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At least 19 recordsLinked to original sources

Development of a cell culture/ELISA assay to detect anticoagulant rodenticides and its application to analysis of rodenticide treated grain.

This study describes a generic biological screening assay designed to detect anticoagulant rodenticides based on their inhibitory action on the vitamin K epoxide reductase protein complex, resulting in an accumulation of under-carboxylated prothrombin or proteins induced by vitamin K antagonism (PIVKA-II). A combined cell culture/ELISA assay was optimized to measure PIVKA-II production by the human hepatoma HepG2 cell line cultured in the presence of anticoagulant rodenticides. The specificity and sensitivity of the assay was validated using 41 grain extracts containing representative concentrations of rodenticide or appropriate nonrodenticide control compounds. In all cases, PIVKA-II produced by HepG2 cells in response to grain extracts spiked with rodenticides was detected by ELISA, while PIVKA-II was not detected in supernatants collected from cells exposed to nonrodenticide controls. This represents a novel, class-specific biological assay for the detection of anticoagulant rodenticides present in contaminated grain.

Anticoagulants↗

Rodenticide poisoning among children.

We aimed to determine the nature, extent and sequence of events of accidental childhood poisoning with rodenticides and identify potential intervention strategies. Subjects were identified prospectively from callers to the Victorian Poisons Information Centre and those presenting to the Emergency Departments of hospitals participating in the Victorian Injury Surveillance System from 1 April to 31 December 1993. The events preceding rodenticide ingestion were examined via telephone questionnaire involving 128 parents or guardians of children under five years exposed to rodenticides. Rodenticides are not leading agents for severe poisoning but are a frequent and increasing cause of less severe poisoning. Most children (90 per cent) had obtained the rodenticide from the site at which it had been laid, usually by the caregiver (67 per cent), in the kitchen, lounge room or laundry, inside cupboards or-wardrobes. In 69 per cent of these cases, respondents thought the site would not normally allow access to children. Only 13 per cent of children were admitted to hospital, although 41 per cent sought medical attention. Most caregivers (90 per cent) were aware of some dangers associated with rodenticides. Children usually ingest insufficient amounts of rodenticide to cause serious effects. However, medical assessment and monitoring of prothrombin times is often indicated, with a consequent cost to the healthcare system. Potential countermeasures, focusing on packaging and positioning of rodenticide baits, product reformulation, and the distribution of management guidelines for health workers, were identified. Implementation of the identified countermeasures was initiated by a workshop involving stakeholders from industry, research and health professions.

Accident Prevention↗

High-performance liquid chromatographic strategies for the determination and confirmation of anticoagulant rodenticide residues in animal tissues.

A comprehensive approach to the analysis of anticoagulant rodenticide residues in animal tissues based on high-performance liquid chromatography (HPLC) has been developed. Residues of warfarin, coumatetralyl, difenacoum, brodifacoum, bromadiolone, diphacinone and chlorophacinone were extracted with chloroformacetone (1:1, v/v). Extracts were cleaned-up by an integrated gel permeation and adsorption chromatographic procedure which divided the rodenticides into two groups. Residues were then determined and confirmed using normal-phase, ion-pair and weak ion-exchange HPLC techniques. Ion-pair gradient separation resolved all seven rodenticides in a single chromatographic analysis. UV detection methods were employed for all seven rodenticides. Use of a diode array detection system permitted additional confirmation of residues down to 0.1 mg kg-1 by matching UV spectra and derivatives of spectra. Sensitive fluorescence detection was possible for the coumarin-based rodenticides but not for diphacinone and chlorophacinone. Post-column pH-switching fluorescence detection methods were shown to be superior to other methods of fluorescence detection of coumarin-based rodenticides. Recoveries from spiked liver tissue were around 90% at levels from 0.05 to 1 mg kg-1. Detection limits of around 0.002 mg kg-1 for most rodenticides and of 0.01 mg kg-1 for warfarin could be achieved with animal tissue extracts.

Animals↗

[Rodent control: review of rodenticides registered in the field of environmental health in Spain].

The use of what are known as "rodenticides", defined as biocides used for rodent control, is currently required. In the recent transposition of the Biocide Directive by way of Royal Decree 1054/2002, rodenticides are included under Main Group 3, Product Type 14. The current status of rodenticides in the Official Pesticide Registry is analyzed. This study has been conducted based on the data in the database of the Spain's Official Registry of Pesticides for Use in Public Health for rodenticides (technical and formulated active ingredients). Nine (9) of the technical active ingredients registered are anticoagulants, one (1) has a sedative effect and one (1) causes hypercalcemia. A total of 412 of the 416 formulated rodenticides include some anticoagulant (87.4% are coumarin derivatives, while 12.6% are indandione derivatives). A total 94.2% of these products are formulated as solids and are classified as slightly or moderately hazardous. Aspects such as effectiveness on the different species or the type of effect are not required. Based on the analysis conducted, the one outstanding aspect revealed is large number of formulated rodenticides registered in Spain in comparison to other countries. One of the major consequences which may be anticipated from the transposition of EC Directive 98/9/EC, is the reduction in the number and type of rodenticides which are registered and a greater degree of accuracy as to their effectiveness, the type of effect, the composition (baiting) and the type of formulation.

Animals↗

Evaluation of two rodenticides in the paddy fields during Samba and Thaladi seasons.

The single dose anticoagulant rodenticide, bromadiolone (0.005%) and the acute rodenticide, zinc phosphide (2%) were evaluated in the paddy fields during Samba and Thaladi seasons for two crop stages, viz. 20 and 40 days after transplantation. Three baiting methods namely, burrow, station and burrow+station were adopted for both rodenticides. Both the rodenticides were exposed for one and two days in the partitioned plots. In the plots with 20 days after transplantation, the two day exposure of both rodenticides in burrow+station baitings during both seasons cleared cent percent rodent population. The cost-benefit ratio of the employed rodenticides favoured zinc phosphide than bromadiolone. Thus, zinc phosphide is deemed to be an economic rodenticide than bromadiolone and it can be suggested for the control of rodent population with two day exposure by burrow+station baiting methods preferably 20 days after transplanted paddy fields in both seasons.

4-Hydroxycoumarins↗

Anti-coagulant rodenticide binding properties of human serum albumin: a biochromatographic approach.

In this paper, the anti-coagulant rodenticide-human serum albumin (HSA) binding was investigated using a perturbation method to calculate the solute distribution isotherms. It was shown that rodenticide can bound either on the benzodiazepine HSA site with low affinity (site I) or on the warfarin HSA site with high affinity (site II). The thermodynamic parameters of this association were calculated for the two HSA binding sites. For the site II, the rodenticide-HSA association was governed enthalpically whereas for the site I, this one was driven entropically. Moreover, the role of the magnesium (Mg(2+)) and calcium (Ca(2+)) on this association was carried out. It was clearly demonstrated that the rodenticide affinity for the site I was not affected by modifying the bulk solvent surface tension whereas for the site II the association constant increased strongly with the Mg(2+) or the Ca(2+) concentration in the bulk solvent. These results showed that the rodenticide-HSA affinity and thus the rodenticide toxicological effect depends on the Mg(2+) or Ca(2+) concentration.

Anticoagulants↗

Association mechanism between a series of rodenticide and humic acid: a frontal analysis to support the biological data.

The binding constants (K) of a series of anticoagulant rodenticides with the main soil organic component, humic acid (HA), were determined using frontal analysis approach. The order of the binding constants was identical as the one obtained in a previous paper [J. Chromatogr. B 813 (2004) 295], i.e. bromadiolone>brodifacoum>difenacoum>chlorophacinone>diphacinone, confirming the power of this frontal analysis approach for the determination of binding constants. Moreover, and for the first time, the concentration of unbound rodenticide to HAs could be determined. Thanks this approach, we could clearly demonstrate that HA acid protected the human hepatoma cell line HepG2 against the cytotoxicity of all the rodenticides tested and that the toxicity of rodenticides was directly linked to the free rodenticide fraction in the medium (i.e. unbound rodenticide to HA).

Animals↗

Aldicarb poisoning by an illicit rodenticide imported into the United States: Tres Pasitos.

OBJECTIVE: Although intentional and unintentional rodenticide poisoning is common, most readily available agents are of relatively low acute toxicity. A four-year long epidemic of severe toxicity from rodenticide exposure continues among patients predominantly of Dominican descent living in New York City. This study characterizes the ongoing epidemic of acute cholinesterase inhibitor poisoning due to an illicit rodenticide and identifies its etiology. METHODS: A prospectively collected case series of poisoned patients referred to the New York City Poison Control Center. The main outcome measures include the clinical characteristics upon presentation, antidotal and other therapeutic requirements, and patient outcome. Product analysis was performed with paper chromatography, gas chromatography/mass spectrometry, and high-performance liquid chromatography. A murine model assessing both clinical effect and cholinesterase activity was also performed. RESULTS: Thirty-five patients were referred following exposure to Tres Pasitos. Patients developed signs of cholinergic hyperactivity and many required high doses of atropine (>10 mg) to control these symptoms. The source was identified as a rodenticidal compound sold illicitly in local groceries primarily within the Dominican community. Murine cholinesterase activity fell significantly following exposure to the rodenticide. High-performance liquid chromatography identified aldicarb, an extremely potent carbamate-type cholinesterase inhibitor, not licensed for rodenticidal use in this country. CONCLUSION: Illicit sale of undocumented compounds poses a substantial public health threat. Despite several public health interventions, the epidemic continues.

Adolescent↗

Anticoagulant rodenticides.

Anticoagulant pesticides are used widely in agricultural and urban rodent control. The emergence of warfarin-resistant strains of rats led to the introduction of a new group of anticoagulant rodenticides variously referred to as 'superwarfarins', 'single dose' or 'long-acting'. This group includes the second generation 4-hydroxycoumarins brodifacoum, bromadiolone, difenacoum, flocoumafen and the indanedione derivatives chlorophacinone and diphacinone. Most cases of anticoagulant rodenticide exposure involve young children and, as a consequence, the amounts ingested are almost invariably small. In contrast, intentional ingestion of large quantities of long-acting anticoagulant rodenticides may cause anticoagulation for several weeks or months. Occupational exposure has also been reported. Anticoagulant rodenticides inhibit vitamin K(1)-2,3 epoxide reductase and thus the synthesis of vitamin K and subsequently clotting factors II, VII, IX and X. The greater potency and duration of action of long-acting anticoagulant rodenticides is attributed to their: (i) greater affinity for vitamin K(1)-2,3-epoxide reductase; (ii) ability to disrupt the vitamin K(1)-epoxide cycle at more than one point; (iii) hepatic accumulation; and (iv) unusually long biological half-lives due to high lipid solubility and enterohepatic circulation. Substantial ingestion produces epistaxis, gingival bleeding, widespread bruising, haematomas, haematuria with flank pain, menorrhagia, gastrointestinal bleeding, rectal bleeding and haemorrhage into any internal organ; anaemia may result. Spontaneous haemoperitoneum has been described. Severe blood loss may result in hypovolaemic shock, coma and death. The first clinical signs of bleeding may be delayed and patients may remain anticoagulated for several days (warfarin) or days, weeks or months (long-acting anticoagulants) after ingestion of large amounts. There are now sufficient data in young children exposed to anticoagulant rodenticides to conclude that routine measurement of the international normalised ratio (INR) is unnecessary. In all other cases, the INR should be measured 36-48 hours post exposure. If the INR is normal at this time, even in the case of long-acting formulations, no further action is required. If active bleeding occurs, prothrombin complex concentrate (which contains factors II, VII, IX and X) 50 units/kg, or recombinant activated factor VII 1.2-4.8 mg or fresh frozen plasma 15 mL/kg (if no concentrate is available) and phytomenadione 10mg intravenously (100 microg/kg bodyweight for a child) should be given. If there is no active bleeding and the INR is < or =4.0, no treatment is required; if the INR is > or =4.0 phytomenadione 10mg should be administered intravenously.

Animals↗

Poisonings associated with illegal use of aldicarb as a rodenticide -- New York City, 1994-1997.

Although rodenticides historically have been among the most toxic substances available to the public and have been implicated as agents in both unintentional and suicidal exposures, the anticoagulant agents currently in use, such as coumadin and their long-acting derivatives (e.g., brodifacoum), are relatively safe. In 1995, most persons who reported exposure to anticoagulant rodenticides did not develop symptoms or require specific therapy. However, during 1994-1997, the New York City Poison Control Center (NYCPCC) was consulted about 25 patients, primarily persons who had emigrated from the Dominican Republic, who had manifestations consistent with the cholinergic toxidrome, which is not characteristic of poisoning by the anticoagulant rodenticides, after ingesting a rodenticide known as Tres Pasitos ("Three Little Steps"). In each case, the product had been purchased at a neighborhood store for use as a household rodenticide. The Environmental Investigation Unit of the New York State Department of Environmental Conservation (NYDEC) investigated the poisoning incidents. Laboratory analysis indicated that the product contained the carbamate pesticide aldicarb (2-methyl-2-(methylthio)-propionaldehyde O-(methylcarbamoyl) oxime), which is not registered for use as a rodenticide in the United States. This report presents a detailed description of two of these cases and a summary of the remaining cases.

Adult↗

Second-generation rodenticides and polecats (Mustela putorius) in Britain.

In Britain, polecats Mustela putorius hunt around farm buildings, especially in winter, and, as a result, may be secondarily exposed to rodenticides by eating contaminated prey. This paper reports the first survey of second-generation rodenticides in polecats. Twenty-nine adult polecats which had been killed either accidentally on roads (24) and in traps (4), or had died of an unknown cause (1) were collected during 1992-1994. The livers of 24 animals and the stomach walls of the remaining five, for which the livers were not available, were analysed for difenacoum, bromadiolone, brodifacoum and flocoumafen. In total, rodenticide residues were detected in 31% of the polecats analysed. Residues were found in seven of the 24 livers (29%) and in two of the five stomachs analysed (40%). Difenacoum was detected most frequently (28% of animals), and was the only rodenticide in the stomach, while bromadiolone and brodifacoum were detected in only 10% and 3% of polecats, respectively. Flocoumafen was not detected in any animals. More than one rodenticide occurred in the livers of two animals; one contained difenacoum and bromadiolone, the other also contained brodifacoum. There was no sex bias in the proportion of animals containing rodenticides. Animals with detectable residues came from more than one county and were collected only during January-April in each year.

Journal Article↗

[Suicide and attempted suicide with rodenticides from 1968 to 2000].

INTRODUCTION: The paper reviews rodenticides in use in Yugoslavia, their mechanism of action, typical clinical picture as well as general and specific treatment of poisoning. OBJECTIVES: Our aim was to present interventions performed in urgent treatment considering the fact that the mortality rate in rodenticide poisoning, especially with zinc phosphide is really small. MATERIAL AND METHODS: The study included history data of patients who attempted and committed suicide with rodenticides. Data analysis was done in regard to the poison, sex, qualification, marital status, motives, underlying disease and interventions performed. RESULTS OF INVESTIGATION: The total number of attempts was 88, out of which 85 were attempted and 3 committed suicides, mostly with zinc phosphide: 34 attempted (40%) and 3 committed (100%). There were 66 (75%) patients with elementary school, 61 (69%) patients were married, 36% were workers and 35% housewives, while marital or family conflicts were motives for suicide in 52 (59%) patients. There were 30 (34%) patients with depression, 28 (32%) were alcoholics and 23 (26%) patients suffered from neurosis. In 17 patients (19%) ambulatory gastric lavage was done, while in 56 (64%) patients it was done in the hospital. DISCUSSION: Attempted and committed suicides were most commonly done with zinc phosphide, and then come rat poisons. A considerably small number of interventions were recorded in the surrounding outpatient clinics, but it is only natural, because the furthest outpatient clinic is about 40 km away, so patients can make it to the hospital within 20 minutes and get adequate medical care. Although gastric lavage was excessive with activated charcoal and laxans, most lavages were inadequate and performed with water, not solution of sodium-bicarbonate. CONCLUSIONS: Suicides with rodenticides are still actual in medicine. Women attempt and commit suicide with rodenticides more often. Zinc phosphide is the most frequently used poison. These patients must be admitted to hospital and observed for at least three days. Zinc phosphide poisoning requires excessive gastric lavage with sodium bicarbonate solution, application of charcoal, laxanes, calcium preparations with excessive osmotic diuresis, whereas in poisoning with coumarin preparations, apart from gastric lavage, application of charcoal and laxanes as well as excessive osmotic diuresis, vitamin K and Dicynone are necessary.

Female↗

Rodenticide-humic acid adsorption mechanisms and role of humic acid on their toxicity on human keratinocytes: chromatographic approach to support the biological data.

Humic substances are the most important soil components affecting the behaviour and performances of herbicides in the soil-water-organism system. In this paper, a chromatographic approach was used for analysis of anticoagulant rodenticide-humic acid adsorption mechanisms. Using an equilibrium perturbation method, it was clearly shown that: (i) humic acid can be adsorbed on the C18 stationary phase, and (ii) all the rodenticides can be adsorbed on the humic acid adsorbed on the C18 stationary phase. This approach allowed the determination of the adsorption constant values between the anticoagulant rodenticides and humic acid as well as the corresponding thermodynamic data of this adsorption mechanism. The role of humic acid on the toxicity of these rodenticides on human keratinocytes was also clearly described in relation to these physico-chemical data.

Adsorption↗

Rodenticides.

Rodenticides are second only to insecticides in the prevalence of pesticide exposure. Hundreds of rodenticide products currently exist, yet only a handful of them are involved in most toxicoses of companion animals. The most commonly reported toxicoses in the United States are those caused by anticoagulant rodenticides, bromethalin, cholecalciferol, strychnine, and zinc phosphide. The pathophysiologic findings, diagnosis, and treatment of each of these five rodenticides are discussed.

Aniline Compounds↗

Toxicology of selected pesticides, drugs, and chemicals. Anticoagulant, cholecalciferol, and bromethalin-based rodenticides.

The control of rodent pests is a continuing goal of mankind. To this end, a multitude of rodenticides have been produced, each designed to kill rodents by exerting their toxic effects on various body systems. As examples, veterinarians have had to manage companion animal poisonings due to anticoagulant, sodium fluoroacetate (compound 1080), thallium, barium carbonate, and zinc phosphide-based rodenticides. Many of these rodenticides were introduced because of their anticipated safety in relation to nontarget species; unfortunately, this has not been the case. Veterinarians must attempt to identify the specific rodenticide involved in poisoning cases. Therapeutic success in these poisonings is often more dependent upon symptomatic and supportive care rather than the use of antidotal therapy.

Aniline Compounds↗

Thymic hematoma in juvenile dogs associated with anticoagulant rodenticide toxicosis.

Ten cases of thymic hematoma in young dogs (9-24 weeks of age) were reviewed. Anticoagulant rodenticide toxicosis was confirmed in 5 cases. Histologically, hemorrhage caused variable expansion of thymic lobules and interlobular septa. The medulla appeared to be the primary site of hemorrhage. In areas of severe hemorrhage, normal lobular architecture was lost and lymphocytes were admixed in the hemorrhagic exudate. Vasculitis, necrosis of capillaries, and degeneration of the capsule were observed in infarcted areas. In 2 cases, angiofibroplasia indicated a longer interval between onset of thymic hemorrhage and death. The lesions are similar to those in 5 cases of idiopathic thymic hemorrhage. Appropriate samples were not available for anticoagulant rodenticide analysis in 3 of these 5 idiopathic cases. Lesions in confirmed cases of anticoagulant rodenticide toxicosis also are compatible with published descriptions of idiopathic and spontaneous thymic hemorrhage, but are inconsistent with normal thymic involution. Analysis for anticoagulant rodenticides is indicated in cases of thymic hematoma when an obvious cause is not detected at necropsy.

Aging↗

Assessment of ruminal degradation, oral bioavailability, and toxic effects of anticoagulant rodenticides in sheep.

OBJECTIVE: To assess the rate and extent of ruminal degradation of warfarin, chlorophacinone, and bromadiolone in vitro and determine the oral availability and clinical and hemostatic effects of each anticoagulant rodenticide in adult sheep. ANIMALS: 3 Texel sheep. PROCEDURE: Samples of ruminal fluid were incubated with each of the anticoagulants to assess the kinetics of ruminal degradation over 24 hours. To determine the plasma kinetics of the anticoagulants, each sheep received each of the anticoagulants IV or via a rumenimplanted cannula at 2-month intervals (3 rodenticide exposures/sheep). At intervals during a 240- to 360- hour period after treatment, prothrombin time (PT) was measured, plasma anticoagulant concentration was assessed, and clinical signs of rodenticide poisoning were monitored. In plasma and rumen extracts, anticoagulant concentrations were determined via high-performance liquid chromatography. RESULTS: In the rumen extracts, anticoagulants were slightly degraded (< 15%) over 24 hours. In vivo, oral availability of warfarin, chlorophacinone, and bromadiolone was estimated at 79%, 92%, and 88%, respectively. Although maximum PT was 80 seconds after chlorophacinone and bromadiolone treatments, no clinical signs of toxicosis were detected; PT returned to baseline values within 2 weeks. CONCLUSIONS AND CLINICAL RELEVANCE: In sheep, warfarin, chlorophacinone, and bromadiolone were not degraded in the rumen but their bioavailabilities were high after oral administration; the kinetics of these compounds in sheep and other mammals are quite similar. These data suggest that the lack of susceptibility of ruminants to these anticoagulant rodenticides cannot be explained by either ruminal degradation or the specific toxicokinetics of these anticoagulants.

4-Hydroxycoumarins↗