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Insecticidal 2-hydroxy-3-alkyl-1,4-naphthoquinones: correlation of inhibition of ubiquinol cytochrome c oxidoreductase (complex III) with insecticidal activity.

The insecticidal and in vitro activities of four homologous series of 2-hydroxy and acetoxy-3-substituted-1,4-naphthoquinones have been measured and correlated with their (Log) octanol/water partition coefficients (Log Ko/w). In vitro activity against mitochondrial complex III was only exhibited by 2-hydroxy-3-alkyl-1,4-naphthoquinones, indicating that the 2-acetoxy compounds act as proinsecticides. Good correlation was observed between in vivo activity against the two-spotted spider mite, Tetranychus urticae and inhibition of complex III isolated from blowfly flight muscle. Both hydroxy and acetoxy analogues of individual compounds exhibited similar levels of in vivo activity with optimum activity for analogues with Log Ko/w values of 7-8. In contrast, the acetoxy derivatives showed superior in vivo activity against the tobacco whitefly, Bemisia tabaci. Complex III isolated from whitefly was optimally inhibited by hydroxy analogues with lower Log Ko/w values (6.0-6.5) and was also more sensitive than the blowfly enzyme to all the compounds tested.

Algorithms↗

Chemical models of cytochrome P450 catalyzed insecticide metabolism. Application to the oxidative metabolism of carbamate insecticides.

Cytochrome P450 (CP450) catalyzed oxidative metabolism of carbofuran (1), carbaryl (2), and pirimicarb (3) has been modeled using biomimetic oxidations catalyzed by iron(III) tetraarylporphyrins. Oxidation products of 1 were identified by comparison of HPLC retention times measured under standardized conditions for metabolites synthesized and characterized by (1)H and (13)C NMR spectroscopy. Comparison of product distributions to in vivo metabolic profiles revealed that the H(2)O(2)/meso-tetrakis(pentafluorophenyl)porphyrin iron(III) chloride [Fe(TF(20)PP)] system mimics the action of insect CP450s against carbofuran. The effectiveness of this system was further demonstrated by the biomimetic oxidation of other carbamate insecticides (2 and 3) monitored by HPLC/electrospray MS. The predictive power of this biomimetic model was compared to that of knowledge-based expert systems. Although similar models were recently applied in pharmaceutical research, the usefulness of this approach has first been demonstrated for the prediction of metabolic profiles of agrochemicals.

Animals↗

Insecticide fingerprinting technique for detection and location of organochlorine insecticide residues in foods.

Insecticide fingerprinting technique enables the detection and location of DDT and HCH residues in vegetables through the development of green and prussian blue colors respectively. Cut vegetables are pressed against o-tolidine impregnated paper and exposed to sunlight where colored spots appear instantly. The studies on 18 vegetable varieties revealed the pesticide residues and their distribution in different tissues. This direct method is sensitive (0.3/micrograms for HCH & 0.5/micrograms for DDT) and has special applications in quality control laboratories and food industry.

DDT↗

Testing Anopheles albimanus for genetic linkage of insecticide resistance genes by combining insecticide bioassay and biochemical methods.

A microtitre-plate assay which distinguishes propoxur-resistant from susceptibles Anopheles albimanus Weidemann was used to test for linkage between the genes for propoxur- and dieldrin-resistance. The adult progeny of a backcross between a doubly-resistant colony and a fully susceptible colony were exposed in conventional test kits to the standard discriminating dose of dieldrin, and kept in the insectary overnight. Both live and dead insects were then assayed individually for propoxur-resistance. The results showed that heterozygotes for propoxur-resistance could be reliably distinguished from susceptibles whether or not they had been killed up to 24 h previously by dieldrin treatment. In this way all the backcross progeny could be scored at both resistance loci, and all four genotypic classes identified. Resistant and susceptible alleles at the two loci were inherited independently, demonstrating the absence of linkage. The usual method of testing for linkage between resistance genes is inefficient and open to bias, because insects have to be exposed to each insecticide in turn, and only half of them can be scored at both loci. The method shown here avoids these drawbacks.

Alleles↗

Evaluation of compounds for insecticidal activity on adult mosquitos. 1. Responses of adult mosquitos to some new insecticides.

Responses shown by female mosquitos to topical applications of solutions, to deposits from water-dispersible-powder formulations, or to exposure to the vapour from such deposits, are described for a number of compounds that have shown promise as residual contact insecticides.The behaviour of Anopheles stephensi females in laboratory tests indicates that departures of mosquitos from treated buildings, and their survival rates, are likely to be increased as a result of irritation and consequent activity after only a brief period of contact with phthalthrin (OMS-1011) and other synthetic pyrethroids but not with dieldrin (OMS-18) and lindane (OMS-17) or the carbamates and organophosphorus compounds tested. Mosquitos were not disturbed by exposure to the vapour from deposits of any of the compounds.The rates of action of the different compounds following their application in solution directly to the insect cuticle or contact of the mosquitos with deposits on plywood and plaster emphasize the importance of the lipid-solubility and partitioning properties of an insecticide in determining its passage from a surface deposit into, and through, the cuticle to the site of action.

Animals↗

Evaluation of compounds for insecticidal activity on adult mosquitos. 4. Insecticidal activity and physical properties of some halogenated organophosphorus esters.

The effects of changes in structure upon toxicity to adult mosquitos and upon physical properties which are important in determining contact effectiveness and residual activity are described for a group of O,O-dialkyl O-halogenated-phenyl phosphates, phosphorothionates and phosphamido(thio)ates. This group includes such established insecticides as fenchlorphos, bromophos and iodofenphos.

Animals↗

Insecticide-induced inhibition of thyroid activity in the fish Oreochromis mossambicus and recovery in insecticide-free water.

The histological and histochemical state of the thyroid gland of Oreochromis mossambicus was analyzed after 20 days' exposure of the fish to BHC (p less than 0.001 ppm). Histological changes after exposure included acolloidal and atrophied follicles and goitre formation. Follicular and nuclear diameter and the E/T ratio were significantly (p less than 0.001) higher than in the corresponding controls. The above insecticide led to thyroid dysfunction. The histochemical characteristics of the gland also changed after BHC treatment. When exposed fish were transferred to normal, clear, dechlorinated water, the altered follicles displayed remarkable recovery of activity and thyroid function returned to almost the same state as in normal controls. Histological and histochemical evaluation at 10-day intervals revealed healthy functional restitution of the gland, indicating that BHC-induced changes are reversible.

Animals↗