Residue behaviors and dietary risk assessment of dinotefuran and its metabolites in Lycium barbarum from farm to fork
文献类型: 外文期刊
作者: Ouli Xiao;Minmin Li;Jieyin Chen;Ran Wang;Xiaofeng Dai;Zhiqiang Kong
作者机构:
关键词: Bioaccessibility;Dietary risk assessment;Dinotefuran;Dissipation behavior;Wolfberry
期刊名称: Food Science and Human Wellness
ISSN: 2213-4530
年卷期: 2025 年 14 卷 5 期
页码:
收录情况: SCIE(2025版) ; ; CSCD(2025-2026年度) ; ; 科技核心(2024版) ; ; 农林核心(2024版)
摘要: Lycium barbarum, known as wolfberry or goji berry, is consumed by humans as a medicine and a food homology product. Conventionally grown wolfberry is often treated extensively with pesticides, which could pose a hazard to humans. Here, the degradation dynamics of dinotefuran and its 2 metabolites (1-methyl-3-(tetrahydro-3-furylmethyl) urea (UF) and 1-methyl-3-(tetrahydro-3-furylmethyl) guanidine (DN)), during wolfberry cultivation and processing was investigated. The half-life (T1/2) of dinotefuran was 11.36 and 9.76 days, respectively, under the recommended dosage and double the recommended dosage. During the oven and sun drying processes, processing factors (PFs) of dinotefuran were 1.07−1.34, implying the enrichment of pesticide residues. Decoction process made the removal rate of dinotefuran reach 87.48%, which is higher than that of the brewing process (14.7%), while dinotefuran remained in the wine with high ethanol content in the alcohol soaking process. The hazard quotient (HQ) of dinotefuran, as determined via dietary risk assessment combined with PFs, was < 1, indicating an acceptable risk for human consumption. Bioaccessibility of dinotefuran in the three digestive stages were intestinal (18.20%−88.08%) > gastric (5.45%−86.72%) > oral (23.18%) via in vitro simulated digestive system. These findings provide scientific evidence for reasonable application and risk assessment of dinotefuran residues in wolfberry.
分类号:
- 相关文献
作者其他论文 更多>>
-
QTL mapping of fruit quality traits in tetraploid kiwiberry (Actinidia arguta)
作者:Ran Wang;Peter M. Bourke;Sikai Li;Miaomiao Lin;Leiming Sun;Hong Gu;Yukuo Li;Richard G.F. Visser;Xiujuan Qi;Chris Maliepaard;Jinbao Fang
关键词:Breeding;Kiwiberry;Polyploid genetics;QTL mapping
-
Simultaneous determination of three fluorinated pesticides and a metabolite in various food processing matrices and chronic dietary risk assessments
作者:Tian Yang;Dandan Yun;Lin Li;Mengying Zhao;Jun Yan;Lin Yang;Zhiqiang Kong;Minmin Li
关键词:Fluorinated pesticides;Metabolite;Pesticide residues;Processing factors;Risk assessments
-
AaMYB61-like and AabHLH137 jointly regulate anthocyanin biosynthesis in Actinidia arguta
作者:Zhe Song;Yukuo Li;Xu Zhan;Xiaohan Li;Lingshuai Ye;Miaomiao Lin;Ran Wang;Leiming Sun;Jinyong Chen;Jinbao Fang;Feng Wei;Xiujuan Qi
关键词:Actinidia arguta;AabHLH137;AaMYB61-like;Anthocyanin biosynthesis;Transcription regulation
-
Genome-Wide Identification and Expression Divergence of CBF Family in Actinidia arguta and Functional Analysis of AaCBF4 Under Cold Stress
作者:Sumei Li;Qina Zhang;Zhenzhen Zhang;Peng Zhang;Congcong Li;Leiming Sun;Jinbao Fang;Ran Wang;Feng Wei;Yukuo Li;Miaomiao Lin;Xiujuan Qi
关键词:CBF gene family;kiwifruit;low-temperature stress
-
Comparative transcriptome analysis and transient assays revealed AaGST and AaBGAL, respectively, contribute to skin and flesh coloration in A. arguta
作者:Xu Zhan;Yukuo Li;Zhe Song;Xiaohan Li;Lingshuai Ye;Miaomiao Lin;Ran Wang;Leiming Sun;Jinbao Fang;Dixin Chen;Xiujuan Qi
关键词:Actinidia arguta;Anthocyanin;Coloration;Different tissues;Transcriptome
-
Chromosome-level genome assembly assisting for dissecting mechanism of anthocyanin regulation in kiwifruit (Actinidia arguta)
作者:Yukuo Li;Zhe Song;Xu Zhan;Xiaohan Li;Lingshuai Ye;Miaomiao Lin;Ran Wang;Hailei Huang;Jian Guo;Leiming Sun;Hong Gu;Jinyong Chen;Jinbao Fang;Xiujuan Qi
关键词:Actinidia arguta;Anthocyanin biosynthesis;Comparative genome;Gene expression;Genome assembly
-
The potential endocrine-disrupting of fluorinated pesticides and molecular mechanism of EDPs in cell models
作者:Yalan Liu;Fengzhong Wang;Lin Li;Bei Fan;Zhiqiang Kong;Jianxin Tan;Minmin Li
关键词:Cell models;Endocrine-disrupting effect;Estrogen receptor;Pesticides;Toxic mechanism