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茶叶受霉菌毒素和耐唑类真菌群落的污染——采用“同一健康”方法应对暴露风险的必要性

Tea contamination by mycotoxins and azole-resistant mycobiota - The need of a One Health approach to tackle exposures.

作者信息

Viegas Carla, Simões Ana Beatriz, Faria Mariana, Gomes Bianca, Cervantes Renata, Dias Marta, Carolino Elisabete, Twaruzek Magdalena, Kosicki Robert, Viegas Susana, Caetano Liliana Aranha

机构信息

H&TRC - Health & Technology Research Center, ESTeSL - Escola Superior de Tecnologia e Saúde Instituto Politécnico de Lisboa, Lisbon, Portugal; NOVA National School of Public Health, Public Health Research Centre, Universidade Nova de Lisboa, Portugal; Comprehensive Health Research Center (CHRC), NOVA Medical School, Universidade NOVA de Lisboa, Portugal.

H&TRC - Health & Technology Research Center, ESTeSL - Escola Superior de Tecnologia e Saúde Instituto Politécnico de Lisboa, Lisbon, Portugal.

出版信息

Int J Food Microbiol. 2023 Jan 16;385:110015. doi: 10.1016/j.ijfoodmicro.2022.110015. Epub 2022 Nov 11.

Abstract

Despite tea beneficial health effects, there is a substantial risk of tea contamination by harmful pathogens and mycotoxins. A total of 40 tea samples (17 green (raw) tea; 13 black (fermented) tea; 10 herbal infusions or white tea) were purchased from different markets located in Lisbon district during 2020. All products were directly available to consumers either in bulk (13) and or in individual packages (27). Bacterial analysis was performed by inoculating 150 μL of samples extracts in tryptic soy agar (TSA) supplemented with 0.2 % nystatin medium for mesophilic bacteria, and in Violet Red bile agar (VRBA) medium for coliforms (Gram-negative bacteria). Fungal research was performed by spreading 150 μL of samples in malt extract agar (MEA) supplemented with 0.05 % chloramphenicol and in dichloran-glycerol agar (DG18) media. The molecular detection of the Aspergillus sections Fumigati, Nidulantes, Circumdati and Flavi was carried out by Real Time PCR (qPCR). Detection of mycotoxins was performed using high performance liquid chromatograph (HPLC) with a mass spectrometry detector. Azole resistance screening was achieved following the EUCAST guidelines. The highest counts of total bacteria (TSA) were obtained in green raw tea (81.6 %), while for coliform counts (VRBA) were found in samples from black raw tea (96.2 %). The highest fungal counts were obtained in green raw tea (87.7 % MEA; 69.6 % DG18). Aspergillus sp. was the most prevalent genus in all samples on MEA (54.3 %) and on DG18 (56.2 %). In the raw tea 23 of the samples (57.5 %) presented contamination by one to five mycotoxins in the same sample. One Aspergillus section Fumigati isolate from green tea beverage recovered form itraconazole-Sabouraud dextrose agar (SDA) medium, presented itraconazole and posaconazole E-test MICs above MIC90 values. Our findings open further discussion regarding the One-Health approach and the necessary investment in researching biological hazards and azole-resistance associated with the production and consumption of tea (in particular green tea).

摘要

尽管茶对健康有益,但茶被有害病原体和霉菌毒素污染的风险很大。2020年期间,从里斯本地区的不同市场购买了总共40个茶样(17个绿茶(生茶);13个红茶(发酵茶);10个草本浸液或白茶)。所有产品都直接面向消费者,有散装的(13个)和单个包装的(27个)。通过将150μL样品提取物接种在补充有0.2%制霉菌素的胰蛋白胨大豆琼脂(TSA)培养基中用于嗜温细菌分析,以及接种在紫红胆盐琼脂(VRBA)培养基中用于大肠菌群(革兰氏阴性菌)分析来进行细菌分析。通过将150μL样品铺展在补充有0.05%氯霉素的麦芽提取物琼脂(MEA)和二氯苯胺 - 甘油琼脂(DG18)培养基中来进行真菌研究。通过实时荧光定量聚合酶链反应(qPCR)对烟曲霉属、构巢曲霉属、环曲霉属和黄曲霉属进行分子检测。使用配备质谱检测器的高效液相色谱仪(HPLC)进行霉菌毒素检测。按照欧洲抗菌药物敏感性试验委员会(EUCAST)指南进行唑类耐药性筛查。总细菌数(TSA)最高的是绿茶生茶(81.6%),而大肠菌群数(VRBA)最高的是红茶生茶样品(96.2%)。真菌计数最高的是绿茶生茶(MEA为87.7%;DG18为69.6%)。曲霉属是MEA(54.3%)和DG18(56.2%)上所有样品中最常见的属。在生茶中,23个样品(57.5%)在同一样品中呈现出一至五种霉菌毒素的污染。从绿茶饮料中分离得到的一株烟曲霉属菌株从伊曲康唑 - 沙氏葡萄糖琼脂(SDA)培养基中复苏后,其伊曲康唑和泊沙康唑的E试验最低抑菌浓度高于MIC90值。我们的研究结果引发了关于“同一健康”方法以及对与茶叶(特别是绿茶)生产和消费相关的生物危害和唑类耐药性研究的必要投资的进一步讨论。

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