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“卡内蒂分枝杆菌”的干热灭活

Dry-heat inactivation of "Mycobacterium canettii".

作者信息

Aboubaker Osman Djaltou, Garnotel Eric, Drancourt Michel

机构信息

Aix Marseille Université, URMITE, UMR CNRS 7278, IRD 198, INSERM 1095. IHU Méditerranée Infection, 13005, Marseille, France.

Institut de Recherche Médicinale (IRM), Centre d'Études et de Recherche de Djibouti (CERD), Djibouti, Djibouti.

出版信息

BMC Res Notes. 2017 Jun 9;10(1):201. doi: 10.1186/s13104-017-2522-z.

Abstract

OBJECTIVE

"Mycobacterium canettii" is responsible for non-transmissible lymph node and pulmonary tuberculosis in persons exposed in the Horn of Africa. In the absence of direct human transmission, contaminated water and foodstuffs could be sources of contamination. We investigated the dry-heat inactivation of "M. canettii" alone and mixed into mock-infected foodstuffs by inoculating agar cylinders and milk with 10 colony-forming units of "M. canettii" CIPT140010059 and two "M. canettii" clinical strains with Mycobacterium tuberculosis H37Rv as a control.

RESULTS

Exposed to 35 °C, M. tuberculosis H37Rv, "M canettii" CIPT140010059 and "M. canettii" 157 exhibited a survival rate of 108, 95 and 81%, which is significantly higher than that of "M. canettii" 173. However, all tested mycobacteria tolerated a 90-min exposure at 45 °C. In the foodstuff models set at 70 °C, no growing mycobacteria were visualized. This study supports the premise that "M. canettii" may survive up to 45 °C; and suggests that contaminated raw drinks and foodstuffs but not cooked ones may be sources of infection for populations.

摘要

目的

“卡内蒂分枝杆菌”可导致非洲之角地区接触者发生非传染性淋巴结和肺结核。在不存在人际直接传播的情况下,受污染的水和食物可能是传染源。我们通过用10个“卡内蒂分枝杆菌”CIPT140010059菌落形成单位以及两株“卡内蒂分枝杆菌”临床菌株接种琼脂柱和牛奶,并以结核分枝杆菌H37Rv作为对照,研究了单独的“卡内蒂分枝杆菌”以及混入模拟感染食物中的该菌的干热灭活情况。

结果

暴露于35℃时,结核分枝杆菌H37Rv、“卡内蒂分枝杆菌”CIPT140010059和“卡内蒂分枝杆菌”157的存活率分别为108%、95%和81%,显著高于“卡内蒂分枝杆菌”173。然而,所有测试的分枝杆菌都能耐受45℃ 90分钟的暴露。在设定为70℃的食物模型中,未观察到有生长的分枝杆菌。本研究支持“卡内蒂分枝杆菌”可能在45℃下存活的前提;并表明受污染的生饮料和食物而非熟食可能是人群的感染源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dc23/5466745/5c95c3dd5920/13104_2017_2522_Fig1_HTML.jpg

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