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Common tiger snake envenomation in dogs and mice--relationship between the amount of venom injected and the onset of clinical signs.

Common tiger snake (Notechis scutatus) venom was injected into mice and dogs at various dose rates calculated on the known lethal dose (LD) for each species. The larger the dose of venom, the earlier was the onset of clinical signs and the more rapid and severe the course of the disease in both species. In dogs injected with 32 LD of venom, there was sudden collapse and death in about one hour from the time of injection without recovery from premonitory depression and before mydriasis occurred. Dogs given 5 to 16 LD of venom developed preparalytic signs (vomition, salivation or defaecation) in 5 to 30 min, mydriasis in 2 to 4 h, became paralysed and died in about 2.5 to 5 h. When doses of venom of about 1 LD were injected, vomition and salivation occurred within 2 h and mydriasis in about 4 h. The dogs were unable to close the mouth completely despite retention of jaw muscle tone. Sublethally envenomed dogs did not show preparalytic signs nor did they have general skeletal muscle paralysis. Even at the lowest dose tested (0.25 LD), however, they developed mydriasis and photophobia, which persisted for several days. At the site of injection of venom there was occasional but slight erythema and oedema.

Animals↗

Dependence of functional vasodilatation in the cat submaxillary gland upon stimulation frequency.

1. Submaxillary gland blood flow and salivation have been measured in anaesthetized cats and the chorda-lingual nerve has been stimulated at different frequencies.2. At low stimulation frequencies (1-5 Hz) there was a large transient increase in blood flow followed by a more modest maintained increase which lasted as long as stimulation continued. Stimulation at 10-20 Hz also produced a rapid initial increase in flow but at these frequencies the subsequent decline was not seen and a gradual further increase to a maintained level was observed.3. Atropine in small doses depressed both the transient and the maintained response to low frequency stimulation but at 10-20 Hz the maintained vasodilatation was unaffected by the drug.4. The transient increase in potassium concentration in saliva and venous blood draining the gland was not correlated with the vascular response.5. In conclusion, further details have been provided concerning the vascular response to chorda-lingual nerve stimulation and its sensitivity to atropine. Functional vasodilatation is not secondary to potassium release and is not due to a direct interaction between rate of saliva production and rate of blood flow although the vasodilatation does appear to be related in part to the acompanying salivation.

Animals↗

Mechanism of Action of the Enteropathogenic Factor of Clostridium perfringens Type A.

Cell extract of an enteropathogenic strain of Clostridium perfringens type A was administered intravenously to lambs, rabbits, and guinea pigs. Lambs developed transitory diarrhea, lacrimation, salivation, nasal discharge, lassitude, and dyspnea in 1 to 5 hr after inoculation. Large doses of the inoculum caused rapid onset of the clinical signs and subsequent death. Examination of dead animals revealed intensely hyperemic small intestinal mucosa and some congestion in the liver, lungs, spleen, and kidneys. Rabbits showed excessive salivation, frequent defecation, tranquility, and dyspnea, followed by death. Guinea pigs became weak and died in 15 min to 7 hr. Congestion was evident in lungs, liver, spleen, and in the small intestine. In lambs and guinea pigs tested, atropine and epinephrine alleviated the clinical signs. Intradermally injected cell extract caused an immediate increase in capillary permeability and subsequent erythematous reaction without necrosis in the skin of guinea pigs. It is hypothesized that in the enteric infection C. perfringens enteropathogenic factor acts on the small intestine causing increased capillary permeability, vasodilation, and increased intestinal motility.

Journal Article↗

Edrophonium for the antagonism of neuromuscular blockade in dogs.

Neuromuscular, electrocardiographic and autonomic nervous changes were studied when edrophonium and four combinations of edrophonium and atropine were used to antagonise vecuronium-induced neuromuscular blockade in 87 dogs anaesthetised with halothane. Edrophonium (500 micrograms/kg body-weight) was given alone, or with atropine (40 micrograms/kg) or one minute after a dose of 600 micrograms of atropine, and a lower dose of edrophonium (250 micrograms/kg) was used with high (40 micrograms/kg) and low (20 micrograms/kg) doses of atropine. The neuromuscular blockade was antagonised when some recovery was present. The reversal was rapid and complete in 75 cases, but the remaining 12 dogs which received the low dose of edrophonium required a second injection. Trials with the high dose of edrophonium alone were discontinued because cardiac arrest occurred in one dog and bronchosecretion with profuse salivation in another. The heart rate increased with the low dose of edrophonium and the high dose of atropine, and increased and then decreased when edrophonium was followed by 600 micrograms of atropine. The heart rate was stable when the high and low doses of atropine and edrophonium were matched. All the treatments caused atrioventricular blockade. Non-cardiac autonomic changes (salivation and bronchosecretion) occurred in only two of the 87 dogs.

Anesthesia, Intravenous↗

Hypocalcaemia in 23 ataxic/recumbent ewes: clinical signs and likelihood ratios.

Twenty-three ewes in a flock of 2000 were identified as having acute onset ataxia and/or having become recumbent in late pregnancy and early lactation. The presence or absence of 15 clinical signs were recorded. Thirteen of the ewes (57 per cent) were hypocalcaemic and 10 (43 per cent) were normocalcaemic. In the hypocalcaemic group, loss of anal reflex, constipation, tachycardia, hyposensitivity, ruminal stasis, ruminal tympany, salivation and tachypnoea were recorded in 50 per cent or more of the cases. In the normocalcaemic group, tachycardia, tachypnoea and ataxia were recorded in 50 per cent or more of the cases. Constipation, ruminal stasis, salivation and hyposensitivity had likelihood ratios of 3 and above for being associated with hypocalcaemia. Ruminal stasis and hyposensitivity had the likelihood ratios of 0.10 and 0.11 respectively for not being associated with hypocalcaemia.

Animals↗

Sialolithiasis: MR sialography of the submandibular duct--an alternative to conventional sialography and US?

PURPOSE: To determine the value of magnetic resonance (MR) sialography for the diagnosis of sialolithiasis by comparing results prospectively with those of ultrasonography (US) and digital sialography. MATERIALS AND METHODS: MR sialography was prospectively performed with T2-weighted three-dimensional (3D) constructive interference in steady-state (CISS) and rapid acquisition with relaxation-enhancement (RARE) sequences in 24 patients suspected of having sialolithiasis. Evoked salivation was used as contrast material. T1-weighted spin-echo and T2-weighted turbo spin-echo MR imaging also were performed. The results were then compared with those of US and digital sialography, with the latter as standard of reference. RESULTS: The 3D CISS images were significantly (P: <.05) superior to RARE images for demonstrating the submandibular ductal system, followed by T2-weighted turbo spin-echo images (P: <.01) and T1-weighted spin-echo images (P: <.001). The sensitivity and specificity were 100% and 80%, respectively, for CISS MR sialography and 80% and 100%, respectively, for RARE MR imaging. The sensitivity and specificity of US were both 80%. CONCLUSION: MR sialography with evoked salivation is noninvasive and allows delineation of the submandibular ductal system and detection of sialoliths with accuracy that is similar to that of digital sialography and superior to that of US.

Humans↗

Autonomic nervous control of venous pressure and secretion in submandibular gland of anesthetized dogs.

In dogs anesthetized with pentobarbital sodium, hilar venous pressure (Phv) and secretion were measured from the submandibular gland receiving spontaneous blood flow or vascular perfusion at the normal resting flow rate. Parasympathetic nerve stimulation and ACh-induced secretion increased Phv and its pulse pressure; Phv also showed an obvious arterial (or perfusion pressure)-like waveform. Vasoactive intestinal polypeptide (VIP) exerted similar effects on Phv but produced negligible secretion. Sympathetic nerve stimulation, phenylephrine, and clonidine did not induce secretion and had no significant action on Phv, whereas isoproterenol provoked secretion and changed Phv as with parasympathetic stimulation. Background or superimposed sympathetic nerve stimulation reduced the parasympathetic nerve-induced responses; the sympathetic inhibition was abolished by phentolamine and yohimbine but not by prazosin and propranolol. The results suggest a direct relationship between Phv and secretion during parasympathetic salivation: the elevation in Phv was primarily independent of the concurrent blood flow response, mediated via muscarinic and peptidergic mechanisms, and related to an opening of arteriovenous anastomoses. Sympathetic inhibition of parasympathetic salivation may be related to prevention of an increased Phv exerted primarily via the alpha2-adrenergic mechanism.

Acetylcholine↗

Autonomic dysfunction in the Lambert-Eaton myasthenic syndrome: serologic and clinical correlates.

Autonomic dysfunction is a recognized feature of the Lambert-Eaton myasthenic syndrome (LES). However, the characteristic pattern of dysautonomia has not been clearly documented and its pathophysiologic basis is not known. We therefore abstracted autonomic symptomatology and results of quantitative tests for salivation, and vasomotor, cardiovagal, and sudomotor reflexes from records of 30 LES patients. Dry mouth (77%) and impotence (45% of men) were the most common symptoms. Composite Autonomic Scoring Scale results were abnormal in 93% of patients, and autonomic failure was severe in 20%. The frequency of specific test abnormalities were the following: sudomotor function, 83%; cardiovagal reflexes, 75%; salivation, 44%; and adrenergic function, 37%. Although voltage-gated N-type calcium (Ca2+) channels are implicated in autonomic transmission, the low frequency of serum antibodies to N-type Ca2+ channels found in the patients of this study (31% positive) argues against a pathogenic role in mediating LES-related dysautonomia. In contrast, 93% of the patients were seropositive for P/Q-type Ca2+ channel antibodies. A subset of these antibodies is thought to impair neuromuscular transmission. Autoantibodies of thyrogastric or glutamic acid decarboxylase specificity (markers of predisposition to type 1 diabetes mellitus) were found in 45% of patients, and type 1 antineuronal nuclear antibody (or anti-Hu, a marker of autoimmune neuropathy associated with small-cell lung carcinoma) was found in 3%. No autoantibody correlated with autonomic dysfunction severity. Sensorimotor neuropathy was documented in five patients, and was not significantly associated with autonomic neuropathy. Autonomic failure was most severe in older subjects with cancer (p = 0.02, age by cancer interaction).

Adult↗

The effects of serotonin and dopamine on salivary secretion by isolated cockroach salivary glands

We have studied the effects of 3-hydroxytyramine (dopamine) and 5-hydroxytryptamine (serotonin) on (1) the rates of salivation from isolated salivary glands of the cockroach Periplaneta americana, (2) the protein content of the saliva, and (3) the ultrastructure of the salivary gland epithelium. The rates of neurotransmitter-induced salivation varied in a dose-dependent manner within the concentration range 10(-9) to 10(-4) mol l-1. Half-maximal secretory rates were induced by 6x10(-7) mol l-1 serotonin and 1.1x10(-7) mol l-1 dopamine. Stimulation of the glands by serotonin resulted in the production of a protein-rich saliva, whereas saliva was protein-free after stimulation by dopamine. Electron microscopic studies revealed that the central cells, which are believed to produce the proteinaceous components of the saliva, secrete their vesicular content after stimulation by 10(-6) mol l-1 serotonin for 20 min. In contrast, no morphological changes could be detected after stimulation by 10(-6) mol l-1 dopamine. These data indicate that dopamine stimulates only the secretion of the fluid component of the saliva, whereas serotonin is necessary to stimulate secretion of the proteinaceous components.

Journal Article↗

The aminergic and peptidergic innervation of insect salivary glands

Insect salivary glands are glands associated with nutrient intake whose secretions are generally involved in the digestion and lubrication of food. They are under the control of neuroactive substances and may be innervated from several sources including the suboesophageal ganglion, the stomatogastric nervous system and the unpaired median nerves. Both amines and peptides have been suggested to play roles in the control of insect salivation, as indicated by their association with terminals on salivary glands, their effects in salivary gland bioassays and their ability to alter second messenger levels and ion channel conformations. Serotonin and dopamine appear to be the most prominent amines associated with insect salivary glands. Either one or both of these amines are found associated with the salivary glands of the locust, stick insect, cockroach, cricket, dragonfly, mosquito, adult moth and kissing bug. Their roles, although not fully elucidated, appear to be in the control of salivary secretion. Several peptides, including members of the FMRFamide-related family of peptides, are also found associated with insect salivary glands. Sources of peptidergic innervation are as varied as those for aminergic innervation, but information regarding the physiological role of these peptides is lacking. The relevance of the different levels of complexity of salivary gland innervation, which range from the absence of innervation in some species (blowfly) to the presence of several distinct sources in others (locust, cockroach), is not well understood. This review serves to consolidate what is known of the phenotype of salivary neurones in relation to the control of salivation.

Journal Article↗

[Aspects of sleep effects on the digestive tract].

BACKGROUND: During sleep the gastrointestinal system function is markedly reduced most of the time. OBJECTIVES: In this revision we described the effect of sleep on the digestive system. Salivation, swallowing rate, upper esophageal sphincter pressure and number of primary esophageal contractions have all been shown to be reduced during sleep. DATA SOURCES: Gastric emptying is slow during sleep but the REM sleep is associated with faster gastric emptying. During the night we have a more regular intestinal motility than during the day. During sleep, phase II of the migrating motor complex cycle is virtually absent, both during diurnal or nocturnal sleep. The nocturnal velocity of migrating motor complex propagation in the proximal small bowel is slower than the diurnal velocity. The colon has a decrease in tonus and contractions. The anal canal pressure is lower and rectum activity is higher during sleep than during the awake state, but the anal pressure is still higher than the rectum pressure and the rectum contractions are most frequently retrograde. DATA SYNTHESIS: Transient lower esophageal sphincter relaxation is the most frequent cause of gastroesophageal reflux. The frequency of this transient relaxation is very low during sleep. Gastroesophageal reflux during sleep is more frequently associated with a low lower esophageal sphincter pressure. CONCLUSIONS: In this situation the disease is worse because the patient is in the supine position, so gravity does not help the acid esophageal clearance, salivation is decreased and the primary esophageal contraction is not frequent, a fact causing a prolongation of acid clearance during sleep. The right lateral position during sleep causes more reflux episodes than the left lateral position. The gastroesophageal reflux may be associated with nocturnal wheezing, chronic nocturnal cough and sleep apnea.

Digestive System Physiological Phenomena↗

[Acute toxicity studies of propiverine hydrochloride].

Acute toxicity studies of propiverine hydrochloride (P-4) were carried out in mice, rats and dogs of both sexes. 1. The LD50 values of P-4 were as follows: Mice; 410 (male) and 323 (female) mg/kg in oral route, 223 (male) and 283 (female) mg/kg in subcutaneous route and 36 (male and female) mg/kg in intravenous route, Rats; 1000 (male) and 1092 (female) mg/kg in oral route, 1632 (male) and 1411 (female) mg/kg in subcutaneous route, and 22 (male) and 25 (female) mg/kg in intravenous route. On the LD50 values, no sexual difference was apparent but the species difference between mice and rats observed to be present in oral and subcutaneous routes. The approximate lethal doses of P-4 in dogs were 987-1137 mg/kg for male and 865-894 mg/kg for female in oral route, and the values were almost same as those in rats of oral route. 2. Major toxic signs such as clonic convulsion, bradypnoea, dyspnoea, decreased spontaneous activity and hematuria were observed in mice and rats. Furthermore mydriasis in rats, and transitory salivation and/or vocalization in mice and rats were observed. In some rats, sedation, salivation, soil at hypogastrium, rale and emaciation were detected from the next day of oral administration. In dogs, toxic signs such as vomiting, tremor, tonic and/or clonic convulsion, mydriasis and gasping were observed. 3. Pathological changes observed in dead animals were congestion of lungs, liver and kidneys in all routes, congestion and hemorrhage in digestive tracts in oral route, inflammatory changes at the injection site in subcutaneous route. In addition, retention of hematuria in urinary bladder in rats of oral and subcutaneous routes, the hemorrhagic changes of heart, atonia of urinary bladder and retention of urine in dogs were observed. 4. The main cause of death seemed to be respiratory disturbance in all species and the weakness in a few rats of oral route.

Animals↗

Four-week sub-acute toxicity study of S-(-)-9-fluoro-2,3-dihydro-3-methyl-10- (4-methyl-1-piperazinyl)-7-oxo-7H-pyrido-[1,2,3,-de] [1,4]benzoxazine-6- carboxylic acid hemihydrate (DR-3355) in CD rats and cynomolgus monkeys.

S-(-)-9-Fluoro-2,3-dihydro-3-methyl-10-(4-methyl-1-piperazinyl)-7-oxo-7H -pyrido-[1,2,3,-de] [1,4]benzoxazine-6-carboxylic acid hemihydrate, DR-3355, a new quinolone antimicrobial agent, was administered by oral gavage to groups of ten male and ten female CD rats at dosages of 50, 200 or 800 mg/kg/day and to groups of three male and three female cynomolgus monkeys at dosages of 10, 30, or 100 mg/kg/day. Both species were treated for four weeks. The vehicle (0.5% sodium carboxymethyl cellulose)-treated group served as control. Rats at the high dose showed salivation, slight increases in total leucocyte and lymphocyte counts, slight changes in the plasma electrolyte balance, and minor reductions in urea concentration. The articular surfaces of the humerus and femur of rats at the high dose showed minor degenerative changes. Increased caecal weight occurred in rats at all the treatment groups. Monkeys at the high dose showed salivation, diarrhoea and lost weight. There was no microscopic change in the tissues examined. No effect levels under these conditions were established at 200 mg/kg/day in the rat, and 30 mg/kg/day in the monkey.

Animals↗

[A thirteen-week oral repeated dose toxicity study of suplatast tosilate (IPD-1151T) in rats].

A 13-week oral repeated dose toxicity study of Suplatast tosilate (IPD-1151T), a new anti-allergic agent, as well as a 5-week recovery study were carried out at dose levels of 0 (control), 200, 600, 1800 and 5400 mg/kg/day using male and female rats. The results were as follows: 1. In general conditions, salivation were observed in some rats of both sexes given 1800 mg/kg/day. Both sexes given 5400 mg/kg/day disclosed salivation and soft stool and then died after showing ataxic gait, hyperesthesia and convulsion of legs. 2. Inhibition of body weight gain in both sexes given 5400 mg/kg/day were observed from the early stage of the treatment period. 3. The food consumption was decreased from about 3-week and the water consumption was increased from the initiation of study to about 3-week in both sexes given 5400 mg/kg/day. However, both of them were remarkably decreased prior to death. 4. Fecal examination for occult blood showed an increasing tendency in the incidence of positive findings in both sexes given 1800 mg/kg/day. 5. Hematological examination showed slight decreases in erythrocytic parameters in both sexes given 1800 mg/kg/day. In both sexes given 5400 mg/kg/day hemoconcentration was observed, some animals showing decreases in leucocyte and lymphocyte counts and lymphocyte percentage. 6. Biochemical examination showed increases in total and free cholesterol levels in males given 600 mg/kg/day or more, an increased cholinesterase and decreased levels of triglyceride and cholesterol ester ratio in males given 1800 mg/kg/day. An increase in LDH was observed in both sexes given 5400 mg/kg/day and half of these animals also showed increases in GOT and Urea N. 7. The absolute weights of the pituitary, brain, thymus, heart, lungs and kidneys were increased. However, no histopathological lesion was observed in these organs. As treatment-related histological changes, atrophy in the thymus and spleen, dilation in digestive tracts, neuronal necrosis and necrotic foci in the central nervous system, necrosis of lymphocytes in the lymphoid organs and a decrease in bone marrow cell were observed in both sexes given 5400 mg/kg/day. 8. After a 5-week recovery period, above-mentioned changes had disappeared. 9. From the above results, the non-effective dose level was estimated to be 200 mg/kg/day in males and 600 mg/kg/day in females, and toxic dose level 1800-5400 mg/kg/day in both sexes.

Administration, Oral↗

[Acute toxicity study of 6-amidino-2-naphthyl 4-[(4,5-dihydro-1H-imidazol-2-yl) amino] benzoate dimethanesulfonate (FUT-187) in mice, rats and dogs.

Single oral, subcutaneous or intravenous administration to mice and rats and oral administration to dogs were performed to investigate the acute toxicity of FUT-187. 1) LD50 values in mice were 4,395 mg/kg for males and 3,626 mg/kg for females orally, 6,284 mg/kg for males and 5,492 mg/kg for females subcutaneously, and 39.4 mg/kg for males and 41.4 mg/kg for females intravenously. In rats, these values were 4,653 mg/kg for males and 3,761 mg/kg for females orally, 6,799 mg/kg for males and 3,343 mg/kg for the females subcutaneously and 21.8 mg/kg for males and 15.8 mg/kg for females intravenously. 2) Death occurred 2 hours after administration in a male dog of the 3,000 mg/kg group just after convulsion and nasal discharge were observed. 3) General symptoms in mice and rats included a creeping gait, convulsion, singultus, cyanosis, decreased locomotor activity, piloerection and salivation which were commonly observed by all routes. All dogs showed vomiting and decreased locomotor activity; the prone or lateral position, crouching, ataxic gait and salivation were also observed in many cases. 4) On autopsy, changes attributable to local irritation by FUT-187 were seen in all species except mice and rats dosed intravenously. For the gastro intestinal-tract (GIT), inflammation of the stomach, adhesions between the stomach and the liver and sclerosis, petechiae or ulcer were observed in mice and rats dosed orally. In the subcutaneous route, retention of the test compound and necrosis at the injection site were observed. Reddening and loss of mucosal smoothness were observed in the GIT of a dog which died; desquamation, congestion, hemorrhage and retention of tested compound in the digestive mucosa were observed on histopathology.

Administration, Oral↗

[Oral single-dose and 13-week repeat-dose toxicity studies of RCC-36, the active metabolite of (+/-)-4-diethylamino-1,1-dimethylbut-2-yn-1-yl 2-cyclohexyl-2-hydroxy-2-phenylacetate monohydrochloride monohydrate(NS-21), a novel drug for urinary frequency and incontinence, in rats].

Oral single-dose and 13-week repeat-dose toxicity studies of (+/-)-4-ethylamino-1, 1-dimethylbut-2-yn-1-yl 2-cyclohexyl-2-hydroxy-2-phenylacetate monohydrochloride (RCC-36), an active metabolite of (+/-)-4-diethylamino-1,1-dimethylbut-2-yn-1-yl 2-cyclohexyl-2-hydroxy-2-phenylacetate monohydrochloride monohydrate (NS-21), a new drug for the treatment of urinary frequency and incontinence, were conducted in male and female Sprague-Dawley rats. In the single-dose toxicity study, rats were given the drug at doses of 0 (control), 400, 600, 900, 1350 and 2030 mg/kg. In the 13-week repeat-dose toxicity study, rats were given the drug for 13 weeks at doses of 0 (control), 3, 30 and 300 mg/kg. After discontinuation of the treatment, a 5-week recovery test was also conducted. In the single-dose toxicity study, death occurred in the 600 mg/kg group and over, and LD50 values were 735 mg/kg in both sexes. The major clinical signs observed following the administration of this drug were mydriasis, salivation, decreased spontaneous locomotor activity, ataxic gait, lacrimation and urorrhea in the 400 mg/kg group and over, hypopnea and soft feces in the 600 mg/kg group and over. In addition, prone or lateral position and tonic or clonic convulsion were observed in the dead animals. Rats showed a decrease in body weight or a suppression of its weight gain in the 400 mg/kg group and over. Macroscopic findings in the dead animals were congestion in lung and retention of foamy mucinous fluid in trachea. The animals alive showed no abnormalities attributable to the treatment. In the 13-week repeat-dose toxicity study, 13 cases of death occurred in the 300 mg/kg group. Main pathological findings in these cases were congestion and edema in lung. Mydriasis was seen in the 30 mg/kg group and over. Lacrimation, salivation, wheezing, emaciation [corrected] wasting and unkempt fur were seen in the 300 mg/kg. A suppression of body weight gain and a decrease in food consumption were observed in the 300 mg/kg group. An increase in water consumption was seen in the 30 and 300 mg/kg groups. Ophthalmologic examination confirmed the mydriasis in the 30 mg/kg group and over. Urinalysis showed an increase in urine volume and a decrease in Na+ excretion in the 30 and 300 mg/kg groups and decreases in K+ and Cl- excretions in the 300 mg/kg group. Hematological examination showed decreases in hemoglobin, hematocrit, MCV and MCH, and an increase in MCHC in the 300 mg/kg group. Blood chemical examination showed decreases in triglyceride and glucose, and an increase in total protein in the 300 mg/kg group. Pathological examination disclosed hepatocellular hypertrophy associated with hyperplasia of smooth-ER, a decrease in number of glycogen granules and an increase in number of lipofuscin in the 300 mg/kg group. Stimulated thyroid follicles were seen in the 300 mg/kg/group. In kidney, an increase in number of hyaline droplets in the proximal tubular epithelium, in which lysosomes and dense bodies were increased, was observed in the 300 mg/kg group. Dense bodies were increased also in the glomerular epithelium. In this dose group, adrenocortical hypertrophy was also observed. The recovery test showed that the above-mentioned changes were satisfactorily reversible or the degree and frequency of these changes were lowered. No treatment-related effects were seen in the 3 mg/kg group. These results show that the NOAEL (no observed adverse effect level) of RCC-36 is 3 mg/kg for 13-week oral toxicity in rats.

Administration, Oral↗

Determination of parotid urea secretion in sheep by means of ultrasonic flow probes and a multifactorial regression analysis.

For determination of the dynamics of parotid urea secretion in conscious sheep, a previously standardized transit time ultrasonic flow metering system was used to measure bilateral parotid flow. Six ewes fed for ad libitum consumption were prepared under halothane anesthesia with ultrasonic probes around both parotid ducts; these ducts were also cannulated orally. After probe encapsulation (8 d), parotid flows were recorded during 24 h, and samples of saliva and blood for urea determination were obtained hourly. Jaw movements were recorded by means of a submandibular balloon to monitor feeding behavior. Urea concentration in parotid saliva was 60 to 74% of that in plasma (a positive linear correlation existed) and was poorly influenced by the parotid flow. The amount of urea secreted with parotid saliva was directly related to the salivation rate. To calculate the urea secretion in parotid saliva, a multiple linear regression model was developed from computer-calculated parotid flows over 1-min periods and plasma urea concentration. The model was accurate because the plot of calculated vs measured values was not significantly different from the line of identity. The daily parotid urea N varied from .35 to 1.02 g among ewes. The higher urea secretion rate found during rumination and eating (1.32+/-.42 and .98 +/-.33 mg/min, respectively) vs. during rest (.60+/-.39 mg/ min, P<.05) was due to higher salivation rates (5.17 +/-1.46, 3.56+/-.90, and 2.04+/-.52 mL/min, respectively, P<.05) rather than to changes in saliva urea concentrations (saliva:plasma urea ratio = .65+/-.04, .67+/-.04, and .68+/-.03, respectively). Of the daily parotid urea output, 40.8% was secreted during rest. The contribution of parotid urea N to the ruminal N pool was relatively small (1.2 to 3.7% of the N intake, which was 23.0 to 33.6 g/d). These techniques allowed direct and precise measurements of parotid urea secretion without disturbing the animal or altering the physiological regulation of salivary secretion.

Animals↗

Clinical, cardiopulmonary and haemocytological effects of xylazine in goats after acute exposure to different environmental temperature and humidity conditions.

This study was carried out to assess the influence of xylazine administration on clinical, cardiopulmonary and haemocytological variables after acute exposure to different environmental conditions. Xylazine hydrochloride was administered intravenously at 0.1 mg/kg body mass to 6 clinically healthy, castrated male goats. All animals were exposed for 60 min to 3 sets of climatic conditions: 14 degrees C, 33% relative humidity; 24 degrees C, 55% RH, and 34 degrees C, 65% RH. The variables that were measured for a period of 60 min after xylazine administration were sedation, analgesia, salivation, urination, ventilation rate, heart-rate, mean arterial blood pressure, oesophageal temperature, haematocrit, mean corpuscular volume and mean corpuscular haemoglobin concentration. Xylazine induced sedation, analgesia, salivation and urination independently of the 3 environmental conditions. Environment had no influence on the onset, duration and recovery from sedation. In the 14 degrees C environment, xylazine resulted in a significant decrease in ventilation and heart-rate from baseline values. Significant changes in mean arterial blood pressure, haemoglobin concentration, mean corpuscular volume, haematocrit and red cell count were observed in the 3 environments. Total plasma protein was significantly altered at 24 degrees C and 34 degrees C. Acute exposure of goats to different environmental conditions had no significant influence on the clinical, cardiopulmonary and haemocytological variables. Physiological changes induced by xylazine were therefore independent of the environment.

Adrenergic alpha-Agonists↗