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The anti-nociceptive effect of reserpine and haloperidol mediated by the nigro-striatal system: antagonism by naloxone.

Reserpine (10 mg/kg) and haloperidol (2 mg/kg) injected intraperitoneally increased the reaction time of the tail-flick response in intact but not in pre-nigrally decerebrate or spinal rats. The antinociceptive effect of both drugs was antagonized by intraperitoneal injections of dopa (100 mg/kg), apomorphine (2 mg/kg) or naloxone (1 mg/kg) as well as by bilateral micro-injections into the caudate nuclei of apomorphine (100 microgram and 20 microgram) and naloxone (10 microgram). It is concluded that the nigrostriatal feedback system is involved in the anti-nociceptive effect of reserpine and haloperidol.

Analgesics↗

Effects of piperine on convulsions and on brain serotonin and catecholamine levels in E1 mice.

Convulsions of E1 mice were completely suppressed by 60 mg/kg of piperine injected intraperitoneally. The ED50 was 21.1 mg/kg. The brain 5-HT, dopamine and norepinephrine levels were estimated 1 hour after the intraperitoneal injection of piperine. The 5-HT level was significantly higher in the cerebral cortex of piperine treated mice than in control mice. This increase may be related directly to the mechanism of inhibition of convulsions by piperine. On the other hand, lower levels of 5-HT were observed in the hippocampus, midbrain and cerebellum. The dopamine level in the piperine treated mice was markedly higher only in the hypothalamus, while the norepinephrine levels were lower in every part of the brain.

Alkaloids↗

Effect of N-benzyl-D-glucamine dithiocarbamate on renal toxicity induced by cadmium-metallothionein in rats.

The effect of N-benzyl-D-glucamine dithiocarbamate (BGD) on the renal toxicity induced by acute exposure to cadmium-metallothionein (Cd-MT) in rats was studied. Rats were injected intraperitoneally with BGD (400 mumol/kg) 6, 12, or 24 h after intraperitoneal injection of Cd-MT (1.78 mumol Cd as Cd-MT/kg) and thereafter they received three injections of BGD (400 mumol/kg) daily for 3 days. Urinary protein concentration and aspartate aminotransferase (AST) activity significantly increased 1 day after Cd-MT treatment and decreased to control levels at 9 days after the treatment. Urinary excretion of glucose and amino acids rose gradually reaching maximum levels 5 days after Cd-MT treatment and returned to the control levels at 9 days. BGD injection significantly reduced the increases in the urinary excretion of protein, AST, glucose and amino acid, which were produced by Cd-MT treatment. Significant increases in urine volume were observed after Cd-MT treatment. BGD injection inhibited the increase in urine volume caused by Cd-MT treatment. A long time interval (12 and 24 h) between the administrations of Cd-MT and BGD resulted in a decreased protective effect of BGD against Cd-MT-induced renal damage. Following Cd-MT injection, the major route of excretion of cadmium (Cd) was via the urine and the kidney was the major site of accumulation of Cd. BGD injection remarkably increased the urinary excretion of Cd, resulting in a significant reduction in the kidney Cd concentration. The results of this study indicate that BGD injection is effective in decreasing the Cd concentration in the kidney, resulting in the protective effect on Cd-MT-induced renal damage.

Amino Acids↗

Effect of akatinol (memantine) in central spinal pain syndrome.

On the model of central spinal pain syndrome in rats induced by application of penicillin to the dorsal surface of the lumbar spinal cord, akatinol injected intraperitoneally at the peak of syndrome or applied locally simultaneously with penicillin produced a dose-dependent analgesic effect. Intraperitoneal injection of akatinol at the peak of pain syndrome inhibited neuronal activity in spinal dorsal horn: the amplitude of total evoked neuronal response significantly decreased and the duration of action potentials returned to normal. It is concluded that activation of NDMA receptors plays a significant role in the development of central spinal pain syndrome, in particular spontaneous pain attacks, hyperalgesia, and tactile allodynia. Akatinol can be an essential component of the complex pathogenetic therapy of central pains.

Animals↗

L-NAME administration prevents the inhibition of nucleotide hydrolysis by rat blood serum subjected to hyperargininemia.

The main objective of the present study was to evaluate the in vivo and in vitro effect of Arg on serum nucleotide hydrolysis. The action of Nomega-nitro-L-arginine methyl ester (L-NAME), an inhibitor of nitric oxide synthase, on the effects produced by Arg was also examined. Sixty-day-old rats were treated with a single or a triple (with an interval of 1 h between each injection) intraperitoneal injection of saline (group I), Arg (0.8 g/kg) (group II), L-NAME (2.0 mg/kg or 20 mg/kg) (group III) or Arg (0.8 g/kg) plus L-NAME (2.0 mg/kg or 20 mg/kg) (group IV) and were killed 1 h later. The present results show that a triple Arg administration decreased ATP, ADP and AMP hydrolysis. Simultaneous injection of L-NAME (20 mg/kg) prevented such effects. Arg in vitro did not alter nucleotide hydrolysis. It is suggested that in vivo Arg administration reduces nucleotide hydrolysis in rat serum, probably through nitric oxide or/and peroxynitrite formation.

Adenosine Diphosphate↗

A radioautographic study of the effect of age on the protein-synthetic and bone-deposition activity in interparietal sutures of male white mice.

Groups of male white mice were killed at 4, 5, 6, 7, 8, 9 and 10 weeks of age 2 h after intraperitoneal injection with [3H]-proline. Radioautographic analysis of sections of the interparietal suture demonstrated significantly greater protein-synthetic activity in the para-osseous zones relative to the middle zone (p less than 0.01) and a plateau of lower protein-synthetic activity by 7-8 weeks of age (p less than 0.05). Groups of mice were selected at 4, 6, 8 and 10 weeks of age. Each mouse was injected intraperitoneally with [3H]-proline three times at one-week intervals. Sutural growth rate was determined from incremental lines revealed by radioautographs prepared from serial paraffin sections of the interparietal suture and demonstrated a stabilization of growth by 8 weeks of age. This, together with the grain counting data, suggested that a mouse of 7-8 weeks would provide a suitable model for experimental studies in sutural remodelling response without masking effects by normal growth.

Age Factors↗

The effects of oestrogen administration on tryptophan metabolism in rats and in menopausal women receiving hormone replacement therapy.

The effects of the administration of oestrogens on the activity of hepatic tryptophan oxygenase have been assessed both directly (by measurement of enzyme activity in vitro) and indirectly (by measurement of urinary excretion of tryptophan metabolites) in rats, and indirectly in menopausal women receiving hormone replacement therapy. Intraperitoneal administration of 500 micrograms of oestradiol or ethinyl oestradiol/kg body wt had no effect on the activity of tryptophan oxygenase in homogenates of liver from mature (13-week-old) female rats. Both adrenalectomy and ovariectomy led to a reduction in the activity of tryptophan oxygenase in homogenates of liver from mature rats; again there was no effect of giving 500 micrograms of oestradiol/kg body wt by intraperitoneal injection. Intraperitoneal administration of 210 micrograms of oestrone sulphate/kg body wt for 1 or 2 days before killing, or its incorporation in the diet for up to 8 weeks at an equivalent dose rate, had no effect on the activity of tryptophan oxygenase in homogenates of liver from ovariectomized 6-14-week-old female rats. Intraperitoneal administration of 500 micrograms oestradiol/kg body wt to intact mature female rats together with 500 mg tryptophan/kg body wt caused a reduction in the urinary excretion of xanthurenic and kynurenic acids, kynurenine and N1-methyl nicotinamide. When peri- and post-menopausal women were treated with ethinyl oestradiol (20 micrograms/day) or piperazine oestrone sulphate (3 mg/day) for 3 months, there was an increase in the concn of tryptophan in plasma, with no change in the urinary excretion of xanthurenic and kynurenic acids and kynurenine. This study provides no evidence for the induction of tryptophan oxygenase by oestrogens in rats or human beings.

Adrenalectomy↗

Characterization of interleukin 2 (IL-2)-dependent cytotoxic T-cell clones. V. Transfer of resistance to allografts and tumor grafts requires exogenous IL-2.

The adoptive transfer of resistance to tumor grafts with cloned interleukin 2 (IL-2)-dependent cytotoxic T-cell lines was examined. Two clones were used: clone CTLL-A2 which recognizes H-2Dd determinants and clone CTLL-R5 which recognizes a unique cell surface antigen of BALB/c leukemia RL male 1. Systemic transfer of resistance with these clones was accomplished only when exogenous (rat or human) IL-2 was administered at the same time. Intraperitoneal injection of CTLL-A2 cells accelerated rejection of sarcoma Meth A (H-2Dd), but not ascites sarcoma BP8 (H-2k) or leukemia EL4 (H-2b) inoculated subcutaneously into C57BL/6 mice. CTLL-R5 cells were examined in local (Winn tests) as well as systemic transfer experiments. When mixed with leukemia cells before subcutaneous injection, they suppressed the growth of leukemia RL male 1 without exogenous IL-2. When injected intraperitoneally, CTLL-R5 cells inhibited the growth of subcutaneous grafts of leukemia RL male 1 only when exogenous IL-2 was administered at the same time. CTLL-R5 did not inhibit the growth of other radiation-induced BALB/c leukemias.

Animals↗

Formation of mutagenic metabolites from benzo(a)pyrene and 2-aminoanthracene by the s-9 fraction from the liver of the Northern pike (Esox lucius): inducibility with 3-methylcholanthrene and correlation with benzo[a]pyrene monooxygenase activity.

The mutagenicity of benzo[a]pyrene and 2-aminoanthracene in the Ames test using the S-9 fraction from the liver of the Northern pike (Esox lucius) was tested. S-9 fractions were prepared both from fish injected intraperitoneally with 3-methylcholanthrene and from control animals. In addition benzo[a]pyrene monooxygenase activity was assayed in the same S-9 fractions used in the Ames test. S-9 fractions from the liver of the Northern pike were found to convert benzo[a]pyrene and 2-aminoanthracene to mutagenic metabolites. The number of revertants obtained was increased 2--4-fold in the case of 2-aminoanthracene and 3--14-fold in the case of benzo[a]pyrene by pretreatment of the pike with a single intraperitoneal injection of 3-methylcholanthrene. This injection also caused a 2--6-fold increase in the benzo[a]pyrene monooxygenase activity of the S-9 fractions used. These increases in mutagenicity and activity of the S-9 fractions used. these increases in mutagenicity and activity occur mainly during the first 4--12 days after the injection, but further small increases are observed for as long as 60 days. A strong positive correlation was found between the benzo[a]pyrene monooxygenase activity of the S-9 fractions used and their ability to give rise to revertants in the Ames test using 2-aminoanthracene or benzo[a]pyrene. This indicates that the major determining factor in the production of reactive metabolites which attack DNA in this in vitro system is the activity of the phase I cytochrome P-450 system.

Animals↗

Postinflammatory increase of absorption from peritoneal cavity into lymph nodes: particulate and oily inocula.

One week after intraperitoneal injection of rats and mice with a chemical irritant, the abdominal cavity was in the healing phase of a sterile peritonitis. At this time, mineral oil or a particulate dye or metal injected intraperitoneally was absorbed into lymph nodes in much larger amounts than normal. Absorption of oil caused fourfold enlargement of nodes, distention of afferent lymphatics, and sometimes widespread oil embolization of lungs. Absorption was increased when the chemical irritant had bathed the entire peritoneum but not when it was limited to the lower abdominal cavity. The chemical peritonitis caused shrinkage, agglutination, fixation, and fibrosis of the greater omentum which thereby lost its ability to sequester particles. In the absence of omental scavenging, dye, metal, or oil accumulated under the diaphragm and penetrated the diaphragmatic lymphatics. In addition, enhanced absorption by proliferated subdiaphragmatic lymphatics may have been involved. Prior induction of a chemical peritonitis augments absorption into the lymphatics of certain aqueous and cellular as well as particulate and oily inocula, so it is likely to find many applications in experimental pathology.

Absorption↗

Redox state in liver mitochondria in acute copper sulfate poisoning.

A patient with acute copper sulfate poisoning was found to have maintained a relatively oxidized hepatic mitochondrial redox state in spite of his being in refractory shock. The mechanism underlying this unexpected clinical observation was investigated. The study involved the allocation of male Wistar rats into three groups; copper sulfate-treated (intraperitoneal injection), hemorrhagic shock, and control. Since the copper sulfate-treated rats developed severe hypovolemic shock, hypovolemia was induced in the hemorrhagic shock group to mimic the time course of blood pressure reduction in the copper sulfate-treated group. The control rats were injected intraperitoneally with a saline solution. The hepatic energy charge and the arterial ketone body ratio (AKBR), which reflects the hepatic mitochondrial redox state, of each group of rats was determined. The hepatic energy charge of the copper sulfate-treated rats decreased significantly, reflecting severe hypotension and copper sulfate-induced hepatic damage. This decrease was greater than that observed in the rats subjected to hemorrhagic shock. Despite the profound shock and the markedly decreased hepatic energy charge, the AKBR in copper sulfate-treated rats did not decrease compared with the control group, while the AKBR in rats with induced hemorrhagic shock did decrease significantly. These observations, together with in vitro studies, suggest that the relatively oxidized redox state of liver mitochondria in the copper sulfate-treated rats, notwithstanding the severe shock state of these animals, may be the result of direct oxidation of NADH by copper sulfate.

3-Hydroxybutyric Acid↗

Tissue-specific inhibition of [3H]thymidine incorporation into DNA by carcinogenic N-nitrosamines.

The N-nitrosamines N-nitrosodimethylamine (DMN), N'-nitrosonornicotine (NNN) and 4-(N-methyl-N-nitrosamino)-1-(3-pyridyl)-1-butanone (NNK) were injected intraperitoneally 24 h before sacrifice in F344 rats and C57BL mice in doses of 297 mumoles/kg b.w. and 148 mumoles/kg b.w., respectively. 2 h before sacrifice, the animals were given an intraperitoneal injection of [3H]thymidine. The results showed that the examined N-nitrosamines inhibited the incorporation of [3H]thymidine into DNA in a few tissues of the rats and the mice. The results indicated that the N-nitrosamines exerted a tissue-specific inhibition of the [3H]thymidine incorporation in the tissues reported to be involved in the biotransformation of these substances. The observed inhibitory effects on the incorporation of [3H]thymidine by DMN, NNN and NNK were also correlated to a considerable extent to the reported sites of carcinogenicity. The present study indicates that measurements of [3H]thymidine incorporation into DNA in various tissues of experimental animals is a useful short-term bioassay to evaluate the potential tissue-specific carcinogenicity of the N-nitrosamines. The method may also be useful as a complement to other short-term in vivo tests in the screening of potential genotoxicity of several other chemicals.

Animals↗

Preventive action of quisqualic acid against grayanotoxin-induced suppression of locomotor activity in mice.

Grayanotoxin-III (GTX-III) is a constituent in leaves of Pieris japonica D. Don which exhibits, in vitro, the ability to open voltage-sensitive sodium channels in various excitable tissues. Effects of systemic administration of GTX-III were studied in vivo using Std-ddy mice. Salivation, vomiting and paralysis of the hind paws invariably occurred in mice injected intraperitoneally with 0.1 or 0.25 mg/kg of GTX-III. The writhing response to an intraperitoneal injection of acetic acid was considerably diminished by pretreatment of animals with the toxin. The grayanoid also caused a profound attenuation of the response to caudal compression, while inducing no significant alteration of that to thermal injury. Pretreatment with GTX-III resulted in a significant decrement of the time required for loss of the righting reflex induced by pentobarbital, with a concomitant delay in recovery. Mice injected with the toxin exhibited a significant and restorable suppression of coordination, and a long-lasting suppression of spontaneous locomotor activity in both horizontal and vertical directions. Neither tetrodotoxin (1-5 micrograms/kg, i.p.) nor Ro15-1788 (1-5 mg/kg, i.p.) prevented the GTX-III-induced suppression of locomotion. Atropine (5-10 mg/kg, i.p.) failed to antagonize the GTX-III-induced suppression but protected against salivation induced by the toxin without affecting other symptoms. Intracerebroventricular injection of quisqualic acid (0.5 microgram), one of the agonists for central glutamate receptors, but not that of tetrodotoxin (5 ng) prevented the GTX-III-induced suppression of horizontal movement. These results suggest that GTX-III may elicit its depressant action on horizontal locomotion possibly through interacting with central glutamatergic neurons rather than activating voltage-sensitive sodium channels in the brain. Possible involvement of muscarinic cholinergic neurons in the GTX-III-induced salivation is also suggested.

Analgesics↗

Tubulointerstitial nephritis induced by monoclonal anti-proximal tubular basement membrane antibodies in mice.

Tubulointerstitial nephritis (TIN) was induced by monoclonal anti-tubular basement membrane (TBM) antibodies. Hybridomas producing anti-TBM antibodies were produced by the fusion of a mouse parental cell line with BALB/c mice which had been immunized with Wistar rat renal cortices. Three hybridoma cell lines were selected for production of antibodies against proximal TBM by indirect immunofluorescence. The isotypes of these monoclonal antibodies (MoAbs) were determined to be of the IgM class by double immunodiffusion. Subsequently, 6-week-old female BALB/c mice were injected intraperitoneally with cells (1 x 10(7)) of anti-TBM antibody-producing hybridomas, 39-1, 39-4, or 339-3. As a control, a monoclonal IgM-producing myeloma cell line was used. Proteinuria developed from Day 8, reaching 200 to 300 mg% in mice from the experimental groups, while in the control mice, urinary protein did not exceed 50 mg%. By sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) analysis, the excreted urinary proteins proved to be of low molecular weight. An immunofluorescent study revealed a linear localization of IgM along the proximal TBM from Day 4, and light microscopy showed focal degenerative alteration in proximal tubules and focal round cell infiltration in the interstitium. Electron microscopy revealed dense deposits on some proximal TBM. These results indicate that monoclonal anti-TBM IgM antibodies can induce TIN as a result of persistent production of antibodies from intraperitoneally injected hybridomas.

Animals↗

Suppression of conditioned drinking by taurine and related compounds.

Mice were conditioned to respond for water reinforcements on a FR-5 schedule. Taurine, injected intraperitoneally at doses of 9.0, 13.8, and 21.3 mmole/kg 30 min prior to the experimental session, produced a dose-related decrease in both the initial response rate and total number of reinforcements received by mice deprived of water for 24 hr. The structural analogues of taurine (aminomethanesulfonic acid, 3-aminopropanesulfonic acid, beta-alanine, cysteamine, and glycine) also produced a hypodipsia. Doses of taurine which produced depression of responding for water reinforcements were used which produced no suppression of spontaneous motor activity, rotarod performance, Sidman avoidance, or shuttle-box avoidance. After intraperitoneal injection, the concentration of taurine increased in the hypothalamus and medulla, but not in other brain areas. We suggest that taurine might be acting by specifically depressing areas of the hypothalamus which stimulate drinking.

Animals↗

Hypersensitivity to histamine and systemic anaphylaxis in mice with pharmacologic beta adrenergic blockade: protection by nucleotides.

The effects of exogenous nucleotides on the histamine hypersensitivity of pharmacologically beta-blocked mice were investigated. Female HLA-SW (ICR) mice, 27-29 gm, were injected intraperitoneally with 20 to 100 mug of propranolol 45 min before intraperitoneal challenge with 1 mg histamine. These animals had a mortality which averaged approximately 80%. At various time intervals before histamine, doses of from 0.5 to 12 mumoles of nucleotides were administered intravenously. Noncyclic nucleotides, adenosine, adenosine 5'-monophosphate (AMP), and guanosine 5'-monophosphate (GMP) showed clear, dose-response protection against histamine death of propranolol-treated mice when they were given 45 to 90 min before histamine. Cyclic AMP showed significant protection only when it was given at a dose of 8 mumoles 45 to 90 min before histamine, and lower or higher doses gave equivocal or no protection. Cyclic GMP WAS Not protective at any dose tested. Propranolol treatment also produced enhanced sensitivity to passive systemic anaphylaxis. Mice were passively sensitized by intraperitoneal injection of mouse anti-egg albumin antibody 6 hr before intravenous challenge with 0.5 mg egg albumin. The mortality from anaphylaxis in the group treated with 20 mug propranolol 45 min before antigen challenge increased to 83%, while that of the group not given propranolol was only 10%. Nucleotides were given intravenously 45 min before antigen challenge. The nucleotides that protected mice from death due to histamine challenge also protected them from death due to systemic anaphylaxis. These protective nucleotides were the same nucleotides that had been reported previously to be protective against Bordetella pertussis-induced hypersensitivity to histamine and anaphylaxis.

Adenosine↗

Action of neurotensin on size, composition, and growth of pancreas and stomach in the rat.

Since the gastrointestinal peptide neurotensin has a stimulatory effect on the secretion of the exocrine pancreas and an inhibitory effect on secretion and motility of the stomach, we investigated whether chronic parenteral administration of neurotensin would affect pancreatic and gastric growth. We therefore infused synthetic neurotensin subcutaneously (dose, 43 and 282 pmol X kg-1 X min-1) in 20 Wistar rats for 2 weeks using Alzet osmotic minipumps and compared pancreatic weight, DNA, RNA, protein, lipase, amylase, pancreatic polypeptide and insulin with these parameters in 10 control rats from the same litter with subcutaneously implanted plastic cylinders approximately the size of the minipumps. In another experiment, synthetic neurotensin (836 pmol X kg-1) was injected intraperitoneally three times a day for 3 days in 12 rats. Thereafter, we measured pancreatic DNA and in vitro incorporation of [3H]thymidine into pancreatic DNA. These effects were compared with the actions of caerulein and normal saline. Long term infusion of the high neurotensin dose induced an increase of pancreatic weight (control: 0.87 g, neurotensin: 1.02 g) and of DNA (control: 2.5 micrograms; neurotensin: 3.5 micrograms) and pancreatic polypeptide (control: 2.4 ng; neurotensin: 7.4 ng) contents, whereas pancreatic protein, RNA, amylase and lipase contents were not stimulated. In relation to DNA, these parameters even were significantly depressed. Insulin remained unchanged. Intraperitoneal injection of neurotensin induced an increase of pancreatic DNA content and stimulated [3H]thymidine incorporation into DNA (control: 11 000 dpm/g; neurotensin: 15 800 dpm/g pancreas). Moreover, long-term neurotensin infusion with the high dose led to a rise in protein concentration and an increase in the thickness of the gastric antrum; antral DNA concentration was insignificantly stimulated. Parenteral neurotensin in the doses and at the times administered, led therefore, to hyperplasia of the pancreas and induced growth of the gastric antrum. It is concluded that neurotensin can act as a trophic factor on pancreas and gastric antrum of the rat. It remains to be determined whether this represents a physiological effect of neurotensin.

Aging↗

The pharmacokinetics and toxicity of murine monoclonal antibodies and of gelonin conjugates of these antibodies.

We studied in mice the in vivo pharmacokinetics and toxicity of murine monoclonal antibodies (MCA) and of disulfide-linked MCA conjugates of gelonin, a ribosomal inhibitor prepared from the seeds of Gelonium multiflorum. Iodinated MCA with specificity for human determinants and of gamma 1 or gamma 2a isotype had a circulatory half life (T 1/2) in the mouse of 4 days, which is consistent with previously published estimates of the circulatory T 1/2 of heterogeneous murine IgG. Iodinated murine MCA with specificity for murine determinants had a much shorter T 1/2, probably reflecting antigen binding. This effect could be partially overcome by the simultaneous injection of unlabeled MCA of identical specificity. Clearance of MCA-gelonin conjugates was characterized by an initial rapid phase lasting 8-12 h with a T 1/2 or from 4 to 7 h, followed by a slower clearance phase with T 1/2 approaching that of MCA. Moreover, the presence of significant amounts of intact conjugate in the murine circulation was demonstrable, by SDS gel electrophoresis, for up to 48 h post injection. Intraperitoneal injection of MCA-gelonin conjugate resulted in circulating levels identical to those achieved after i.v. administration after an initial 4 h equilibration. The LD50 of MCA-gelonin conjugates was approximately 25 mg/kg (i.v.) while that of gelonin was approximately 75 mg/kg (i.v.) MCA alone showed no toxicity in doses in excess of 150 mg/kg. At doses below the LD50 immunoconjugates caused a dose-dependent reversible weight loss. The main site of toxicity of MCA-gelonin conjugates was the liver; histopathological examination revealed dose-dependent foci of necrosis and acute inflammation. No pathology was observed in lung, spleen, kidney, gut or brain. The relationship to previous work in this area is discussed.

Animals↗