收稿日期: 2021-02-05
网络出版日期: 2023-01-29
基金资助
广东省中医药局课题项目资助课题(20211344)
Chlamydia psittaci pneumonia diagnosed by metagenomics next-generation sequencing: a case report
Received date: 2021-02-05
Online published: 2023-01-29
张祥钦, 江勇 . 宏基因组第二代测序技术诊断鹦鹉热衣原体肺炎1例[J]. 诊断学理论与实践, 2022 , 21(05) : 635 -637 . DOI: 10.16150/j.1671-2870.2022.05.016
Chlamydia psittaci pneumonia is a relatively rare zoonotic disease. However, lack of specific clinical symptoms, effective and rapid laboratory diagnosis methods and clear epidemiological data sometimes may make it difficult to diagnose the disease. This paper reports a case of Chlamydia psittaci pneumonia diagnosed by metagenomic next-generation sequencing (mNGS), suggesting that mNGS technology has high clinical application value in the diagnosis of community-acquired pneumonia with unknown pathogens.
Key words: Gene testing; Chlamydia psittaci; Pneumonia
[1] | Kozuki E, Arima Y, Matsui T, et al. Human psittacosis in Japan: notification trends and differences in infection source and age distribution by gender, 2007 to 2016[J]. Ann Epidemiol, 2020, 44:60-63. |
[2] | Balsamo G, Maxted AM, Midla JW, et al. Compendium of measures to control chlamydia psittaci infection among humans (Psittacosis) and pet birds (Avian Chlamydiosis), 2017[J]. J Avian Med Surg, 2017, 31(3):262-282. |
[3] | Hogerwerf L, de Gier B, Baan B, et al. Chlamydia psittaci (psittacosis) as a cause of community-acquired pneumonia: a systematic review and meta-analysis[J]. Epidemiol Infect, 2017, 145(15):3096-3105. |
[4] | de Gier B, Hogerwerf L, Dijkstra F, et al. Disease burden of psittacosis in the Netherlands[J]. Epidemiol Infect, 2018, 146(3):303-305. |
[5] | Fraeyman A, Boel A, van Vaerenbergh K, et al. Atypical pneumonia due to Chlamydophila psittaci: 3 case reports and review of literature[J]. Acta Clin Belg, 2010, 65(3):192-196. |
[6] | Cheng YJ, Lin KY, Chen CC, et al. Zoonotic atypical pneumonia due to Chlamydophila psittaci: first reported psittacosis case in Taiwan[J]. J Formos Med Assoc, 2013, 112(7):430-433. |
[7] | 中华医学会检验医学分会临床微生物学组, 中华医学会微生物学与免疫学分会临床微生物学组, 中国医疗保健国际交流促进会临床微生物与感染分会. 宏基因组高通量测序技术应用于感染性疾病病原检测中国专家共识[J]. 中华检验医学杂志, 2021, 44(2):107-120. |
[7] | Clinical Microbiology Group of Laboratory Medicine Branch of Chinese Medical Association, Clinical Microbiology Group of Microbiology and Immunology Branch of Chinese Medical Association, Clinical Microbiology and Infection Branch of China Association for the Promotion of International Exchange of Medical Care. Chinese expert consensus on metagenomics next-generation sequencing application on pathogen detection of infectious diseases[J]. Chin J Lab Med, 2021, 44(2):107-120. |
[8] | 刘可君, 郭世富, 崔乐, 等. 基因测序技术在临床检验领域的应用及国内外监管现状比较研究[J]. 中国药事, 2018, 32(11):1520-1530. |
[8] | Liu KJ, Guo SF, Cui L, et al. Application of Gene Sequencing Technology in the Field of Clinical Testing and Comparative Study on Current Situation of Domestic and Ineternational Supervision[J]. Chin Pharm Aff, 2018, 32(11):1520-1530. |
[9] | 《中华传染病杂志》编辑委员会. 中国宏基因组学第二代测序技术检测感染病原体的临床应用专家共识[J]. 中华传染病杂志, 2020, 38(11):681-689. |
[9] | Editorial Committee of Chinese Journal of Infectious Di-seases. Clinical practice expert consensus for the applica-tion of metagenomic next generation sequencing[J]. Chin J Infect Dis, 2020, 38(11):681-689. |
/
〈 |
|
〉 |