental Zooprophylactic Institute of Southern Italy, 80055 Portici, Italy.

Microbiology & Virology Unit, "Annunziata" Hub Hospital, 87100 Cosenza, Italy.

出版信息

Microorganisms. 2025 Apr 24;13(5):978. doi: 10.3390/microorganisms13050978.

Abstract

This study, for the first time in Italy, analyses by WGS a strain isolated from a non-pregnant adult affected by Meningitis and without common risk factors. The strain was classified as a serotype II (SS2), sequence type ST569. Molecular characterization evidenced the presence of resistance genes to tetracycline and macrolide ((M) and (A)) and several virulence genes coding for adhesion and immune evasion factors (, family, family, , family, family and ), toxins (cfa/, family), pro-inflammatory factors (), and two homologous genes that contributed to bacterial escape from the host immune system (, ). SNP analysis showed 18 different alleles, with 9 missense SNP mutations related to genes involved in cellular metabolism (, , , and ), virulence ( and ) and antimicrobial resistance ( and ). SNPs in and genes might reduce susceptibility to drugs. The SNP analysis highlighted the presence of mutations conferring pathogenicity to the strain. The evidence in this study could explain the development of Meningitis in a healthy patient. This case highlights the importance of using molecular methods to characterize the complete genome of a bacterial species that could seriously affect human health.

摘要

本研究在意大利首次通过全基因组测序(WGS)分析了从一名无常见危险因素的非妊娠成年脑膜炎患者分离出的菌株。该菌株被分类为血清型II(SS2),序列类型为ST569。分子特征表明该菌株存在对四环素和大环内酯类((M)和(A))的耐药基因以及几个编码粘附和免疫逃避因子(、家族、家族、、家族、家族和)、毒素(cfa/、家族)、促炎因子()的毒力基因,以及两个有助于细菌逃避宿主免疫系统的同源基因(、)。单核苷酸多态性(SNP)分析显示有18个不同的等位基因,其中9个错义SNP突变与参与细胞代谢(、、、和)、毒力(和)及抗菌耐药性(和)的基因有关。和基因中的SNP可能会降低对药物的敏感性。SNP分析突出了赋予该菌株致病性的突变的存在。本研究中的证据可以解释一名健康患者患脑膜炎的原因。该病例突出了使用分子方法对可能严重影响人类健康的细菌物种的完整基因组进行表征的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc86/12114074/2f997c324ba1/microorganisms-13-00978-g001.jpg

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