1.Targeted innovative design of Bt Cry toxin insecticidal mimics.
Chongxin XU ; Yuan LIU ; Xiao ZHANG ; Xianjin LIU
Chinese Journal of Biotechnology 2023;39(2):446-458
Bt Cry toxin is the mostly studied and widely used biological insect resistance protein, which plays a leading role in the green control of agricultural pests worldwide. However, with the wide application of its preparations and transgenic insecticidal crops, the resistance to target pests and potential ecological risks induced by the drive are increasingly prominent and attracting much attention. The researchers seek to explore new insecticidal protein materials that can simulate the insecticidal function of Bt Cry toxin. This will help to escort the sustainable and healthy production of crops, and relieve the pressure of target pests' resistance to Bt Cry toxin to a certain extent. In recent years, the author's team has proposed that Ab2β anti-idiotype antibody has the property of mimicking antigen structure and function based on the "Immune network theory" of antibody. With the help of phage display antibody library and specific antibody high-throughput screening and identification technology, Bt Cry toxin antibody was designed as the coating target antigen, and a series of Ab2β anti-idiotype antibodies (namely Bt Cry toxin insecticidal mimics) were screened from the phage antibody library. Among them, the lethality of Bt Cry toxin insecticidal mimics with the strongest activity was close to 80% of the corresponding original Bt Cry toxin, showing great promise for the targeted design of Bt Cry toxin insecticidal mimics. This paper systematically summarized the theoretical basis, technical conditions, research status, and discussed the development trend of relevant technologies and how to promote the application of existing achievements, aiming to facilitate the research and development of green insect-resistant materials.
Insecticides/metabolism*
;
Bacillus thuringiensis
;
Endotoxins/pharmacology*
;
Bacillus thuringiensis Toxins/metabolism*
;
Hemolysin Proteins/pharmacology*
;
Bacterial Proteins/chemistry*
;
Plants, Genetically Modified/genetics*
;
Pest Control, Biological
2.A case of poisoning caused by intramuscular injection of esfenvalerate.
Jin LI ; Guang Min TANG ; Shi Zhao XIANG ; Ming Yang YANG ; Li YANG
Chinese Journal of Industrial Hygiene and Occupational Diseases 2023;41(3):225-227
Esfenvalerate is a kind of commonly used highly effective pyrethroid insecticide. It is common for people who are poisoned by contact or misuse, but rarely reported for people who are poisoned by intramuscular injection. This paper reports a case of intramuscular injection of esfenvalerate in the Department of Infection, West China Hospital of Sichuan University in November 2021. The patient was intramuscularly injected with about 20 ml of esfenvalerate, inducing the sense of swelling and tingling, degeneration and necrosis of striated muscle tissue at the injection site, also liver function damage and other manifestations. The patient was discharged from hospital after rehydration, accelerating poison metabolism, anti-infection, liver protection and local puncture.
Humans
;
Insecticides
;
Injections, Intramuscular
;
Pyrethrins
;
Nitriles/metabolism*
3.Exposure level of neonicotinoid pesticides and their metabolites in pregnant women in the suburb of Shanghai.
Yuan Ping WANG ; Lin Ying WU ; Yi WANG ; Dong Liang XUAN ; Jing TIAN ; Zi Chen YANG ; Ming Hui HAN ; He Xing WANG ; Qian PENG ; Qing Wu JIANG
Chinese Journal of Preventive Medicine 2023;57(5):741-746
In 2021, a total of 151 pregnant women were selected from the suburb of Shanghai. A questionnaire survey was conducted to obtain data about maternal age, gestational week, total annual household income, education level and passive smoking among pregnant women and one spot urine was collected. The concentrations of eight neonicotinoid pesticides and four metabolites in urine were measured by ultra-high performance liquid chromatography-tandem quadrupole time-of-flight mass spectrometry. The differences in detection frequencies and concentrations of neonicotinoid pesticides and their metabolites among pregnant women with different characteristics were compared, and the influencing factors of the detection of neonicotinoid pesticides in urine were analyzed. The results showed that at least one neonicotinoid pesticide was detected in 93.4% (141 samples) of urine samples. The detection frequencies of N-desmethyl-acetamiprid, clothianidin, thiamethoxam, and N-desmethyl-clothianidin were high, about 78.1% (118 samples), 75.5% (114 samples), 68.9% (104 samples), and 44.4% (67 samples), respectively. The median concentration of the sum of all neonicotinoid pesticides was 2.66 μg/g. N-desmethyl-acetamiprid had the highest detection concentration with a median concentration of 1.04 μg/g. A lower urinary detection frequency of imidacloprid and its metabolites was seen in pregnant women aged 30-44 years [OR (95%CI): 0.23 (0.07-0.77)]. A higher detection frequency of clothianidin and its metabolites was seen in pregnant women with per capita annual household income≥100 000 yuan [OR (95%CI): 6.15 (1.56-24.28)]. There was widespread exposure to neonicotinoid pesticides and their metabolites in pregnant women from the suburb of Shanghai, which might pose potential health risks to pregnant women, and maternal age and household income were potential influencing factors of the exposure to neonicotinoid pesticides.
Humans
;
Female
;
Pregnancy
;
Pesticides/analysis*
;
Pregnant Women
;
China
;
Neonicotinoids/analysis*
;
Insecticides
4.Epidemiological characteristics of pesticide poisoning in Chengdu City from 2012 to 2021.
Dan KUANG ; Qi PENG ; Lin WANG ; Xiao Song YANG ; Xu Fang GAO
Chinese Journal of Industrial Hygiene and Occupational Diseases 2023;41(6):451-456
Objective: To explore the present situation and epidemiological characteristics of pesticide poisoning in Chengdu City from 2012 to 2021, and to provide scientific evidence for further prevention and control. Methods: In January 2022, the pesticide poisoning report cards of Chengdu City from 2012 to 2021 were collected from the China Disease Control and Prevention Information System. The data of the report card was reorganized and the distribution characteristics of pesticide poisoning such as time, region, gender, age and pesticide types were analyzed. Results: 14326 cases of pesticide poisoning were reported in Chengdu City from 2012 to 2021, 651 deaths, and the fatality rate was 4.54%. The cases of productive pesticide poisoning and unproductive pesticide poisoning were 504 and 13822, respectively. The fatality rates of productive and unproductive pesticide poisoning were 1.39% and 4.66%, which were significant different (χ(2)=11.99, P=0.001). The highest reported cases of pesticide poisoning was in 2013 (1779) and the lowest in 2021 (1047). The number of reported cases showed a downward trend year by year (t=-12.30, P<0.001), and the fatality rates also showed a downward trend year by year (χ(2)(trend)=25.48, P<0.001). The fluctuation range of unproductive pesticide poisoning cases in each month of the year was small, and the productive pesticide poisoning mainly occurred from May to August. The regions with the largest number of reported poisoning cases were Pengzhou (1620), Jianyang (1393), Jintang (1266) and Qionglai (1158). The high incidence of poisoning was among 25-54 years old (50.21%, 7193/14326). The fatality rate in the age group 75-96 years old was the highest (8.98%, 95/1058), and the fatality rates increased gradually with age (χ(2)(trend)=186.03, P<0.001). The pesticides causing poisoning were mainly insecticide (43.86%, 6284/14326) and herbicides (35.75%, 5121/14326). Herbicides paraquat had the highest fatality rate (9.54%, 286/2998) . Conclusion: Pesticide poisoning in Chengdu City is mainly unproductive poisoning. Health education should be carried out for key areas and people, and the control of highly toxic pesticides such as insecticide and herbicides should be strengthened.
Humans
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Aged
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Aged, 80 and over
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Adult
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Middle Aged
;
Insecticides
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Pesticides
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Herbicides
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Paraquat
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Cities
;
Poisoning/epidemiology*
5.Three cases of acute chlorfenapyr poisoning.
Ji Lai QU ; Hai Yan YAN ; Xue Chuang ZHU ; Yu Gui HAO
Chinese Journal of Industrial Hygiene and Occupational Diseases 2023;41(6):461-462
This paper reported 3 cases of poisoning caused by chlorfenagyr. Chlorfenapyr poisoning has gradually increased in clinical practice. The early stage after poisoning is digestive tract symptoms, followed by sweating, high fever, changes in consciousness, changes in myocardial enzymology, etc. Its main mechanism of intoxication is uncoupling oxidative phosphorylation. Since there is no specific antidote after poisoning, the fatality rate of chlorfenapyr poisoning remains high. The therapeutic measures are early gastrointestinal decontamination, symptomatic and supportive treatments, and early blood purification may be an effective treatment.
Humans
;
Pyrethrins
;
Gastrointestinal Tract
;
Insecticides
;
Poisoning/diagnosis*
6.Two cases of acute chlorfenapyr poisoning and literature review.
Guo Hao LIAO ; Hong Yu YU ; Li Jie BAO ; Bin CHENG
Chinese Journal of Industrial Hygiene and Occupational Diseases 2022;40(3):212-216
In recent years, chlorfenapyr poisoning has gradually increased in clinical practice, but the case fatality rate remains high. At present, the research on its poisoning mechanism and clinical characteristics is limited, and there is no effective treatment. In order to summarize the clinical characteristics of chlorfenapyr poisoning, in order to guide the clinical treatment, this article reported 2 cases of acute chlorfenayr poisoning and 21 cases of literature review, and summarized the clinical characteristics of chlorfenapyr poisoning.Most of the symptoms of gastrointestinal symptoms, profuse sweating, high fever, and changes in consciousness after chlorfenapyr poisoning, and delayed exacerbations are common, which can involve multiple organ systems such as the central nervous system, providing a basis for clinical diagnosis and treatment.
Insecticides
;
Pyrethrins
7.Microorganisms capable of degrading neonicotinoids and their metabolic pathways: a review.
Xingru CHEN ; Shiqi FANG ; Shuang WAN ; Wenwen ZHOU ; Chao SUN ; Jun LI
Chinese Journal of Biotechnology 2022;38(12):4462-4497
Neonicotinoid compounds are usually considered harmless and eco-friendly in terms of their targeted toxicity compared to that of pyrethroids and phosphorus-containing pesticides. However, overuse of neonicotinoid insecticides resulted in the accumulation of its residuals or intermediates in soil and water, which consequently affected beneficial insects as well as mammals, yielding pollution and secondary risks. This review summarized the recent advances in neonicotinoid degrading microorganisms and their metabolic diversity, with the aim to address the urgent need for degrading these insecticides. These advances may facilitate the development of controllable and reliable technologies for efficiently transforming neonicotinoid insecticides into value-added products by synthetic biology and metagenomics.
Animals
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Neonicotinoids/metabolism*
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Insecticides/metabolism*
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Soil
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Environmental Pollution
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Metabolic Networks and Pathways
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Mammals/metabolism*
8.Advances in receptor-mediated resistance mechanisms of Lepidopteran insects to Bacillus thuringiensis toxin.
Leilei LIU ; Peiwen XU ; Kaiyu LIU ; Wei WEI ; Zhongshen CHANG ; Dahui CHENG
Chinese Journal of Biotechnology 2022;38(5):1809-1823
Bacillus thuringiensis is widely used as an insecticide which is safe and environmentally friendly to humans and animals. One of the important insecticidal mechanisms is the binding of Bt toxins to specific toxin receptors in insect midgut and forming a toxin perforation which eventually leads to insect death. The resistance of target pests to Bt toxins is an important factor hampering the long-term effective cultivation of Bt crops and the continuous use of Bt toxins. This review summarizes the mechanism of insect resistance to Bt toxins from the perspective of important Bt toxin receptors in midgut cells of Lepidopteran insects, which may facilitate the in-depth study of Bt resistance mechanism and pest control.
Animals
;
Bacillus thuringiensis/genetics*
;
Bacillus thuringiensis Toxins
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Bacterial Proteins/metabolism*
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Endotoxins/metabolism*
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Hemolysin Proteins/metabolism*
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Insecta/metabolism*
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Insecticide Resistance/genetics*
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Insecticides/pharmacology*
;
Pest Control, Biological
9.Simultaneous quantification of pyrethroid metabolites in urine of non-toilet-trained children in Japan.
Jun UEYAMA ; Yuki ITO ; Risa HAMADA ; Naoko OYA ; Sayaka KATO ; Taro MATSUKI ; Hazuki TAMADA ; Kayo KANEKO ; Shinji SAITOH ; Mayumi SUGIURA-OGASAWARA ; Takeshi EBARA ; Michihiro KAMIJIMA
Environmental Health and Preventive Medicine 2022;27(0):25-25
BACKGROUND:
Pyrethroid (PYR) insecticides are widely used for controlling various pests. There are two types that differ in terms of usage: agricultural-purpose PYR (agriculture-PYR) and hygiene purpose PYR (hygiene-PYRs). Few studies exist on the exposure to these chemicals in small children. In this study, we conducted biomonitoring of urinary pyrethroid metabolites in 1.5-year-old children throughout the year.
METHODS:
Study subjects were 1075 children participating in an Aichi regional sub-cohort of the Japan Environment and Children's Study as of 18-month health check-up. The concentrations of four specific hygiene-PYR metabolites including 2,3,5,6-tetrafluoro-1,4-benzenedimethanol (HOCH2-FB-Al), and five common metabolites of hygiene- and agriculture-PYRs including 3-phenoxybenzoic acid (3PBA) and cis- and trans-3-(2,2-dichlorovinyl)-2,2-dimethylcyclopropane-1-carboxylic acid (DCCA), were measured in urine samples extracted from soiled diapers using a triple quadrupole gas chromatograph-mass spectrometer.
RESULTS:
The highest detection frequencies were for 3PBA, followed by DCCA, 1R-trans-chrysanthemum dicarboxylic acid, and HOCH2-FB-Al. Among the six metabolites, urinary concentrations were seasonally varied. However, this variation was not observed in the most studied PYR metabolite, 3PBA. Spearman's correlation analysis demonstrated a significant positive correlation between FB-Al and DCCA (r = 0.56) and HOCH2-FB-Al and 4-methoxymethyl-2,3,5,6-tetrafluorobenzyl alcohol (r = 0.60).
CONCLUSIONS
This biomonitoring survey found widespread and seasonally specific exposure to multiple hygiene- and agriculture-PYRs in 1.5-year-old Japanese children.
Agriculture
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Child, Preschool
;
Environmental Exposure/analysis*
;
Humans
;
Infant
;
Insecticides
;
Japan
;
Mass Spectrometry
;
Pyrethrins/urine*
10.Identification of entomopathogenic fungi Metarhizium anisopliae and Purpureocillium lilacinum from oil palm plantation soils in Universiti Putra Malaysia
Ibrahim Sani ; Syari Jamian ; Siti Izera Ismail ; Norsazilawati Saad ; Sumaiyah Abdullah ; Erneeza Mohd Hata ; Muhammad Amali Kamarudin ; Johari Jalinas
Malaysian Journal of Microbiology 2022;18(1):105-112
Aims:
Insect pests are one of the major constraints of oil palm production in Malaysia. However, synthetic chemical insecticides are the most common method for its control, despite their negative effects on non-target organisms and the development of resistance. Therefore, the present study is aimed to identify novel indigenous isolates of entomopathogenic fungi (EPF) in oil palm soil as part of integrated pest management (IPM) of oil palm insect pests.
Methodology and results:
The potential of EPF were isolated from the soil collected from the oil palm plantation in UPM using a mealworm beetle larva (Tenebrio molitor) as an insect bait. Seven Metarhizium anisopliae and two Purpureocillium lilacinum isolates were identified by morphological characterization (macroscopic and microscopic observation) and molecular identification using internal transcribed spacer (ITS) region (ITS region amplification).
Conclusion, significance and impact of study
To our knowledge, this is the first time P. lilacinum has been found in the soil of an oil palm plantation or any other host in Malaysia. Furthermore, both of the isolates M. anisopliae and P. lilacinum may be potentially considered as biological control candidates for major insect pests in oil palm.
Entomophthorales--genetics
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Palm Oil
;
Insecticides


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