Diflubenzuron
Names
Preferred IUPAC name
N-[(4-Chlorophenyl)carbamoyl]-2,6-difluorobenzamide
Other names
Dimilin
Identifiers
3D model (JSmol)
ChEBI
ChEMBL
ChemSpider
ECHA InfoCard 100.047.740 Edit this at Wikidata
KEGG
UNII
  • InChI=1S/C14H9ClF2N2O2/c15-8-4-6-9(7-5-8)18-14(21)19-13(20)12-10(16)2-1-3-11(12)17/h1-7H,(H2,18,19,20,21) checkY
    Key: QQQYTWIFVNKMRW-UHFFFAOYSA-N checkY
  • Clc2ccc(NC(=O)NC(=O)c1c(F)cccc1F)cc2
Properties[1]
C14H9ClF2N2O2
Molar mass 310.68 g·mol−1
0.08 mg/L
Solubility in other solvents DMSO: 12 g/100 g
Acetone 0.615 g/100 g
Methanol: 0.09 g/100 g
Pharmacology
QP53BC02 (WHO)
Except where otherwise noted, data are given for materials in their standard state (at 25 °C [77 °F], 100 kPa).
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Diflubenzuron is an insecticide of the benzoylurea class.[2] It is used in forest management and on field crops[3] to selectively control insect pests, particularly forest tent caterpillar moths, boll weevils, gypsy moths, and other types of moths.[1] It is a widely used larvicide in India for control of mosquito larvae by public health authorities. Diflubenzuron is approved by the WHO Pesticide Evaluation Scheme.[1]

Mechanism of action

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The mechanism of action of diflubenzuron involves inhibiting the production of chitin which is used by an insect to build its exoskeleton. It triggers insect larvae to molt early without a properly formed exoskeleton, resulting in the death of the larvae.

Environmental toxicity

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Diflubenzuron has been evaluated by the United States Environmental Protection Agency (EPA), and it is classified as non-carcinogenic. 4-Chloroaniline, a metabolite of diflubenzuron which has been classified as a carcinogen, is produced after diflubenzuron has been ingested. The small amount converted to 4-chloroaniline after ingestion is not sufficient to cause cancer.[4]

Commercial uses

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A commercial preparation containing diflubenzuron is sold under the trade name Adept and is used as an insect growth regulator designed to kill fungus gnat larvae in commercial greenhouses.[5][6] It is applied to infected soil and will kill fungus gnat larvae for 30–60 days from a single application. Although it is targeted at fungus gnat larvae, care should be taken in applying it as it is highly toxic to most aquatic invertebrates. It has no toxic effects on adult insects, only insect larvae are affected. Diflubenzuron can cause serious foliar injury to plants in the spurge family and certain types of begonia, particularly poinsettias, hibiscus and reiger begonia and should not be applied to these plant varieties.[5][6]

Diflubenzuron is used as a larvicide in the cattle farming industry. Sold under the name Vigilante, it is formulated as a bolus and is used to control fly populations.[7]

References

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  1. ^ a b c Diflubenzuron Pesticide Information Profile, Extension Toxicology Network
  2. ^ Junquera, Pablo; Hosking, Barry; Gameiro, Marta; Macdonald, Alicia (2019). "Benzoylphenyl ureas as veterinary antiparasitics. An overview and outlook with emphasis on efficacy, usage and resistance". Parasite. 26: 26. doi:10.1051/parasite/2019026. ISSN 1776-1042. PMC 6492539. PMID 31041897. Open access icon
  3. ^ Johnson, Douglas (2016). "Insecticide Recommendations for Soybeans - 2016" (PDF). Cooperative Extension Service. University of Kentucky: College of Agriculture, Food and Environment. Archived from the original (PDF) on 9 March 2016. Retrieved 16 February 2016.
  4. ^ "Reregistration Eligibility Decision Diflubenzuron" (PDF). Environmental Protection Agency. Retrieved 16 November 2016.
  5. ^ a b "ADEPT Insect Growth Regulator" (PDF).
  6. ^ a b "Adept label" (PDF).
  7. ^ Kydonieus, Agis F. (2017-10-02). Treatise on Controlled Drug Delivery: Fundamentals-optimization-applications. Routledge. ISBN 9781351406871.

📚 Artikel Terkait di Wikipedia

Fungus gnat

Commercial greenhouses typically employ the insect growth regulator diflubenzuron for control of fungus gnats and their larvae. It is applied to infected

Benzoylurea insecticide

was discovered serendipitiously at Phillips-Duphar who commercialised diflubenzuron in 1975. Since then, many BPUs were commercialised by many companies

Pine processionary

second-stage caterpillars (in September or October), or insecticides such as diflubenzuron, an insect growth regulator, which can be sprayed from aircraft. Monitoring

Pyriproxyfen

Pyriproxyfen (0,5 G) e de todos os inibidores de crescimento como o Diflubenzuron e o Novaluron, ou qualquer outro produto químico ou biológico em água

Insect growth regulator

chitin synthesis inhibitors are the benzoyl ureas (BPUs). The first BPU, diflubenzuron, was commercialised by Phillips-Duphar in 1975. Since then, many BPUs

Flufenoxuron

the benzoylurea chitin synthesis inhibitor group, which also includes diflubenzuron, triflumuron, and lufenuron. Flufenoxuron is used as an insecticide

Insecticide

Scheele's Green Insect growth regulators Benzoylureas (Bistrifluron, Diflubenzuron, Flufenoxuron, Lufenuron, Novaluron, Noviflumuron) Hydroprene Methoprene

Spined soldier bug

affected by pyrethroids. Certain insecticides, like diafenthiuron and diflubenzuron, are not highly toxic through residual contact but can be harmful when