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宏基因组学二代测序技术在感染性呼吸系统疾病病原体诊断中的应用进展
引用本文:王慧林,刘雪. 宏基因组学二代测序技术在感染性呼吸系统疾病病原体诊断中的应用进展[J]. 微生物与感染, 2021, 16(2): 117-122. DOI: 10.3969/j.isn.1673-6184.2021.02.007
作者姓名:王慧林  刘雪
作者单位:郑州市第三人民医院呼吸与危重症医学科,河南郑州450000
摘    要:呼吸系统感染发病率高,早期明确感染的病原体是提高治愈率、降低死亡率的关键.目前病原体培养仍是临床病原学诊断的主要方式,但其敏感性低、耗时较长,不利于早期诊断和治疗.宏基因组学测序技术具有覆盖病原体广泛、快速、无偏倚、无需特异性扩增的优势,在鉴定罕见、混合感染、免疫抑制患者感染和常规检测方法难以检测到病原体的诊断中有较高...

关 键 词:宏基因组学二代测序技术  呼吸系统  感染

Application progress of metagenomics technology based next-generation sequencing platform in the diagnosis of infectious respiratory diseases pathogens
WANG Huilin,LIU Xue. Application progress of metagenomics technology based next-generation sequencing platform in the diagnosis of infectious respiratory diseases pathogens[J]. Journal of Microbes and Infection, 2021, 16(2): 117-122. DOI: 10.3969/j.isn.1673-6184.2021.02.007
Authors:WANG Huilin  LIU Xue
Affiliation:Department of Respiratory and Critical Care Medicine, The Third People’s Hospital of Zhengzhou, Zhengzhou 450000, Henan province, China
Abstract:The incidence of respiratory infections is high, and early identification of infectious pathogens is the key to improving clinical results. Metagenomics next-generation sequencing (mNGS) has the advantages of being whole spectrum, time saving, no specific amplification of pathogens, and has high clinical application value in the identification of rare infections, mixed infections, immunosuppressive patient infection and the diagnosis of pathogens that are difficult to be detected by conventional methods. However, mNGS results of some cases have low specificity, lack recognized interpretation standards, have unclear relationships between sequencing results and treatment, and have difficulties testing drug-resistant genes. In clinical application present, mNGS and traditional microbial detection technology have a complementary effect and the combination of the two can improve the clinical diagnosis efficiency.
Keywords:Metagenomics next-generation sequencing  Respiratory  Infection  
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