4.Construction of monitoring system on chemical contaminant in Chinese export plant food and it's application.
Guang-jiang TANG ; Yong-ning WU ; Jian-zhong SHEN
Chinese Journal of Preventive Medicine 2010;44(7):584-586
China
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Food
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Food Contamination
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prevention & control
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Food Inspection
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methods
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Plants
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chemistry
5.Quantitative microbiological risk assessment of Salmonella spp. in connmmon catering foods.
Chinese Journal of Preventive Medicine 2008;42(5):312-316
OBJECTIVETo study the relationship between foodborne diseases (FBD) and contamination of Salmonella spp. in catering foods, quantitative microbiological risk assessment (QMRA) of Salmonella spp. was used to evaluate the food material or the ready to eat food.
METHODSThe contamination data of Salmonella spp. in 10 896 food samples of 9 categories of food which were collected by National Food Contamination and Food Borne Disease Surveillance Net, combining with diet consumption data from National Food Nutrition Survey in 2002, were analyzed by the microbiological risk assessment model developed by WHO/FAO or FDA/FSIS of US to predict probability of FBD.
RESULTSThe results of MRA showed that the probability of salmonellosis by consuming ready to eat meat in summer and autumn was 0.20, much higher than the other foods. Although the contamination level in raw poultry was higher than meat, the probability of salmonellosis by raw poultry (9.11 x 10(-6)) was lower than meat (3.14 x 10(-5)) because of the low consumption volume.
CONCLUSIONProbability of FBD was significantly correlated with the volume of food consumption, the status of economy and bacteria contamination level. The level of FBD in summer season was higher than in winter and spring because of ambient temperature.
Food Contamination ; Food Microbiology ; Humans ; Risk Assessment ; Salmonella ; isolation & purification ; Salmonella Food Poisoning ; prevention & control
7.Quantitative classification in catering trade and countermeasures of supervision and management in Hunan Province.
Xiulan LIU ; Lizhang CHEN ; Xiang HE
Journal of Central South University(Medical Sciences) 2012;37(2):137-141
OBJECTIVE:
To analyze the status quo of quantitative classification in Hunan Province catering industry, and to discuss the countermeasures in-depth.
METHODS:
According to relevant laws and regulations, and after referring to Daily supervision and quantitative scoring sheet and consulting experts, a checklist of key supervision indicators was made. The implementation of quantitative classification in 10 cities in Hunan Province was studied, and the status quo was analyzed.
RESULTS:
All the 390 catering units implemented quantitative classified management. The larger the catering enterprise, the higher level of quantitative classification. In addition to cafeterias, the smaller the catering units, the higher point of deduction, and snack bars and beverage stores were the highest. For those quantified and classified as C and D, the point of deduction was higher in the procurement and storage of raw materials, operation processing and other aspects.
CONCLUSION
The quantitative classification of Hunan Province has relatively wide coverage. There are hidden risks in food security in small catering units, snack bars, and beverage stores. The food hygienic condition of Hunan Province needs to be improved.
China
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Food Contamination
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prevention & control
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Food Microbiology
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Food Services
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organization & administration
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Foodborne Diseases
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prevention & control
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Hygiene
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Restaurants
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legislation & jurisprudence
8.Aflatoxins and fungal community distribution during harvesting and processing of Platycladi Semen.
Zhen-Ying LIU ; Hao-Nan WANG ; Zhao-Yu ZHANG ; Jing XUAN ; Min LI ; Zhe LI ; Yong-Qing ZHANG
China Journal of Chinese Materia Medica 2022;47(2):385-391
This study aimed to analyze aflatoxins content and fungal community distribution in the harvesting and processing of Platycladi Semen, and explore the key link that affects aflatoxins contamination. The related Platycladi Semen samples of different maturity periods(cone non-rupture period, early rupture, and complete rupture period) and different processing periods(before drying, during 2-d drying, during 7-d drying, before and after seed scale removal, before and after peeling, 1 d after color sorting, and 7 d after color sorting) were collected for identifying the fungal community composition on sample surface by ITS amplicon sequencing. Then the content of aflatoxins B_1, B_2, G_1 and G_2 was determined by HPLC-MS/MS. The results showed that during the harvesting of Platycladi Semen from cone non-rupture to complete rupture, aflatoxins were only detected in the seed scale and seed coat, with aflatoxin G_2 in the seed scale and aflatoxin B_1 in the seed coat. During the drying, with the prolongation of drying time, aflatoxins B_1 and G_2 were detected simultaneously in the seed scale, aflatoxin B_1 in the seed coat, and low-content aflatoxin B_1 in the seed kernel. During subsequent processing, the aflatoxin content in seed kernel during subsequent processing was slighted increased. As demonstrated by fungal detection, Aspergillus flavus was not present during the harvesting of Platycladi Semen, but present during the drying and processing. Its content in the seed coat during the drying process was relatively higher. In short, Platycladi Semen should be harvested as soon as possible after it becomes fully mature. Drying process is the key link of preventing aflatoxin contamination. It is advised to build a sunlight room or adopt similar settings, standardize the operations in other processes, and keep the surrounding environment clean to minimize aflatoxin contamination.
Aflatoxins/analysis*
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Aspergillus flavus
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Food Contamination/prevention & control*
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Mycobiome
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Semen/chemistry*
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Tandem Mass Spectrometry
9.The Revision of Aluminum-containing Food Additive Provisions in China.
Hong ZHANG ; Ji Yue ZHANG ; Hua Li WANG ; Peng Jie LUO ; Jian Bo ZHANG
Biomedical and Environmental Sciences 2016;29(6):461-466
The aim of this study was to revise the provisions for aluminum-containing food additives in GB 2760-2011 (The National Food Safety Standard for Use of Food Additives), in order to reduce aluminum exposure among the Chinese population. According to the latest risk assessment results of JECFA and China on aluminum and the actual use of aluminum-containing food additives in certain products, the aluminum-containing food additive-related provisions in GB 2760-2011 were revised. Those revisions included narrowing down the applicable food categories and adjusting the maximum use level of aluminum potassium sulfate and aluminum ammonium sulfate, repealing nine aluminum-containing food additives in puffed food and repealing the use of sodium aluminum phosphate, sodium aluminosilicate and starch aluminum octenylsuccinate in all food. After revision of the use of aluminum food additive provisions, the weekly dietary intake of aluminum in the Chinese population can be reduced to a safe level.
Aluminum
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analysis
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China
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Environmental Exposure
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prevention & control
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standards
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Food Additives
;
analysis
;
standards
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Food Contamination
;
analysis
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Humans
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Risk Assessment
10.Surveillance on contamination of total aflatoxins in corn, peanut, rice, walnut and pine nut in several areas in China.
Chinese Journal of Preventive Medicine 2006;40(1):33-37
OBJECTIVETo realize the contamination of total aflatoxins in corn, peanut, rice, walnut and pine nut in China, and provide the base data for establishing a China tolerance limit standard and an international control practice for total aflatoxins.
METHODSThe samples of corn, peanut, rice, walnut and pine nut from Chongqing, Fujian, Guangdong, Guangxi, Hubei, Jiangsu, Shanghai and Zhejiang provinces and municipalities were collected randomly from markets, with the totally 284 samples. The samples were grounded and added to acetonitrile/water mixture. After filtering, the extract was transferred into a purifying column and pressed slowly. Then the purified liquid was derivatized with trifluoroacetic acid (TFA) and detected by using a high performance liquid chromatography (HPLC).
RESULTSThere was 70.27% corn having been detected out an average level of aflatoxins of 36.51 microg/kg and the highest level was 1098.36 microg/kg. At the same time, there was 14.86% corn exceeding the China national tolerance limit. In peanut, the aflatoxins detected rate was 24.24%. The average level was 80.27 microg/kg and the highest level was 437.09 microg/kg. While there was 3.03% peanut exceeding the China national and Codex tolerance limits. All of the rice, walnut and pine nut samples met the China tolerance limit for aflatoxins.
CONCLUSIONCorn and peanut might be the severely contaminated foods with aflatoxins in China. The aflatoxin B(1) in foods might be can not delegate the contamination of aflatoxins completely. Surveillance of total aflatoxins in foods suggested an actual need of establishing the China national and international standards for total aflatoxins.
Aflatoxins ; analysis ; Arachis ; China ; Chromatography, High Pressure Liquid ; Food Contamination ; analysis ; prevention & control ; Food Microbiology ; Nuts ; Oryza ; Zea mays