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分子方法在疫苗时代进行流行病学监测的血清分型的应用及挑战。

The Molecular Approaches and Challenges of Serotyping for Epidemiological Surveillance in the Vaccine Era.

机构信息

1Department of Biomedical Sciences, Faculty of Medicine and Health Sciences, Universiti Putra Malaysia, Serdang, Malaysia.

2School of Biology, Faculty of Applied Sciences, Universiti Teknologi MARA, Kuala Pilah, Malaysia.

出版信息

Pol J Microbiol. 2023 Jun 14;72(2):103-115. doi: 10.33073/pjm-2023-023. eCollection 2023 Jun 1.

Abstract

(pneumococcus) belongs to the Gram-positive cocci. This bacterium typically colonizes the nasopharyngeal region of healthy individuals. It has a distinct polysaccharide capsule - a virulence factor allowing the bacteria to elude the immune defense mechanisms. Consequently, it might trigger aggressive conditions like septicemia and meningitis in immunocompromised or older individuals. Moreover, children below five years of age are at risk of morbidity and mortality. Studies have found 101 capsular serotypes, of which several correlate with clinical and carriage isolates with distinct disease aggressiveness. Introducing pneumococcal conjugate vaccines (PCV) targets the most common disease-associated serotypes. Nevertheless, vaccine selection pressure leads to replacing the formerly dominant vaccine serotypes (VTs) by non-vaccine types (NVTs). Therefore, serotyping must be conducted for epidemiological surveillance and vaccine assessment. Serotyping can be performed using numerous techniques, either by the conventional antisera-based (Quellung and latex agglutination) or molecular-based approaches (sequetyping, multiplex PCR, real-time PCR, and PCR-RFLP). A cost-effective and practical approach must be used to enhance serotyping accuracy to monitor the prevalence of VTs and NVTs. Therefore, dependable pneumococcal serotyping techniques are essential to precisely monitor virulent lineages, NVT emergence, and genetic associations of isolates. This review discusses the principles, associated benefits, and drawbacks of the respective available conventional and molecular approaches, and potentially the whole genome sequencing (WGS) to be directed for future exploration.

摘要

(肺炎球菌)属于革兰氏阳性球菌。这种细菌通常定植于健康个体的鼻咽部。它具有独特的多糖荚膜 - 一种使细菌逃避免疫防御机制的毒力因子。因此,它可能在免疫功能低下或老年人中引发败血症和脑膜炎等侵袭性疾病。此外,五岁以下的儿童有发病和死亡的风险。研究发现了 101 种荚膜血清型,其中几种与临床和带菌分离株相关,具有不同的疾病侵袭性。引入肺炎球菌结合疫苗(PCV)针对最常见的与疾病相关的血清型。然而,疫苗选择压力导致非疫苗型(NVT)取代以前占主导地位的疫苗血清型(VTs)。因此,必须进行血清分型以进行流行病学监测和疫苗评估。血清分型可以使用多种技术进行,包括传统的基于抗血清的(Quellung 和乳胶凝集)或基于分子的方法(测序分型、多重 PCR、实时 PCR 和 PCR-RFLP)。为了提高血清分型的准确性以监测 VTs 和 NVTs 的流行率,必须采用经济有效的实用方法。因此,可靠的肺炎球菌血清分型技术对于精确监测毒力谱系、NVT 出现以及分离株的遗传关联至关重要。这篇综述讨论了各自可用的传统和分子方法的原理、相关益处和缺点,以及可能针对未来探索的全基因组测序(WGS)。

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