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1.
Environmental Health and Preventive Medicine ; : 7-7, 2018.
Article in English | WPRIM | ID: wpr-775192

ABSTRACT

BACKGROUND@#China has the world's largest tea plantation area in the world. To sustain high yields of the tea, multiple pesticides are used on tea crops to control pests. Organophosphorus (OP) pesticides are among the most widely used types of agricultural pesticides in China. As tea is a significant potential source of exposure to pesticide residues, the public concern has increased in relation to pesticide residues found in tea in China. The aim of the study was to estimate cumulative dietary exposure to OP residues from tea infusion for Chinese tea consumers to determine whether exposure to OP residues from tea infusion is a cause of health concern for tea consumers in China.@*METHODS@#OP residue data were obtained from the China National Monitoring Program on Food Safety (2013-2014), encompassing 1687 tea samples from 12 provinces. Tea consumption data were obtained from the China National Nutrient and Health Survey (2002), comprising 506 tea consumers aged 15-82 years. The transfer rates of residues from tea leaves into tea infusions were obtained from the literature. The relative potency factor (RPF) approach was used to estimate acute cumulative exposure to 20 OP residues from tea infusion using methamidophos as the index compound. Dietary exposure was calculated in a probabilistic way.@*RESULTS@#For tea consumers, the mean and the 99.9th percentile (P99.9) of cumulative dietary exposure to OP residues from tea infusion equalled 0.08 and 1.08 μg/kg bw/d. When compared with the acute reference dose (ARfD), 10 μg/kg bw/d for methamidophos, this accounts for 0.8 and 10.8% of the ARfD.@*CONCLUSIONS@#Even when considering OP residues from vegetables, fruits and other foods, there are no health concerns based on acute dietary exposure to OP residues from tea infusion. However, it is necessary to strengthen the management of the OP pesticides used on tea in China to reduce the risk of chronic dietary exposure to OPs from tea infusion.


Subject(s)
Adolescent , Adult , Aged , Aged, 80 and over , Female , Humans , Male , Middle Aged , Young Adult , China , Dietary Exposure , Organophosphorus Compounds , Pesticide Residues , Risk Assessment , Methods , Tea , Chemistry
2.
Electron. j. biotechnol ; 28: 87-94, July. 2017. tab, graf
Article in English | LILACS | ID: biblio-1015957

ABSTRACT

Background: Inferior Tieguanyin oolong tea leaves were treated with tannase. The content and bioactivity of catechins in extracts from the treated tea leaves were investigated to assess the improvement in the quality of inferior Tieguanyin oolong tea. Results: Analysis showed that after treatment, the esterified catechin content decreased by 23.5%, whereas non-galloylated catechin and gallic acid contents increased by 15.3% and 182%, respectively. The extracts from tannase-treated tea leaves showed reduced ability to bind to BSA and decreased tea cream levels. The extracts also exhibited increased antioxidant ability to scavenge OH and DPPH radicals, increased ferric reducing power, and decreased inhibitory effects on pancreatic α-amylase and lipase activities. Conclusions: These results suggested that tannase treatment could improve the quality of inferior Tieguanyin oolong tea leaves.


Subject(s)
Tea/enzymology , Carboxylic Ester Hydrolases/metabolism , Tea/metabolism , Tea/chemistry , Temperature , Catalysis , Catechin/analysis , Plant Leaves/enzymology , Fermentation , Hydrolysis , Lipase/antagonists & inhibitors , Lipase/metabolism , Antioxidants
3.
European J Med Plants ; 2014 Jan; 4(1): 52-63
Article in English | IMSEAR | ID: sea-164063

ABSTRACT

Aims: To identify the major chemical components contained within the Artemisia annua tea infusion, which has been traditionally used to treat fevers and chills. Study Design: Currently, little chemical data exists on the tea infusion as previous work only focused on LC-MS analysis and although a valuable analytical tool it remains difficult to identify new compounds. Our study therefore employed LC-MS and NMR analysis in order to confirm the identities of the major compounds. Place and Duration of Study: Natural Products Laboratory, Institute of Biology, Leiden University between Jan 2012 and December 2012. Methodology: A thorough chemical analysis of the tea infusion was completed using both LC-MS and NMR analyses. Tea infusions were prepared using deionised water and were subjected to LC-MS analysis followed by semi-preparative fractionation and NMR analysis to confirm the identities of the major compounds. Results: Eleven major compounds were identified including chlorogenic acids, feruloylquinic acids, flavonols, coumarins, of which two compounds, cis- and transmelilotoside, are new for Artemisia spp. Conclusion: The melilotosides are known to be active against diarrhoea causing pathogens and therefore might explain the traditional use of A. annua to treat diarrhoea. Future work will focus on the quantification of the melilotosides and the identification of other compounds (major and minor) in the tea infusion.

4.
Rev. Inst. Nac. Hig ; 42(1): 16-26, jun. 2011. ilus, graf, tab
Article in Spanish | LILACS, LIVECS | ID: lil-631789

ABSTRACT

Con el fin de detectar la presencia de benzoilecgonina en orina de consumidores de té de coca, se realizó un estudio piloto analizando muestras de orina a 10 voluntarios sanos, no consumidores de cocaína, antes de ingerir la infusión de té de coca (Nasa Esh´s Coca Nasa), y las recolectadas hasta las 48 horas después de la ingestión, de una toma única de 100 mL el mismo día. El análisis se realizó por métodos de inmunoensayo, cualitativo, mediante pruebas rápidas Acu-check, y semicuantitativo AxSYM Cocaine Metabolite, basado en In munoensayo de Fluorescencia Polarizada (FPIA). Antes de la ingestión de la infusión por los métodos cualitativos y semicuantitativos las muestras recolectadas resultaron negativas, después de haber ingerido la infusión, por ambos métodos se detectó concentraciones de benzoilecgonina desde la primera hasta las 48 horas con diversas variaciones entre las muestras, observándose excelente concordancia entre los métodos para la determinación de benzoilecgonina en orina. En este estudio, se concluyó que existe la presencia de benzoilecgonina en muestras de orina de consumidores de té de coca. Los métodos utilizados sólo proporcionan resultados preliminares, se recomienda utilizar unos más específicos a fin de encontrar parámetros que permitan discriminar individuos que hayan ingerido infusión de té de coca, de aquellos que son adictos a la cocaína. Además, es importante prevenir a los consumidores de té de coca sobre el riesgo de detección de benzoilecgonina en orina dentro de las primeras 24 a 48 horas y las implicaciones que trae consigo tales hallazgos de laboratorio.


In order to detect the presence of benzoylecgonine in urine of consumers of coca tea, a pilot study was conducted by analyzing urine samples from 10 volunteers not cocaine users, be fore drinking the coca tea infusion, and collected until 48 hours after ingestión of a single shot (100 mL) the same day, The analysis was performed by immunoassay qualitative methods, using fast Acu-check tests, and semi quantitative automated equipment Abbott Axsym System, based on fluorescence polarization immunoassay (FPIA). Before ingestion of the infusion for qualitative and semiquantitative methods for samples collected were negative, and after drinking the tea, for both methods, concentrations of benzoylecgonine was detected from the first to 48 hours with several variations between samples, observed excellent agreement between the methods for the determination of benzoilecgonine in urine. In this study, we concluded that there is the presence of benzoylecgonine in urine samples from consumers of coca tea. According to the methods used provide only preliminary results, we recommend using a more specific in order to find parameters to discriminate individuals who have ingested coca tea infusions of dose that are cocaine addicts, In turn, it is important to prevent cosumers coca tea on the risk of detection of benzoylecgonine in urine within the first 24 to 48 hours and the implications it brings such laboratory findings.


Subject(s)
Humans , Male , Female , Adult , Middle Aged , Coca/chemistry , Cocaine/metabolism , Cocaine/chemical synthesis , Cocaine/toxicity , Public Health , Teas, Herbal/classification
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