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Analysis of the use of fenthion via epicutaneous in dogs for Rhipicephalus sanguineus control.

The action of fenthion was studied in a 15% epicutaneous formulation upon Rhipicephalus sanguineus, which may transmit pathogens to men and other animals, such as Ehrlichia, Babesia and Ricketsia. Dogs were artificially infected for the trial. The fenthion bioassays were begun four months after artificial infestation. The test group, having a mean of 186 ticks per dog, received the formulation dosage according to body weight on the neck region. Tick counts were performed, considering diameters > or = 2mm, during 11 days of treatment, in the most affected body areas: back, ears and paws. Before the application of fenthion in the dogs, it were observed an average 43.3% ticks in the ears, 38.1% in the back area and 17.6% in the paws. The number of ticks in dogs decreased by 36.2%, 63.8%, 82.7%, 67%, 40% and 4.9%, respectively on days 1, 2, 3, 5, 7, 9 and 11 after treatment. R. sanguineus anti-tick activity, lower than that officially recommended, was verified. The number of ticks increased progressively after the 5th day, demonstrating residual insecticide inefficacy. The results obtained did not indicate the use of this formulation, at the tested dosage, as an elective measure for R. sanguineus control.

Animals↗

Relative cost-effectiveness of treatment of feedlot calves with ivermectin versus treatment with a combination of fenbendazole, permethrin, and fenthion.

OBJECTIVE: To compare growth performance, animal health characteristics, and carcass characteristics of feedlot calves treated with ivermectin topically with that of feedlot calves treated with a combination of fenbendazole orally and permethrin and fenthion topically. DESIGN: Clinical trial. ANIMALS: 14,184 British crossbred steer calves (mean weight, 286 kg [630 lb]) in 30 pens at a commercial feedlot in Nebraska. PROCEDURE: On arrival at the feedlot, calves were randomly assigned to be treated with ivermectin topically or with a combination of fenbendazole orally and permethrin and fenthion topically (control). At the time of assignment to treatment groups, fecal samples were collected from 5% of the calves. Growth performance, carcass characteristics, and health information were recorded. RESULTS: Geometric mean fecal egg counts at the time of arrival at the feedlot were not significantly different between groups. Final weight, weight gain, average daily gain, and the dry matter intake-to-gain ratio were significantly improved for calves in the ivermectin group. The percentage of carcasses classified as quality grade choice was higher for the ivermectin group than the control group; however, the percentage of carcasses classified as yield grade 1 and the dressing percentage were higher for the control group than for the ivermectin group. CONCLUSIONS AND CLINICAL RELEVANCE: Results suggest that topical administration of ivermectin to feedlot calves is relatively more cost-effective than administration of a combination of fenbendazole orally and permethrin and fenthion topically.

Administration, Oral↗

Observation on a human intentional poisoning case by the organophosphorus insecticide fenthion.

A case of acute poisoning by oral ingestion of fenthion is reported. Plasma cholinesterase activity and fenthion whole blood concentration were thoroughly evaluated during the therapeutic intervention that consisted in administration of atropine, toxogonine and fresh plasma. Correlation studies between clinical signs, cholinesterase activity and fenthion levels revealed that pChE activity was not as helpful as the patient's clinical status in determining when the atropine infusion could be stopped. Moreover pChE was also useless in signaling sudden relapses. It is concluded, based on this case, that supportive care combined with antidotal therapy remains the cornerstone of treatment specially in severe acute poisoning cases.

Adult↗

STUDIES ON THE MAMMALIAN TOXICITY OF FENTHION.

This paper constitutes a report on mammalian toxicological investigations of fen hion, carried out as part of the WHO malaria eradication programme, and on the conclusions drawn from them. Fenthion is found to be of intermediate toxicity to the four rodent species studied. In rats the signs of poisoning develop rather slowly but persist for several days, male rats being more susceptible than females, whereas for most phosphorothionates the converse is true. The results suggest that fenthion is not simply oxidized from the P=S compound to the P=O. It has been stated that the sulfoxide and sulfone are produced before the P=S-->P=O oxidation takes place, but experiments suggest that further changes are involved. The findings are discussed in relation to the possible health hazard that might be encountered by those who have to apply fenthion as a residual spray.

Animals↗

A comparison of two ultra-low-volume spray nozzle systems by using a multiple swath scenario for the aerial application of fenthion against adult mosquitoes.

Two hydraulic spray nozzle systems, a flat fan and a high-pressure hollow cone, were used for ultra-low-volume application of the mosquito adulticide fenthion under a multiple swath scheme. Eight swaths at 322-m intervals were applied from a height of 91 m to simulate operational conditions. Deposition, effects on nontarget organisms (fiddler crabs), aerial flux, and mosquito (Ochlerotatus taeniorhynchus) mortality were monitored for 8,230 m downwind, including the area under all 8 swaths. The flat-fan nozzle system deposited 88 times the amount of fenthion deposited by the high-pressure system in a lightly vegetated zone directly beneath the application area (0-2,134 m). Further downwind (2,286-4,420 m) in the 2nd semiopen urban zone, 10.5 times more chemical was deposited with the flat-fan nozzles than with the high-pressure nozzles, and in the 3rd highly vegetated zone (4,572-8,230 m), 25 times more was deposited compared with high-pressure nozzles. The corresponding nontarget mortalities with the flat-fan nozzle were 80, 12, and 17% at 2,438, 3,658, and 4,572 m, respectively. No treatment-induced mortality was observed with high-pressure nozzles. Similar amounts of fenthion residue were recovered from yarn samples for both nozzle systems, with the exception of the zone directly under the flight paths, where the flat-fan system deposited 2.5 times the amount recovered with the high-pressure system. Mosquito mortality was similar between the 2 nozzle types except in the farthest zone, where the average mortalities for the high-pressure system and the flat-fan system were 73.4 and 34.8%, respectively. Regression analysis of the mosquito mortality and yarn samples showed that the high-pressure hollow-cone application could control mosquitoes with half the amount of chemical compared to flat-fan nozzles.

Aerosols↗

Ultrastructural studies on the effect of fenthion on pituitary (GTH cells) and testis of Glossogobius giuris. (HAM) during breeding phase.

Pesticide (fenthion) which finds its way into water bodies, bring about physiological changes in aquatic animals, via histomorphology and histopathology of various tissues. In fishes, it induces disorders including hyposecretion of gonadotropin in the PPD and regression of gonads. Light microscopic studies were made on control and treated pituitary (gonadotropin secreting cells-GTH) and testis of Glossogobius giuris (HAM) during spawning phase after exposing them to different (0.05 to 0.5 ppm) sub-lethal concentration of fenthion for a short-term period (24 to 96 hrs). The results indicated alteration in normal histology of gonadotropin secreting cells and testis, reduction in number of sperms and degranulation of GTH cells under light microscopy. Degeneration and fragmentation of cytoplasmic organelles was noticed in GTH cells under electron microscope, with the increase in the sub-lethal concentration of fenthion. Significance of the results is discussed in detail in the manuscript.

Animals↗

A study of the pesticide fenthion: toxicity, mutagenicity, and influence on tissue enzymes.

In this paper results of acute toxicity (oral and dermal), cumulative toxicity, subchronic toxicity, and conjunctiva irritation tests are reported. The mutagenic effects of fenthion, using SCE (in vivo) and UDS (in vitro) as indicators, were also tested. Histochemical changes in enzyme activities (including AChE, ATPase, and AKP) in tissues were observed. The results showed that the acute toxicity of fenthion belongs to highly toxic category. The highly cumulative effect of fenthion was also observed. The subchronic toxicity test, however, did not reveal any abnormal effects except the inhibition of ChE activity in plasma. The dose and ChE activity relationship equation was Y = 0.82x + 4.71. The SCE and UDS tests revealed no mutagenic potential. In histochemical experiments we found that AChE activity in tissues was markedly inhibited. AKP and ATPase activities at the cortex renis were increased in the treated rats.

Acetylcholinesterase↗

Bioassay of fenthion for possible carcinogenicity (CAS No. 55-38-9).

A bioassay of fenthion for possible carcinogenicity was conducted by administering the test chemical in feed to F344 rats and B6C3F1 mice. Groups of 50 rats of each sex and 50 mice of each sex were administered fenthion in the diet at one of two doses, either 10 or 20 ppm, for 103 weeks and then observed for 0 to 2 additional weeks. Matched controls consisted of groups of 25 untreated animals of each species and sex. All surviving animals were killed at 103 to 105 weeks. The mean body weights and the survival of the dosed animals were essentially unaffected by administration of the test chemical with the exception of the survival of the low-dose male mice, which was significantly lower than that of the corresponding matched control. Thus, most of the animals may have been able to tolerate higher doses. Sufficient numbers of animals in all groups of rats and mice were at risk for development of late-appearing tumors. In the male and female rats and the female mice, no tumors occurred at incidences that were significantly higher in dosed groups than in control groups. In the male mice, sarcomas, fibrosarcomas, or rhabdomyosarcomas of the integumentary system occurred at incidences that were dose related (P=0.043). In direct comparisons of the incidences of these tumors in the dosed groups with the incidence in the control group, the P values of 0.048 and 0.028 for the low- and high-dose groups, respectively, did not meet the Bonferroni criterion of P=0.025 for significance when multiple comparisons are made (controls 0/25, low-dose 7/49 or 14%, high-dose 8/48 or 17%). However, the incidence of sarcomas and fibrosarcomas in historical-control male B6C3F1 mice used in bioassays of other chemicals tested at this laboratory was 7/435 (1.6%), and no rhabdomyosarcomas occurred in the historical-control male mice. It is concluded that under the conditions of this bioassay, fenthion was not carcinogenic for male or female F344 rats or for female B6C3F1 mice. The increased incidence of sarcomas, fibrosarcomas, and especially rhabdomyosarcomas of the integumentary system in the male B6C3F1 mice suggested that the test chemical was carcinogenic in these animals.

Journal Article↗

Photolysis of pesticides: influence of epicuticular waxes from Persica laevis DC on the photodegradation in the solid phase of aminocarb, methiocarb and fenthion.

Pesticides with N,N-dimethyl and thiomethyl moieties (aminocarb, methiocarb and fenthion) were irradiated under artificial light (lambda > 290 nm) in an amorphous wax phase from Persica laevis DC. The effect of the presence of the wax on the photolysis rate differed in the three pesticides, increasing it in aminocarb, having little effect in methiocarb and slowing it down in fenthion. The presence of the wax affected the qualitative photodegradation behaviour of all the pesticides. The data obtained were compared with those for pirimicarb, which had been studied earlier.

Carbamates↗

In vitro cytotoxicity of fenthion and related metabolites in human neuroblastoma cell lines.

The aim of our research was the evaluation in vitro of the neurotoxic effects of fenthion and its metabolites on human neuroblastoma cells, as a model for their toxicity in humans. The results indicate that 24 hours exposure was sufficient to produce dose related effects on SK-N-BE and IMR 32 cell viability causing detachment and loss of cells at the effective doses. In the two cell lines fenthion metabolites display an increased cytotoxicity respect to the parent compound with a distinct pattern of toxicity on neurons. Our data suggest that cultured neuronal cells of human origin are discriminating experimental systems, sensitive to minor differences, of correlating in vivo and in vitro neurotoxicants.

Cell Survival↗

The disease-resistance gene Pto and the fenthion-sensitivity gene fen encode closely related functional protein kinases.

Resistance to bacterial speck in tomato is governed by a gene-for-gene interaction in which a single resistance locus (Pto) in the plant responds to the expression of a specific avirulence gene (avrPto) in the pathogen. Disease susceptibility results if either Pto or avrPto are lacking from the corresponding organisms. Leaves of tomato cultivars that contain the Pto locus also exhibit a hypersensitive-like response upon exposure to an organophosphorous insecticide, fenthion. Recently, the Pto gene was isolated by a map-based cloning approach and was shown to be a member of a clustered multigene family with similarity to various protein-serine/threonine kinases. Another member of this family, termed Fen, was found to confer sensitivity to fenthion. The Pto protein shares 80% identity (87% similarity) with Fen. Here, Pto and Fen are shown to be functional protein kinases that probably participate in the same signal transduction pathway.

Amino Acid Sequence↗

Acute and delayed effects of fenthion in young chicks.

The effects of desbromoleptophos, fenitrothion, and fenthion on brain acetylcholinesterase (AChE), brain neurotoxic esterase (NTE), and walking were investigated in immature chicks, below the age of organophosphorus ester-induced delayed neurotoxicity (OPIDN). Seventy-five milligrams per kilogram of the delayed neurotoxicant desbromoleptophos (DBL) and 100 mg/kg of the nonneurotoxicant fenithrothion (FTR) were given orally to 8-d-old chicks. Five milligrams per kilogram of the suspected neurotoxicant fenthion (FEN) was administered topically for 7 d, in 4 different age groups. Behavioral testing was performed for treated and control chicks on various days after treatment. Brain NTE and AChE assays were carried out for treated and control chicks on each day of behavioral testing. NTE and AChE inhibition were around 80 and 50%, respectively, 24 h after treatment, for the chicks treated with DBL. NTE returned to normal levels by 20 d and AChE by 6 d after treatment. FTR caused 56% AChE inhibition but not NTE inhibition 24 h after treatment. NTE inhibition for the FEN-treated chicks never exceeded 25% during the whole period of the experiment, whereas 65 and 54% inhibition of AChE was seen in two age groups. DBL and FEN significantly altered the gait of treated chicks, but the non-OPIDN-inducing FTR did not. FEN-treated chicks developed an atypical ataxia at the normal age for onset of sensitivity to OPIDN. Minimal NTE inhibition, long latency for the development of ataxia, and immaturity of the chicks at treatment distinguish FEN-induced functional deficits from classical OPIDN.

Acetylcholinesterase↗

Alleles of Pto and Fen occur in bacterial speck-susceptible and fenthion-insensitive tomato cultivars and encode active protein kinases.

The Pto gene was derived originally from the wild tomato species Lycopersicon pimpinellifolium and confers resistance to Pseudomonas syringae pv tomato strains expressing the avirulence gene avrPto. The Fen gene is also derived from L. pimpinellifolium and confers sensitivity to the insecticide fenthion. We have now isolated and characterized the alleles of Pto and Fen from cultivated tomato, L. esculentum, and designated them pto and fen. High conservation of genome organization between the two tomato species allowed us to identify the pto and fen alleles from among the cluster of closely related Pto gene family members. The pto and fen alleles are transcribed and have uninterrupted open reading frames that code for predicted proteins that are 87 and 98% identical to the Pto and Fen protein kinases, respectively. In vitro autophosphorylation assays revealed that both the pto and fen alleles encode active kinases. In addition, the pto kinase phosphorylates a previously characterized substrate of Pto, the Pto-interacting Pti1 serine/threonine kinase. However, the pto kinase shows impaired interaction with Pti1 and with several previously isolated Pto-interacting proteins in the yeast two-hybrid system. The observation that pto and fen are active kinases and yet do not confer bacterial speck resistance or fenthion sensitivity suggests that the amino acid substitutions distinguishing them from Pto and Fen may interfere with recognition of the corresponding signal molecule or with protein-protein interactions involved in the Pto- and Fen-mediated signal transduction pathways.

Alleles↗

Severe fenthion intoxications due to ingestion and inhalation with survival outcome.

Two cases of severe fenthion intoxication are presented. The first is a case of a psychiatric patient who attempted suicide with ingestion of the compound, and the second case was of a child exposed to the chemical agent by air spraying. Both patients were treated in the intensive care unit with atropine and pralidoxime and finally survived. Fenthion blood levels on admission were 2.7 and 0.95 microg/mL, respectively. Different concentrations of pralidoxime were added to the first patient's poisoned serum in order to assess in vitro the effect of pralidoxime on cholinesterase reactivation. The clinical and toxicological data of the poisonings are discussed, as well as the potential therapeutic use of pralidoxime in organophosphate intoxication.

Administration, Oral↗

Severe and prolonged poisoning by fenthion. Significance of the determination of the anticholinesterase capacity of plasma.

A case of acute poisoning by oral ingestion of fenthion is reported. The different clinical signs, especially the delayed and prolonged symptomatology, are described. The various types of therapeutic measures (gastric lavage with charcoal, administration of atropine, Toxogonine, lyophilized human cholinesterase, and fresh plasma and exchange transfusion) are discussed. Correlation studies between clinical signs and plasma and erythrocyte cholinesterase activities are presented together with plasma fenthion levels and the anticholinesterase capacity of the patient's plasmas.

Adult↗

Research note: ability of fenthion to increase gizzard erosion in broiler chicks.

Fenthion, an irreversible cholinesterase inhibitor, was used to study the role of the cholinergic system on the development of gizzard erosion. Fenthion increases the gizzard erosion score in a dose-dependent manner and this effect became significant at levels higher than .1 ppm (p less than .05). An inverse relationship between plasma cholinesterase activity and pesticide concentration was also observed at doses higher than 1 ppm (P less than .05). These results show the necessity to evaluate organophosphate pesticide levels during the selection of fish meals in poultry.

Animals↗

Ultrastructural changes in testis of gobiid fish Glossogobius giuris (Ham) induced by fenthion.

Pesticides are known to affect the testis in fishes and cause cytomorphological changes or gross physiological alterations due to changes in its histology, retard gonadotrophic secretions thereby causing regression of the gonads. Light and ultrastructural studies were made on control and fenthion treated testis, interstitial gland and sperms of G. giuris during spawning phase after exposing them to different sub-lethal concentrations (0.05, 0.25 and 0.5 ppm) fenthion for a short-term period (24, 48, 72 and 96 hr). The results indicated extensive cytotoxic damages in the testis including atrophy of testis, reduction in lipoidal material in the interstitial cell and degeneration of sperms. The alteration in histology of testis, interstitial cell and sperms progressively increased with the increase in the sub-lethal concentration of pesticides.

Animals↗

Effectiveness of slow release formulations of fenthion (Baytex) in the control of Mansonia breeding in polluted pond habitats.

Effectiveness of two types of granular formulations of fenthion (Baytex) was evaluated in controlling the breeding of Mansonia mosquitos in polluted pond habitats. Calcium carbonate and sand granular formulations, when applied at 2.50 g/m2 surface area with an average depth of 0.5 m were found to be effective in keeping the habitats completely free from Mansonia breeding for 14 days and 18 days respectively. Release of insecticide was slow and the effective duration of control after a single application was relatively longer in the sand formulation when compared to the calcium carbonate formulation. Single application of calcium carbonate and sand granular formulations of fenthion could effectively prevent Mansonia adult emergence for 23 and 30 days, respectively in polluted pond habitats, without causing any adverse effect on non-target insects.

Animals↗