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Therapeutic benefits of putrescine-modified catalase in a transgenic mouse model of familial amyotrophic lateral sclerosis.

Dominant mutations in the copper/zinc superoxide dismutase (SOD1) gene have been observed in 15-20% of familial amyotrophic lateral sclerosis (FALS) cases. The mechanism by which SOD1 mutations result in motor neuron degeneration in FALS mice partly involves oxidative damage and an increased peroxidase activity of the mutant SOD1. A new therapeutic approach designed to eliminate the substrate of this peroxidase activity was examined in two lines of transgenic mice expressing the FALS-linked mutation glycine to alanine (G93A). We investigated the ability of putrescine-modified catalase (PUT-CAT), an antioxidant enzyme that removes hydrogen peroxide and has increased permeability at the blood-brain barrier, to modify the time course of the SOD1 mutation-induced motor neuron disease in these FALS mice. Continuous, subcutaneous administration of PUT-CAT significantly delayed the age at which onset of clinical disease occurred (indicated by loss of splay and/or tremors of hindlimbs) in a high-expressor line of FALS transgenic mice. Intraperitoneal injection of PUT-CAT given two times per week also significantly delayed the onset of clinical disease in a low-expressor line of FALS mice. PUT-CAT also significantly delayed the age at which clinical weakness developed (quantified by measuring the shortening of stride length) in both lines of FALS animals. No significant changes were observed in the survival times of the high-expressor FALS mice in any of the treatment groups. However, a trend toward a prolongation of survival was observed in the PUT-CAT-treated low-expressor FALS mice. These results support the role of free radical-mediated damage in the cascade of events leading to motor neurodegeneration in FALS and indicate that PUT-CAT interacts with a critical step in this cascade to delay the onset of clinical disease as well as the development of clinical weakness in FALS transgenic mice.

Amyotrophic Lateral Sclerosis↗

Involvement of mu-opioid receptors in the antitussive effects of pentazocine.

The effect of pentazocine on the capsaicin-induced cough reflex in rats was investigated. Intraperitoneal injection of pentazocine, in doses from 1 to 10 mg/kg, significantly decreased the number of coughs in a dose-dependent manner. The antitussive effect of pentazocine (10 mg/kg, i.p.) was significantly reduced by prior injection of naloxone (0.3 mg/kg, i.p.), but it was unaffected by Mr-2266 BS (5 mg/kg, i.p.), an antagonist of kappa-opioid receptors. The antinociceptive potency of pentazocine (30 mg/kg, i.p.), as determined by the formalin test, was significantly reduced by pretreatment with Mr-2266 BS (5 mg/kg, i.p.), whereas naloxone (0.3 mg/kg, i.p.) had no significant effect on the antinociceptive effect of pentazocine. The antitussive effects of pentazocine (3 mg/kg) and morphine (0.1 mg/kg) were significantly enhanced in rats treated chronically with naloxone (5 mg/kg/day, 5 days), whereas the antitussive effect of U-50,488 H (1 mg/kg, i.p.), a selective kappa-opioid agonist, was not enhanced in these rats. By contrast, the antinociceptive effect of morphine (0.01 mg/kg, i.p.) was significantly enhanced in rats that had been pretreated chronically with naloxone. However, the antinociceptive effects induced by pentazocine (3 mg/kg, i.p.) and U-50,488 H (1 mg/kg, i.p.) were unchanged. These results suggest that pentazocine-induced antitussive effects in rats are mediated via stimulation of mu-opioid receptors.

3,4-Dichloro-N-methyl-N-(2-(1-pyrrolidinyl)-cycloh↗

Heterotransplantation of human gastric carcinomas into nude mice.

A total of 33 specimens of human gastric carcinoma were used for transplantation into nude mice. Initital tumor "take" was accomplished in 15 of the 33 tumors, and the transplantability rate was 45.5%. Transplantability correlated with histologic type, but not with clinical stage or Borrmann's classification. The transplantability rate of differentiated carcinomas, such as well-differentiated tubular adenocarcinoma, moderately differentiated tubular adenocarcinoma, and papillary adenocarcinoma was greater than that of poorly differentiated tumors, such as poorly differentiated adenocarcinoma and mucinous adenocarcinoma. The growth patterns of transplanted tumors were divided into 3 types: rapid, slow, and persistent. There were no specific relationships between growth pattern and histologic type. All histologic types, except signet ring cell carcinoma, could be transplanted serially. Tumor growth became rapid after serial transfer. However, the original histology of these tumors was unchanged. No invasion or metastases were encountered. Intraperitoneal injection of a tumor cell suspension, prepared from subcutaneous transplants of a poorly differentiated adenocarcinoma of Borrmann type III, grew in an ascites form, with invasion and metastasis. Ascitic fluid accumulated within 3--6 weeks after injection. Subsequently, intravenous injection of ascites fluid produced metastases in nude mice. The histology of the subcutaneous tumor was similar to that of the original tumor from the patient.

Adenocarcinoma↗

The response of hepatic angiotensinogen secretion to experimental inflammatory stimuli. A comparison with acute-phase proteins.

Angiotensinogen is thought to be an acute-phase protein, since its plasma concentrations increase in response to some inflammatory conditions, e.g. partial hepatectomy, nephrectomy or lipopolysaccharide (LPS) injection. However, this response of angiotensinogen has never been related to that of established acute-phase proteins. We have, therefore, examined plasma concentrations and hepatic secretion of angiotensinogen in two widely used inflammation models, i.e. turpentine or LPS injection in the rat, as well as in nephrectomized and sham-nephrectomized rats, in comparison to the response of two established acute-phase proteins, alpha 1-acid glycoprotein (AGP) and alpha 2-macroglobulin (AMG). Plasma concentrations and secretion rates of AGP and AMG increased significantly in all the conditions examined. The magnitude of the response decreased in the order turpentine > nephrectomy = LPS > sham nephrectomy. Angiotensinogen secretion was stimulated in LPS-injected (2.5-fold) and nephrectomized rats (2.6-fold), whereas no changes were seen in sham-nephrectomized rats. Surprisingly, a significant decrease both in secretion rates and plasma concentrations of angiotensinogen occurred in turpentine-injected rats. Intraperitoneal injection of interleukin 6, a major inductor of hepatic acute-phase proteins, increased plasma concentrations and hepatic secretion rates of AGP, AMG and angiotensinogen. Changes in liver angiotensinogen mRNA correlated well with angiotensinogen secretion rates in all groups, indicating that alterations in angiotensinogen synthesis are responsible for the observed changes in secretion rates and plasma concentrations. The response of angiotensinogen to turpentine is difficult to reconcile with the conventional definition of an acute-phase protein.

Angiotensinogen↗

Chronic coadministration of olanzapine and fluoxetine activates locus coeruleus neurons in rats: implications for bipolar disorder.

RATIONALE: The depressive phase of bipolar disorder (bipolar depression) is a difficult-to-treat form of depression. The olanzapine/fluoxetine combination (Symbyax) is the only medication approved to treat this disorder. The precise neural mechanisms responsible for its efficacy are not clearly understood. OBJECTIVES: In order to further elucidate the neurobiological mechanisms responsible for the beneficial clinical effects of the olanzapine/fluoxetine combination, the current experiment was designed to investigate the effects of chronic coadministration of olanzapine and fluoxetine on electrophysiological activity in the locus coeruleus (LC). METHODS: Rats received olanzapine for 3 weeks via subcutaneous osmotic pumps while simultaneously receiving daily intraperitoneal injections of fluoxetine. These chronically treated rats were anesthetized, and single-unit recordings of LC neurons were made. RESULTS: Chronic administration of olanzapine alone significantly increased firing of LC neurons, while, as reported previously, chronic administration of fluoxetine alone significantly reduced firing of LC neurons. However, in the combination condition, olanzapine was able to block the fluoxetine-induced suppression of the LC, and a significant increase in LC activity was observed. CONCLUSIONS: The observed increase in firing of LC neurons could lead to enhanced levels of norepinephrine release in projection areas and amelioration of the clinical symptoms of bipolar depression.

Action Potentials↗

Therapeutic activity of the topoisomerase I inhibitor J-107088 [6-N-(1-hydroxymethyla-2-hydroxyl) ethylamino-12,13-dihydro-13-(beta-D-glucopyranosyl) -5H-indolo[2,3-a]-pyrrolo[3,4-c]-carbazole-5,7(6H)-dione]] against pediatric and adult central nervous system tumor xenografts.

PURPOSE: The in vivo antitumor activity of a novel topoisomerase I inhibitor, J-107088, was tested in athymic nude mice bearing subcutaneous or intracranial pediatric and adult malignant CNS tumor-derived xenografts. METHODS: J-107088 was administered to animals on days 1-5 and 8-12 via intraperitoneal injection at a dose of 54 mg/kg (162 mg/m2) per day in 10% dimethyl sulfoxide in 0.9% saline. The xenografts evaluated were derived from a childhood glioblastoma multiforme (D-456 MG), a childhood medulloblastoma (D-341 MED), an adult anaplastic astrocytoma (D-54 MG), an adult glioblastoma multiforme (D-245 MG), and a procarbazine-resistant subline of D-245 MG [D-245 MG (PR)]. RESULTS: J-107088 produced regressions and significant growth inhibition in all five of the xenograft lines growing subcutaneously. Growth delays ranged from 7.6 days with D-245 MG to 62.1 days with D-456 MG (P < 0.001). J-107088 also produced an 83% increase in survival in mice bearing intracranial D-456 MG (P < 0.001). CONCLUSION: These results indicate that J-107088 may be active in the treatment of childhood and adult malignant brain tumors and provide the rationale for initiation of clinical trials with this agent.

Adult↗

Effects of single and repeated administration of 1,2,3,4-tetrahydroisoquinoline analogs on the binding of [11C]raclopride to dopamine D2 receptors in the mouse brain.

We investigated the effects of intraperitoneal injection of 1,2,3,4-tetrahydroisoquinoline (TIQ) analogs and 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP) on the binding of [11C]raclopride to striatal dopamine D2 receptors in mice. The binding of [11C]raclopride, but not of [11C]N-methylspiperone or [11C]nemonapride with higher affinity, to the receptors was significantly decreased immediately after TIQ injection. Neither a dopamine transporter blocker induced such effect nor TIQ affected the dopamine transporter-radioligand binding. Among the compounds investigated, including parkinsonism-inducing TIQ and (R/S)-1-benzyl-TIQ, parkinsonism-preventing (R)- and (S)-1-methyl-TIQ, and probable N-methylated metabolites of TIQ and 1-methyl-TIQ, TIQ and (S)-1-methyl-TIQ had the strongest effect on the binding of [11C]raclopride, and N-methylated derivatives showed less of an effect than the respective parent compounds. The decrease in the binding of [11C]raclopride continued for 7 hours and was followed by an increase until 10 days after the single and subchronic administration of TIQ. These findings suggest that TIQ analogs profoundly stimulated dopamine release which resulted in the competitive inhibition of the binding of [11C]raclopride to dopamine D2 receptors, but did not induce degeneration of the receptors.

Animals↗

Early postnatal dexamethasone diminishes transforming growth factor alpha localization within the ileal muscularis propria of newborn mice and extremely low-birth-weight infants.

Focal small bowel perforation (FSBP) occurs most commonly in the ileum of extremely low-birth-weight (ELBW) infants. Early postnatal dexamethasone (EPD) administration results in an increased risk for FSBP in this patient population, but the mechanism by which this occurs is unknown. Infants with FSBP have healthy mucosa but thinned smooth muscle, suggesting a mechanism involving the muscularis propria for these perforations. One explanation for these findings would be that dexamethasone alters the tissue availability of pertinent growth factors to the smooth muscle. To explore this possibility, we administered dexamethasone or saline by intraperitoneal injection to newborn mice for 3 days (dosed at 1 microg/g of body weight/day) to simulate EPD protocols. The animals were sacrificed after 72 h of treatment and their ileums harvested and prepared for microscopy. Immunolocalization was performed for three related growth factors (epidermal growth factor [EGF], heparin-binding EGF [h-EGF], and transforming growth factor alpha [TGF-alpha]) and their common receptor. We found TGF-alpha to be abundant and discretely localized in the muscularis propria in control animals but to be diminished in dexamethasone-treated animals. EGF-receptor immunostaining was also decreased with dexamethasone but there was minimal to no detection of EGF or h-EGF in either treatment condition. Surgical and autopsy specimens of the ileum were obtained from seven ELBW infants who either received EPD or not. These tissues were used for immunolocalization of the same growth factors and similar distributions for TGF-alpha were observed in several of these cases. These findings are consistent with an autocrine role for TGF-alpha in ileal smooth muscle proliferation and suggest a mechanism by which EPD might mediate smooth muscle thinning.

Animals↗

L-carnitine protection in ammonia intoxication. Effect of aminocarnitine on carnitine-dependent metabolism and acute ammonia toxicity.

Intraperitoneal administration of L-carnitine (16 mmol/kg) was reported by O'Connor et al. (FEBS Lett 166: 331-334, 1984) to fully protect mice from ammonium acetate given at a dose that kills 100% of untreated controls. Other investigators either have failed to observe protection by L-carnitine or have attributed the increased survival to a nonspecific "osmoprotective effect" of quaternary ammonium compounds. In the present studies we have confirmed the protective effect of L-carnitine in acute ammonia intoxication and have shown that D-carnitine and deoxycarnitine, close structural analogs of L-carnitine, are without protective effect. Although D-carnitine and deoxycarnitine do not support L-carnitine-dependent metabolisms, they are transported into tissues and their solutions are osmotically identical to those of L-carnitine; lack of protection by D-carnitine and deoxycarnitine suggests that metabolic rather than nonspecific osmotic effects account for L-carnitine-mediated protection. Further supporting the importance of L-carnitine-dependent metabolisms, we found that mice exhibited increased sensitivity to ammonium acetate when pretreated with DL-aminocarnitine, acetyl-DL-aminocarnitine or palmitoyl-DL-aminocarnitine, potent inhibitors of the carnitine acyltransferases. Interestingly, intraperitoneal injection of hyperosmotic solutions of sodium chloride or sucrose did afford significant protection against subsequently administered ammonium acetate. This phenomenon, which may be due to interference with ammonium acetate uptake from the peritoneal cavity or to reduction of cerebral edema by increased plasma osmolarity, apparently does not play a major role in L-carnitine-mediated protection since, as noted, hyperosmotic D-carnitine and deoxycarnitine solutions were not protective.

Acetates↗

Convulsions or flaccid paralysis induced by ruthenium red depending on route of administration.

Ruthenium red was administered to mice and cats intracranially or intraperitoneally. In mice, intracisternal administration produced status epilepticus and tonic convulsions. In contrast, intraperitoneal administration induced total flaccid paralysis lasting several hours. These effects of Ruthenium red were partially blocked by the simultaneous administration of CaCl2. EDTA, at doses much greater than those of Ruthenium red, produced effects similar to those of the dye, which were also blocked by CaCl2 administration. In cats, intraventricular or intrahippocampal administration of Ruthenium red through a permanently implanted cannula produced after a few minutes subclinical paroxysmal activity in all brain regions recorded. After several hours the animals developed typical grand mal seizures. Intraperitoneal injection of Ruthenium red to cats did not affect the EEG but markedly depressed muscular activity. Administration of carbachol to the latter animals produced myoclonic responses. These results are discussed in relation to the inhibitory effect of Ruthenium red on Ca2+ transport and binding to membranes, and to the role of this cation on neurotransmitter release.

Animals↗

The satiety effect of growth hormone-releasing factor in rats.

The effect of growth hormone-releasing factor (GRF) on feeding behavior in rats was examined. Starvation-induced feeding was suppressed by intraventricular administration of 1 nmol and 4 nmol of synthetic human GRF (hGRF). Food intake was not affected when the peptide was administered by intraperitoneal injection. Furthermore, centrally administered hGRF also suppressed feeding in hypophysectomized rats. These results suggest that GRF suppression of food intake is mediated through the central nervous system independent of its effect on pituitary growth hormone secretion.

Animals↗

Low doses of gamma-hydroxybutyric acid stimulate the firing rate of dopaminergic neurons in unanesthetized rats.

In unanesthetized rats the intravenous (i.v.) administration of gamma-hydroxybutyric acid (GHB) at the doses of 50-400 mg/kg produced a dose-related stimulation (10-56%) of the firing rate of dopaminergic (DA) neurons in the pars compacta of the substantia nigra. Doses of 1000 and 1500 mg/kg inhibited the firing rate almost completely. In unanesthetized rats the intraperitoneal injection of GHB at the dose of 750 mg/kg produced a brief initial stimulation (23%) followed by a modest reduction in the firing rate (29%). On the other hand, in chloral hydrate-anesthetized rats the i.v. administration of GHB at cumulative doses of up to 200 mg/kg failed to modify the firing rate of DA neurons, while a cumulative dose of 400 mg/kg suppressed neuronal firing. The results indicate that sub-anesthetic doses of GHB stimulate the firing rate of DA neurons in unanesthetized rats.

Anesthesia, General↗

Inhibition of delayed-type hypersensitivity by heparin depleted of anticoagulant activity.

The intravenous or intraperitoneal injection of heparin fractions depleted of anticoagulant activity (HFDA) into mice, either at the time of immunization or challenge, inhibited hapten-specific delayed-type hypersensitivity (DTH) reactions. The loss was not due to functional elimination of sensitized lymphocytes, since mice sensitized with the contactant and then treated with HFDA retained their ability to transfer reactivity into normal syngeneic recipients. In contrast, lymphocytes from sensitized mice were unable to produce DTH reactivity in recipient mice pretreated with HFDA. The intravenous injection of HFDA resulted in a rapid, but transient increase in the number of circulating leukocytes. The intravenous injection of HFDA also reduced the footpad swelling that resulted from a local injection of concanavalin A. It is postulated that HFDA exercise their inhibitory effects on the DTH response by interfering with the migration of cells into the challenge site.

Animals↗

Toxic effects of quinacrine hydrochloride in rhesus monkeys.

The toxic effects of intraperitoneal, intrauterine and intravenous administration of quinacrine hydrochloride solution were evaluated in female adult rhesus monkeys (Macaca mulatta). A single intraperitoneal injection of 400 mg and above resulted in the development of toxic manifestations leading to death of monkeys. Intrauterine instillation of 500 mg of quinacrine was well tolerated and did not produce any toxic effects. However, intravenous injection of 100 and 75 mg was lethal to the animals.

Animals↗

Influence of ifenprodil on the ACTH-induced behavioral syndrome in rats.

Ifenprodil--an antagonist at the modulatory site of the NMDA receptor complex sensitive to polyamines--intraperitoneally injected at doses of 3 or 10 mg/kg, dose dependently prevented the behavioral syndrome induced by intracerebroventricular administration of adrenocorticotropin (ACTH)-(1-24) in adult male rats (excessive grooming, stretching, yawning, penile erections). These data further support a role of the brain ornithine decarboxylase (ODC)-polyamine system in the ACTH-induced behavioral syndrome, and may suggest an involvement of excitatory amino acids.

Adrenocorticotropic Hormone↗

Nicotine cue: lack of effect of the alpha 7 nicotinic receptor antagonist methyllycaconitine.

To assess the role of the alpha 7 neuronal nicotinic acetylcholine receptor in the discriminative stimulus properties of (-)-nicotine, this study investigated the ability of the alpha 7 receptor antagonist methyllycaconitine to modulate the nicotine cue. In rats trained to discriminate (-)-nicotine from saline, intraperitoneal injections of methyllycaconitine neither induced nor blocked the nicotine cue. Intracerebroventricular administration of methyllycaconitine, neither potentiated nor blocked the effect of (-)-nicotine. On the other hand, intracerebroventricular injections of mecamylamine blocked the nicotine cue. The available evidence indicate that the nicotinic acetylcholine receptors in the brain blocked by methyllycaconitine, those presumably containing alpha 7 subunits, do not participate in the expression of the discriminative stimulus properties of (-)-nicotine.

Aconitine↗

Putrescine has analgesic activity, in rats.

Putrescine, intraperitoneally injected into rats at doses of 200, 300 and 400 mg/Kg, had a dose-dependent analgesic effect (hot plate, 55.5 degrees C), which was not antagonized by naloxone. Analgesia was also obtained by intracerebroventricular injection (1,000 nmoles/rat). Chronic administration (300 mg/Kg/day i.p. for 8 consecutive days) resulted in the development of tolerance. In our experimental conditions, no obvious toxicity was observed. These results may suggest for polyamines a role in nociception, and may disclose a new class of analgesic drugs.

Analgesics↗

Attenuation of the behavioral response to quisqualic acid and glutamic acid diethyl ester by chronic haloperidol administration.

Long-term neuroleptic administration produces a behavioral supersensitivity to dopamine agonists. Tyrosine hydroxylase immunoreactive synapses in the striatum are closely associated with putative glutamate-mediated synapses, on dendrites and dendritic spines of the same neuronal population. The purpose of the present study was to determine whether chronic neuroleptic administration would alter the behavioral response to glutamatergic drugs. Mice were chronically administered haloperidol for 28 days. After four days of withdrawal, behavioral activity was measured following intraventricular administration of quisqualic acid or intraperitoneal injection of glutamic acid diethyl ester. Both agents decreased behavioral activity. This response to glutamatergic drugs at low dosages was attenuated by chronic haloperidol administration. It is concluded that chronic haloperidol administration alters the behavioral responsivity of animals to glutamatergic drugs.

Animals↗