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Pre-clinical toxicology of nitazoxanide--a new antiparasitic compound.

The acute and subchronic toxicological effects of nitazoxanide were investigated at levels near and in excess of the therapeutic dose in rats, mice, dogs and cats. Single oral gavage doses of 0.625-10 g per kg body weight were administered to rats and mice. Single oral doses of 1-10 g per kg body weight were administered in capsules to dogs and cats. Acute oral LD50 values were greater than 10 g kg-1 in rats, dogs and cats, and 1.4 g kg-1 in mice. Systemic toxicity was evaluated in a repeated dose study in rats at doses of 50, 150 and 450 mg per kg per day for 14 weeks. The highest dose group exhibited intense salivation, increased liver and spleen weight, and decreased thymus weights. Variances between control and treated organ weights were not confirmed by histopathological evaluation. Nitazoxanide was negative when tested in the Ames Salmonella assay using five tester strains with and without metabolic activation at levels from 1 to 100 mg per plate. The drug was also shown to be non-irritating in a test for eye irritation potential.

Animals↗

Haemotoxicity to chicken (Gallus gallus domesticus) by technical and formulation grades of some phosphoric and synthetic pyrethroid esters.

Acute toxicity was studied by administering an encapsulated single dose to chickens (G.g. domesticus) and observing them for 21 days. Azodrin-71 (Tech.) was found to be extremely toxic, whereas Cypermethrin-92 (Tech.), Cypermethrin-25 EC and Permasect-25 EC (Form.) were practically non-toxic based on LD50 value determinations. Sub-acute oral haemotoxicity of technical and formulation grades of these insecticides was also studied by administering encapsulated low, medium and high daily doses for 21 days to chickens and recording clinical symptoms, mortality and haematological parameters pre and post-dosing. Clinically high doses of Azodrin-71 (Tech.) caused tremors and ataxia among chicks on the 10th day after dosing. Synthetic pyrethroids caused slight tremours in the whole body accompanied by salivation. In general, hyperactivity to external stimuli and loss of appetite and body weight were also observed. With sub-acute oral doses, Permasect-25 EC (Form.) more potently affected haemoglobin (Hb), red cell (RBC) counts and chloride level. Cypermethrin-92 (Tech.) was most potent towards thrombocytes and clotting time. Azodrin-71 (Tech.) was more potent to white cell (WBC) counts and serum protein level. The present Haematological studies have disclosed the possible reaction of blood and blood forming organs to these insecticides.

Animals↗

Toxicity of 2-methyl-5,6-cyclopentapyrimidine (MCPP).

2-Methyl-5,6-cyclopentapyrimidine (MCPP, CAS No. 36274-29-0) is a white dusty solid with a powerful lingering odor and is formed as a by-product in the polymer synthesis of an experimental polymer. The acute toxicity following both oral and inhalation exposures and the effects of repeated inhalation exposures in rats were determined. Mutagenic activity was assessed using Salmonella as the indicator organism. The chemical is moderately toxic, with the lethal dose following a single oral administration being 90 mg kg-1. Doses greater than or equal to 130 mg kg-1 produced strong convulsions. Excessive salivation, hyperactivity and twitching were seen at 90 mg kg-1 and only mild initial weight loss was seen in surviving rats (less than or equal to 60 mg kg). Liver injury was produced at doses as low as 17 (but not at 12) mg kg-1. The material was highly toxic by inhalation, with the approximate lethal concentration in rats following single 4-h exposures being 9 ppm. Convulsive-like movements were seen at greater than or equal to 9 ppm (not at 2 ppm). Histological findings suggest that MCPP causes dilation of blood vessels with hyperemia of various organs apparent in rats exposed to 1 ppm and sacrificed 1 or 2 days post-exposure. No evidence of liver or central nervous system damage was seen. Repeated (nine daily 4-h exposures) inhalation of 2 ppm MCPP failed to produce any signs of a toxic response. No mutagenic activity was seen. The material needs to be considered as a potent acute toxin.

Administration, Inhalation↗

Absorption and adverse effects following topical and oral administration of three transdermal nicotine products to dogs.

To evaluate potential adverse effects from inadvertent exposure to a nicotine transdermal system or "patch", three marketed products were administered topically and orally to dogs: Nicoderm (nicotine transdermal system), with a drug reservoir and a rate-controlling membrane; Nicotinell, with a nicotine solution dispersed in a cotton gauze pad between layers of adhesive; and Niconil, with a nicotine gel matrix. Nicotine doses during topical administration ranged from 1 to 2 mg/kg/24 h for all three products, with plasma nicotine concentrations as high as 43 ng/mL. Two of the 12 topical exposures (with Nicotinell and Niconil) were associated with clinical signs (excess salivation or emesis). The oral doses from the products ranged from 2.8 mg/kg (one patch) to 13.4 mg/kg (two patches) over 25-57 h, with mean maximal plasma levels of 73 ng/mL for two patches (mean maximal level 36 ng/mL). These doses are 2-9-fold higher than oral doses reported to produce severe toxicity in children and, at the highest dose, within the known lethal range for dogs. Oral dosing of Nicotinell and Niconil (two patches per dog) produced vomiting in 2 of 12 exposures. No clinical signs were observed with either topical or oral dosing of Nicodem. These data suggest that nicotine toxicity in dogs from nicotine transdermal patches may not be as severe as might be anticipated based on nicotine content alone.

Administration, Oral↗

Photodynamic therapy with topical 5-aminolevulinic acid as a post-operative adjuvant therapy for an incompletely resected primary nasopharyngeal papillary adenocarcinoma: a case report.

BACKGROUND AND OBJECTIVES: Surgical excision of primary nasopharyngeal papillary adenocarcinoma is sometimes incomplete with remaining microscopic disease. Post-operative radiotherapy only has limited efficacy but may cause many complications. STUDY DESIGN/MATERIALS AND METHODS: Photodynamic therapy (PDT) was used as a post-operative adjuvant therapy for an incompletely resected primary nasopharyngeal papillary adenocarcinoma. A special form of 20% topical 5-aminolevulinic acid (5-ALA), which was originally a liquid form and became a gel form after applied on the nasopharynx, was used as the photosensitizer. A 2-mm optic fiber delivered the light (633 nm wavelength) to the lesion with a fluence rate of 100 mW/cm2 generated by a diode laser under 5 mm 0 degrees endoscope assistance. The total energy delivered was 150 joules/cm2. RESULTS: No significant acute side effect was noted and the nasopharyngeal wound healed rapidly. The patient is alive without locoregional recurrence or distant metastasis for 5 years. Articulation, salivation, and swallowing functions are all well preserved. CONCLUSION: Post-operative adjuvant PDT can successfully cure an otherwise difficult to treat disease with preservation of good life quality of the patient. Potential complications of PDT (e.g., photosensitivity) can be prevented by a special formulation of topical 5-ALA preparation.

Adenocarcinoma, Papillary↗

Gastrointestinal symptoms in Parkinson's disease.

We have investigated the prevalence of gastrointestinal (GI) symptoms in 98 individuals with Parkinson's disease (PD) and in a control group of 50. Seventy-nine of those with PD were being treated with dopaminergic medications and 19 were untreated. Those symptoms occurring more frequently in PD patients than in controls included abnormal salivation, dysphagia, nausea, constipation, and defecatory dysfunction. Except for defecatory dysfunction, symptoms did not correlate with treatment but instead correlated with disease severity. This suggests that the GI symptoms of PD reflect direct involvement in the GI tract by the primary disease process.

Aged↗

Pulmonary complications of chronic neuromuscular diseases and their management.

Chronic neuromuscular diseases may affect all major respiratory muscles groups including inspiratory, expiratory, and bulbar, and respiratory complications are the major cause of morbidity and mortality. Untreated, many of these diseases lead inexorably to hypercapnic respiratory failure, precipitated in some cases by chronic aspiration and secretion retention or pneumonia, related to impairment of cough and swallowing mechanisms. Many measures are helpful including inhibition of salivation, cough-assist techniques, devices to enhance communication, and physical therapy. In addition, ventilatory assistance is an important part of disease management for patients with advanced neuromuscular disease. Because of its comfort, convenience, and portability advantages, noninvasive positive pressure ventilation (NPPV) has become the modality of first choice for most patients. Patients to receive NPPV should be selected using consensus guidelines, and initiation should be gradual to maximize the chances for success. Attention should be paid to individual preferences for interfaces and early identification of cough impairment that necessitates the use of cough-assist devices. For patients considered unsuitable for noninvasive ventilation, invasive mechanical ventilation should be considered, but only after a frank but compassionate discussion between the patient, family, physician, and other caregivers.

Chronic Disease↗

Review: cholinergic mechanisms and epileptogenesis. The seizures induced by pilocarpine: a novel experimental model of intractable epilepsy.

High-dose treatment with pilocarpine hydrochloride, a cholinergic muscarinic agonist, induces seizures in rodents following systemic or intracerebral administration. Pilocarpine seizures are characterized by a sequential development of behavioral patterns and electrographic activity. Hypoactivity, tremor, scratching, head bobbing, and myoclonic movements of the limbs progress to recurrent myoclonic convulsions with rearing, salivation, and falling, and status epilepticus. The sustained convulsions induced by pilocarpine are followed by widespread damage to the forebrain. The amygdala, thalamus, olfactory cortex, hippocampus, neocortex, and substantia nigra are the most sensitive regions to epilepsy-related damage following convulsions produced by pilocarpine. Spontaneous seizures are observed in the long-term period following the administration of convulsant doses of pilocarpine. Developmental studies show age-dependent differences in the response of rats to pilocarpine. Seizures are first noted in 7-12 day-old rats, and the adult pattern of behavioral and electroencephalographic sequelae of pilocarpine is seen in 15-21-day-old rats. During the third week of life the rats show an increased susceptibility to the convulsant action of pilocarpine relative to older and younger animals. The developmental progress of the convulsive response to pilocarpine does not correlate with evolution of the brain damage. The adult pattern of the damage is seen after a delay of 1-2 weeks in comparison with the evolution of seizures and status epilepticus. The susceptibility to seizures induced by pilocarpine increases in rats aged over 4 months. The basal ganglia curtail the generation and spread of seizures induced by pilocarpine. The caudate putamen, the substantia nigra, and the entopeduncular nucleus govern the propagation of pilocarpine-induced seizures. The antiepileptic drugs diazepam, clonazepam, phenobarbital, valproate, and trimethadione protect against pilocarpine-induced convulsions, while diphenylhydantoin and carbamazepine are ineffective. Ethosuximide and acetazolamide increase the susceptibility to convulsant action of pilocarpine. Lithium, morphine, and aminophylline also increase the susceptibility of rats to pilocarpine seizures. The pilocarpine seizure model may be of value in designing new therapeutic approaches to epilepsy.

Animals↗

An escalating dose oral gavage study of 3beta-acetoxyandrost-5-ene-7, 17-dione (7-oxo-DHEA-acetate) in rhesus monkeys.

To test the effects of 7-oxo-dehydroepiandrosterone-3 acetate (hereafter 7-ODA) in Rhesus macaques the steroid was administered by oral gavage to two male and two female monkeys. Dose levels of 250, 500, and 1,000 mg/kg body weight (BW)/day were administered on days 1, 3, and 5 respectively, and 1,000 mg/kg on days 7 through 11. Each group received the dose in a volume of 10 ml/kg BW. All animals survived to the scheduled sacrifice on day 12. No adverse clinical effects of 7-ODA were observed at the 250 or 500 mg/kg doses. Females vomited on non-treatment days and all animals vomited on some days after being given the 1000 mg/kg dose. Excessive salivation was observed before or immediately after dosing on days 9 through 11. Appearance, behavior and body weights were not altered by the treatments. Visual examination of all body cavities, and macroscopic and microscopic examination of 42 different organs and tissues found no lesions or abnormalities.

Administration, Oral↗

A clinical, biochemical, neurobehavioral, and sociopsychological study of 190 patients admitted to hospital as a result of acute organophosphorus poisoning.

To study acute organophosphorus (OP) poisoning cases, 190 OP-intoxicated cases admitted to Civil Hospital, Ahmedabad, were investigated in depth. The group consisted of subjects ranging from 11 to 60 years of age, with the maximum number of cases in the age group 21-30 years and a male-to-female ratio of 2.1:1. Most of the subjects (71.61%) were partially educated, 24.2% of the cases were illiterate, and only 4.2% of the cases were highly educated. Socioeconomically, 21.1% of the subjects were of low economic status, 52.6% were low middle class, 16.8% were upper middle class, and only 9.5% were upper class. With regard to marital status of the subjects, 98 cases were married and 92 were unmarried. About 67.4% of the cases had the intention of committing suicide, 16.8% of the cases were the result of occupational exposure, and 15.8% of the cases were from accidental poisoning. Social and domestic problems (37.5%), marital friction (15.6%), financial stress (15.6%), love affairs (14.1%), job problems (10.9%), chronic illness (4.7%), and failure in examination (1.6%) were observed as the precipitating factors. Muscarinic manifestations such as vomiting (96.8%), nausea (82.1%), miosis (64.2%), excessive salivation (61.1%), and blurred vision (54.7%) and CNS manifestations such as giddiness (93.7%), headache (84.2%), disturbances of consciousness (44.2%), and typical pungent odor from mouth and clothes (77.9%) were the main presenting symptoms. Cardiac manifestations such as sinus tachycardia (25.3%), sinus bradycardia (6.3%), and depression of ST segments with T-wave inversion (6.3%) were observed electrocardiographically, with hypertension (10.5%) and muscular twitching in some (2.1%) cases. Biochemical changes such as albuminuria (12.6%) and azotemia (18.9%) with inhibition of acetylcholinesterase enzyme activity in blood were recorded in 78.9% of the cases. About 89.5% of the cases recovered completely, 4.2% of the cases absconded after partial recovery, and 6.3% of the cases died. The mortality rate (6.3%) depended on various factors such as the organophosphorus compound consumed, the amount ingested, the time interval for hospitalization, and the general health of the patient. Chances of recovery were higher when the patient was hospitalized at the earliest indication.

Adolescent↗

Focal microinjection of gamma-acetylenic GABA into the rat entorhinal cortex: behavioral and electroencephalographic abnormalities and preferential neuron loss in layer III.

Neuron loss in layer III of the entorhinal cortex (EC) occurs in patients with temporal lobe epilepsy and in several animal models of the disease and may play a role in the development of spontaneously recurring seizures. This damage can be reproduced in rats by a focal microinjection of the indirect excitotoxin aminooxyacetic acid into the EC (Neurosci. Lett., 147: 185, 1992). We have now examined a similar but approximately 20 times more potent toxin, gamma-acetylenic GABA (GAG), for its ability to produce seizures and neurodegeneration in the rat EC. EEG activity was recorded continuously for 48 h after a focal injection of 4 micrograms GAG into the rat EC. Seizure episodes, spiking, and other irregularities occurred with a latency of 150 min. Behavioral abnormalities were observed in all animals and were always accompanied by EEG seizures. The behavioral changes subsided gradually, but EEG seizures continued up to 24 h after GAG treatment. Nissl and silver-stained tissue sections obtained 2-3 days after the injection of 4 micrograms GAG revealed neuron loss which preferentially affected the medial part of layer III of the EC, and caused a modest lesion in the hilar region of the ventral hippocampus. The neurodegenerative potency of GAG, in contrast to the effects of aminooxyacetic acid, was not influenced by the depth of anesthesia during surgery. A slight increase in the dose of GAG (to 5 micrograms) resulted in more severe behavioral seizures, causing generalized convulsions with salivation and loss of righting posture in 3 of 13 rats. These animals also showed a marked enlargement of the lesioned area, with substantial neuronal loss occurring in layer III of the EC, in the hilus of the dentate gyrus, and occasionally also in homotopic structures of the contralateral hemisphere. Seizure activity and lesions induced by 4 micrograms GAG were prevented by the NMDA receptor antagonist Dizolcipine (MK-801) (4 mg/kg, i.p., 10 min before and 12 h after GAG). These data support the notion of a close correlation between the occurrence of seizures and neuronal loss in layer III of the EC. Taken together, the study suggests that intraentorhinal injections of GAG may provide an advantageous model for the study of epileptogenic and epileptic mechanisms.

4-Aminobutyrate Transaminase↗

Nitric oxide synthase and cGMP activity in the salivary glands of the American dog tick Dermacentor variabilis.

We colocalized nitric oxide synthase (NOS) activity in epithelial cells that surround the salivary gland duct in female Dermacentor variabilis with NADPH diaphorase histochemistry and immunohistochemistry using a polyclonal anti-endothelial NOS. Using size-exclusion chromatography, a fraction with a molecular mass of about 185 kDa that had diaphorase activity was eluted from tick salivary gland homogenate. This fraction converted arginine to citrulline with the production of nitric oxide (NO), which was detected by using electron spin resonance spectroscopy. The complete activity of the diaphorase fraction was dependent on NADPH, FAD, tetrahydrobiopterin, calmodulin, (CaM), and Ca(2+), but was not dependent on dithiothreitol. The arginine analog N(G)-monomethyl-L-arginine inhibited the activity of this fraction. NO and arginine activated soluble guanylate cyclase to produce cGMP in dopamine-stimulated isolated salivary glands. Dopamine-stimulated isolated salivary glands treated with tick saline containing either EDTA, the NOS inhibitor N(G)-nitro-L-arginine methyl ester, or the calcium/CaM binding inhibitor W-7 showed no increase in cGMP. The NO donor sodium nitroprusside significantly increased cGMP levels in unstimulated isolated salivary glands. A possible function for NO in salivation by this ixodid tick is discussed.

Animals↗

Chronic (1-year) safety evaluation of ipazilide fumarate, an antiarrhythmic agent, administered orally to rats.

Ipazilide fumarate (WIN 54177-4) is a chemically novel antiarrhythmic agent that prolongs ventricular refractoriness and possesses antiectopic activity. The compound is being developed as oral and iv therapy for ventricular and supraventricular arrhythmias. Since ipazilide therapy may require long-term use, a 1-year oral gavage study (daily dosages of 20, 80, or 160 mg/kg) was conducted in rats. Controls received the purified water vehicle. Treatment-related clinical signs were limited to post-dosing salivation. Increased relative liver weight (females, at 80 and 160 mg/kg) was correlated with centrilobular hypertrophy, but was not associated with significant increased serum liver enzymes activities. These liver weight changes were interpreted as an adaptive metabolic response and were not considered toxicologically significant. An increased incidence of centrilobular hepatocellular vacuolation representing lipid accumulation over that observed for male controls occurred for males in all ipazilide-treated groups. This observation, however, was not correlated with elevated hepatic enzyme activities. Hepatocellular basophilic foci were observed for females only (80 and 160 mg/kg groups); however, the significance of this lesion is unclear. Transient dosage-related duodenal villous atrophy/sloughing was observed for males from the 80 and 160 mg/kg groups. Mild increases in hemoglobin, hematocrit, urea, and creatinine (160 mg/kg), attributed to treatment, were considered of minor toxicologic importance. Likewise, no clinical or anatomical pathologic observations that may indicate cardiac toxicity were determined. It is concluded that a dosage of 20 mg/kg (two to three times the clinical efficacious dosage) was considered a no-effect dosage level since it did not produce any effects of toxicological significance.

Administration, Oral↗

Developmental toxicity of inhaled trans-1,2-dichloroethylene in the rat.

The developmental toxicity of trans-1,2-dichloroethylene (t-DCE), a component of certain Freon cleaning agents, was examined in pregnant rats. t-DCE was administered by inhalation 6 hr daily on Days 7-16 of gestation (the day copulation was confirmed was termed Day 1 of gestation) at exposure levels of 0, 2000, 6000, or 12,000 ppm. The offspring were then examined on Day 22 of gestation. Overt maternal toxicity was expressed as a significant reduction in weight gain at 12,000 ppm and in feed consumption at 6000 and 12,000 ppm. During the exposure period, lacrimation and stained periocular hair, and signs of ocular irritation, were observed in all groups. In addition, increased incidences of alopecia, lethargy, and salivation were observed in the high-dose dams. Significant increases in the mean number of resorptions per litter were seen in the litters of dams exposed to 6000 and 12,000 ppm of t-DCE; however, these values are within the range of historical controls and not considered to be treatment related. The mean combined and female fetal weights were significantly reduced in the litters of dams exposed to the highest concentration (12,000 ppm) of t-DCE. Marginal effects on feed consumption, unaccompanied by other changes and reflective of the pattern seen at higher doses, were seen at 2000 ppm. Thus, marginal maternal toxicity was seen at 2000 ppm and exposures to 6000 ppm t-DCE or higher caused frank maternal toxicity while the fetus was affected only at 12,000 ppm. Therefore, t-DCE is not considered to be uniquely toxic to the rat conceptus.

Abnormalities, Drug-Induced↗

Evaluation of the developmental and reproductive toxicity of chlorpyrifos in the rat.

Chlorpyrifos (O,O-diethyl-O-(3,5,6-trichloro-2-pyridyl)-phosphorothioate), an organophosphate insecticide, was evaluated for its potential to produce developmental and reproductive toxicity in rats following oral exposure. Pregnant Fischer 344 rats were given doses of 0 (corn oil vehicle), 0.1, 3.0, or 15 mg chlorpyrifos/kg/day, by gavage, on Gestation Days 6 through 15. Maternal effects noted at the two higher dose levels included decreased cholinesterase levels at 3.0 mg/kg/day and cholinergic signs (excessive salivation and tremors), decreased cholinesterase levels, and decreased body weight gain at 15 mg/kg/day. No maternal effects were apparent at 0.1 mg/kg/day. Although maternal toxicity was observed at these two higher exposure levels, no developmental effects were noted at any dose. In a two-generation reproduction study, Sprague-Dawley rats were maintained on diets supplying 0, 0.1, 1.0, or 5.0 mg chlorpyrifos/kg/day. Parental effects included decreased plasma and erythrocyte cholinesterase at 1.0 mg/kg/day, and decreased plasma, erythrocyte, and brain cholinesterase and histopathologic alterations of the adrenal zona fasciculata at 5.0 mg/kg/day. The histopathologic alterations of the adrenal were characterized as very slight to slight vacuolation (consistent with fatty change) in males, and very slight vacuolation and/or altered tinctorial properties in females. No effects on the reproductive or fertility indices or on the histopathology of reproductive tissues were observed at any dose level, and no neonatal effects were observed at 0.1 or 1.0 mg/kg/day in the F1 or F2 litters. Parental toxicity at the high dose was accompanied by decreased pup body weight and increased pup mortality in the F1 litters only. These data show that oral administration of chlorpyrifos to rats at parentally toxic dose levels was not embryolethal, embryo/fetotoxic, or teratogenic and did not adversely affect fertility or the function or structure of the reproductive organs. Although effects on neonatal growth and survival were observed at a maternally toxic dose level in one generation, this effect was not observed in the subsequent generation and, therefore, may not have been related to treatment.

Administration, Oral↗

Neurotoxicity of misonidazole in rats following intravenous administration.

Misonidazole is a hypoxic cell radiosensitizer that induces a peripheral neuropathy in humans after exceeding a schedule-dependent cumulative threshold dose. Clinical studies of misonidazole have been conducted using oral administration, whereas most other radiosensitizers have been administered intravenously. Since route of exposure can potentially influence the toxicity of xenobiotics, the objective of this study was to assess the neurotoxicity of misonidazole in rats following intravenous dosing using a battery of routine clinical, neurofunctional, biochemical, and histopathologic screening methods. Male Sprague-Dawley rats were administered intravenous doses of misonidazole at 0 (vehicle control), 100, 200, 300, or 400 mg kg-1 once per day, 5 days per week, for 2 weeks. Animals were evaluated for neurofunctional and pathological changes following termination of treatment (Days 15-17) and at the end of a 4 week observation period (Days 43-45). During the dosing phase, hypoactivity, salivation, rhinorrhea, chromodacryorrhea, rough pelage and ataxia were observed at 400 mg kg-1, and body weight gain of the 300 and 400 mg kg-1 groups was significantly decreased relative to the vehicle controls by 24% and 49%, respectively. Corresponding reductions in food consumption were 8% and 23%, respectively. Although most 400 mg kg-1 animals appeared normal on Day 15 prior to the neurofunctional evaluations, rotorod testing precipitated a number of clinical signs including: ataxia, impaired righting reflex, excessive rearing, tremors, vocalization, circling, head jerking, excessive sniffing and hyperactivity. All of these animals recovered and appeared normal from Day 17 through study termination. There were no treatment-related effects on motor activity, acoustic startle response, rotorod performance, forelimb group strength, toe and tail pinch reflexes, tibial nerve beta-glucuronidase activity or tail nerve conduction velocity. Although hindlimb grip strength of the 400 mg kg-1 group was significantly decreased by 17% relative to the vehicle controls on Day 15, this finding appeared related to the reduced food consumption and body weight gain in these animals. No microscopic changes were detected in peripheral nerves. Necrosis and proliferation of fibrillary astrocytes (gliosis) were seen in the cerebellum and medulla of the 400 mg kg-1 animals on Day 16. Gliosis in these same brain regions was observed in the 300 and 400 mg kg-1 groups on Day 44. The results show that intravenous administration of misonidazole to rats causes dose-limiting central nervous system toxicity without effects on peripheral nervous tissue. The lack of peripheral neurotoxicity was most likely due to a combination of several interrelated factors including route of administration, duration and intensity of the dosing regimen, and total cumulative dose.

Animals↗

In vivo interaction between chlorpyrifos and parathion in adult rats: sequence of administration can markedly influence toxic outcome.

Organophosphorus insecticides (OPs) generally act through a common mechanism of toxicity initiated by inhibition of acetylcholinesterase (AChE). We studied the in vivo interactive toxicity of two common OPs, chlorpyrifos (CPF) and parathion (PS), in adult male rats. Dose-response studies estimated the acute oral LD1 values for the two OPs (CPF = 80 mg/kg po; PS = 4 mg/kg po) and these dosages or relative proportions were used to evaluate interactive toxicity. Three treatment strategies were evaluated: CPF followed by PS 4 h later (CPF-1st), PS followed by CPF 4 h later (PS-1st), and simultaneous (concurrent) exposures. Using LD1 dosages, rats in the CPF-1st and concurrent groups exhibited more cholinergic toxicity (i.e., salivation, lacrimation, urination, and diarrhea signs and involuntary movements) and higher lethality (7/8 and 6/8, respectively, beginning 1 h after PS) than those in the PS-1st group (2/8 lethality, beginning 3 days after CPF). Sequential exposures to lower dosages (CPF vs PS: 60 vs 3 mg/kg; 40 vs 2 mg/kg) led to more extensive neurotoxicity in the CPF-1st group compared to the other groups. Following lower dosages (40 vs 2 mg/kg), brain ChE inhibition was more extensive in the CPF-1st group at all time points (64-85%) and the concurrent group at 4 and 24 h after exposure (46-83%) compared to rats receiving PS first (7-48%). No differences were noted however, in plasma (71-93% inhibition) or liver (72-81%) cholinesterase activities nor were there group-related differences in plasma (50-60% inhibition) or liver (>85% inhibition) carboxylesterase activities. Incubation of liver samples with oxons in the presence or absence of calcium (i.e., 2 mM CaCl(2) or EGTA) prior to addition of ChE (striatal sample) substantially blocked ChE inhibition by CPO (IC50: without liver = 4 nM; liver + calcium = 279 nM; liver + EGTA = 48 nM) but had lesser effects on PO-mediated inhibition (IC50: without liver = 17 nM; liver + EGTA = 56 nM; liver + calcium = 57 nM). Liver homogenate from animals preexposed to PS substantially decreased ChE inhibition by CPO when calcium was included (IC50: +EGTA = 8 nM; +calcium = 225 nM), but liver homogenate from animals preexposed to CPF was ineffective at blocking PO-induced inhibition (IC50: +EGTA = 16 nM; +calcium = 16 nM). We conclude that prior inhibition of carboxylesterase activity impacts toxicity of subsequent exposure to PS more than CPF because of more active detoxification of CPO by A-esterase. Together, these findings indicate that interactive toxicity from combined exposures to two OP insecticides can be markedly influenced by the sequence of administration.

Animals↗

Influence of several peptidase inhibitors on the pro-inflammatory effects of substance P, capsaicin and collagenase.

Injection of substance P (SP) in a rat hindpaw induced extravasation of 125I-labelled albumin in both hindpaws and salivation. Intravenous injection of SP dose-dependently increased vascular permeability. This latter effect was increased in rat paws by captopril, an inhibitor of angiotensin-converting enzyme (ACE), administered locally in combination with diprotin A, an inhibitor of an dipeptidyl(amino)peptidase IV (DAP IV) or phosphoramidon, an inhibitor of neutral endopeptidase (NEP). The increase in permeability induced by SP was inhibited by RP 67580, a NK-1-receptor antagonist. Intravenous injection of capsaicin induced labelled albumin extravasation in rat paws. This effect was increased by combination of captopril with diprotin A or phosphoramidon, but not by captopril associated with amastatin, an inhibitor of aminopeptidase M (AmM). It was suppressed by RP 67580. Injection of collagenase in rat paws triggered a swelling and a local plasma exudation. These responses were reduced by RP 67580 but not by RP 68651, its inactive enantiomer. They were increased by combination of captopril with diprotin A or phosphoramidon in normal rats. The potentiating effects of captopril and diprotin A were suppressed by RP 67580 in normal rats but did not develop in kininogen-deficient rats. The oedema induced by collagenase was also increased by lisinopril, another ACE inhibitor, administered locally in combination with apstatin, an inhibitor of aminopeptidase P (AmP). In rats pretreated by methysergide, collagenase-induced oedema was reduced and can be increased by captopril, by lisinopril, administered alone or by lisinopril associated with apstatin. It is concluded that SP is mainly inactivated in rat paws by ACE, DAP IV and NEP. In collagenase-induced oedema, a low amount of SP would be released from afferent nerve terminals by bradykinin formed in low amounts. Bradykinin is inactivated in rat paws by ACE and AmP. In collagenase-oedema, the pro-inflammatory effects of bradykinin are concealed by the effects of the other mediators.

Albumins↗