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Preservation of pancreatic islets in rodent models.

Islet-cell transplantation has some advantages over vascularized pancreas transplantation, but data from clinical islet cells transplantation have shown that some serious problems need to be overcome. One of them is the storage of islet cells. We investigated methods of preserving islet cells using culture-preservation and cryopreservation. Cryopreservation is thought to be effective for long-term preservation of large quantities of islet cells, because they can be cryopreserved without loss of their physiologic activity using a relatively rapid cooling rate of 25 degrees C/min. Moreover, in the allogenic transplantation models of cryopreservation of dissociated islet cells, there was a significant prolongation of survival time. These results suggest that cryopreservation of islet cells involves not only variable preservation methods but may also lead to a modification of graft immunogenicity.

Animals↗

Benefit of phosphodiesterase 4 inhibitors as supplemental therapy after lung transplantation concerning their antiproliferative effects: an experimental study using a heterotopic rodent model.

BACKGROUND: Recent advances in the understanding of immunomodulatory properties of phosphodiesterase 4 (PDE4) inhibitors recommend these drugs for immunosuppressive therapy after lung transplantation. The potency of three PDE4 inhibitors was tested using an established model of heterotopic tracheal transplantation in rats. METHODS: Five allogenic groups were investigated and treated with the PDE4 inhibitors: rolipram, cilomilast (Ariflo, SB-207499, SmithKline Beecham, Munich, Germany), roflumilast (Altana Pharmacia, Bad Homburg, Germany) or cyclosporine A (CsA), or left without immunosuppression. The grafts were quantitatively analyzed for epithelial integrity, monocyte/macrophage content, cell proliferation, and tracheal obliteration by histology/immunohistochemistry (days 1, 5, 7, 21, 28; n=4-7). RESULTS: In animals treated with the PDE4 inhibitors, the epithelium was completely lost until day 21. The epithelium was partially preserved in the rats receiving CsA until day 28. In the acute phase (days 5 and 7) the infiltration of monocytes and macrophages was significantly inhibited similarly (cilomilast) or less effective (rolipram, roflumilast) as in CsA-treated rats. In the chronic phase (day 28) the significant increase of monocytes and macrophages after CsA-treatment was not found in PDE4 inhibitor-treated rats. The PDE4 inhibitors showed lower (rolipram) or higher (cilomilast, roflumilast) potency as CsA to inhibit the cell proliferation. Only treatment with PDE4 inhibitor (Ariflo) significantly inhibited the obliteration, but to a lesser degree as CsA. CONCLUSION: The PDE4 inhibitors tested in our study are not suitable on their own for immunosuppressive therapy after lung transplantation because of the limited protection against the epithelial disturbance, infiltration of immune cells, and luminal obliteration. The strong anti-proliferative effect of the second-generation PDE4 inhibitors, cilomilast and roflumilast, suggest a benefit for the effective inhibition of immune cell and fibroblast proliferation contributing to the development of obliterative bronchiolitis.

3',5'-Cyclic-AMP Phosphodiesterases↗

Windows of vulnerability to psychopathology and therapeutic strategy in the adolescent rodent model.

Adolescence comes in association with puberty, when maturation and rearrangement of major neurotransmitter pathways and functions are still taking place. The neurobiological processes occurring in the brain during this developmental period have been so far poorly investigated. Yet, it is during adolescence that some major neuropsychiatric disorders may become evident, including ADHD, schizophrenia, and drug abuse. Moreover, the age-related neurobehavioural plasticity renders adolescents particularly vulnerable to the consequences of psychoactive drug exposure. In this view, there is an increased likelihood that addiction will develop when psychoactive drug use starts early during adolescence. From all these observations adolescence emerges as a critical phase in development. In the present review, we focus on recent neurobiological characterization of adolescent rats and mice. As for vulnerability to addictive behaviour, nicotine exposure during adolescence dose-dependently down-regulated levels of AMPA GluR2/3 subunits in the striatum, suggesting a reduced neurobehavioural plasticity in adult subjects. Comparable exposure during adulthood had opposite effects. It was found consistently that exposure to nicotine during adolescence, but not similar exposure in the post-adolescent period, increased the expression of specific subunits of the acetylcholine receptor in adult rats, thus enhancing the reinforcing efficacy of nicotine in a self-administration paradigm. The present data identified a specific age-window, characterized by long-term effects on behavioural and neurochemical indexes, of vulnerability. With respect to potential therapeutic approaches in ADHD, we studied the adolescent spontaneously-hypertensive-rat (SHR) in an intolerance-to-delay operant-behaviour paradigm. The model was further validated by the finding that impulsivity was reduced by chronic methylphenidate administration. Impulsive SHR animals were characterized by reduced cannabinoid CB1 receptor density in the prefrontal cortex. Interestingly, an acute cannabinoid agonist increased levels of self-control behaviour in these animals. The present data suggest that pharmacological modulation of the cannabinoid system might improve some behavioural anomalies seen in ADHD. In conclusion, modelling the adolescent phase in rats and mice appears to be useful for the investigation of determinants of vulnerability to addiction and to other early-onset neuropsychiatric disorders.

Adolescent↗

Beneficial effects of tempol, a membrane-permeable radical scavenger, in a rodent model of splanchnic artery occlusion and reperfusion.

The aim of the present study was to investigate the effects of tempol, a membrane-permeable radical scavenger, in rats subjected to splanchnic artery occlusion shock (SAO). Rats subjected to SAO developed a significant decrease in mean arterial blood pressure, a significant increase in tissue myeloperoxidase activity, and a marked injury to the distal ileum. SAO shock resulted in 100% mortality at 2 h after reperfusion. At 60 min after reperfusion, a marked increase in the immunoreactivity to nitrotyrosine and to poly (ADP-ribose) synthetase was observed in the necrotic ileum of rats with SAO. Staining of sections of the ileum obtained from SAO-shocked rats with anti-intercellular adhesion molecule (ICAM-1) and anti-P-selectin antibodies resulted in diffuse staining. Tempol (30 mg/kg bolus injection 5 min prior to reperfusion, followed by an infusion of 30 mg/kg/h intravenously) attenuated 1) the infiltration of the reperfused intestine with neutrophils, 2) the lipid peroxidation, 3) the production of peroxynitrite, 4) the degree of P-selectin and ICAM-1 staining in tissue sections from SAO-shocked rats, 5) histological signs of bowel injury, and 6) mortality at 2 h after reperfusion. Taken together, our results clearly demonstrate that the intracellular radical scavenger tempol reduces the intestinal injury of rats subjected SAO shock.

Animals↗

The importance of systemic cytokines in the pathogenesis of polymicrobial sepsis and dehydroepiandrosterone treatment in a rodent model.

The pathogenesis of sepsis is still undetermined to a large extent. It is an established fact that female gender is associated with a lower mortality and that sex steroid hormones influence the immunologic response. Dehydroepiandrosterone (DHEA) seems to have a protective immunologic effect in sepsis. It is still unknown in which way DHEA influences the pathogenesis of sepsis. Therefore, the effect of DHEA application on cytokine concentrations in tumor necrosis factor (TNF) receptor (TNF-RI(-/-)) and interleukin-6 (IL-6(-/-)) knockout mice was determined. In a model of polymicrobial sepsis induced by coecal ligation and puncture (CLP), the effect of DHEA on survival and cytokine concentrations was examined. For clarification of the role of TNF-RI, CLP was performed in TNF-RI knockout mice (TNF-RI(-/-)). In addition, IL-6 knockout mice (IL-6(-/-)) were used to clarify the role of IL-6. Furthermore, experiments were performed in mice that were not genetically modified (wild type, WT). The protective effect of DHEA could be confirmed in this CLP model. DHEA application was associated with a reduction in mortality in WT animals. Moreover, DHEA-treated animals demonstrated a reduction in systemic inflammatory effects, as determined by proinflammatory cytokines TNF-alpha, IL-1beta, IL-6, and the antiinflammatory cytokine IL-10. In this work, it was shown that the TNF-RI is essential for survival after CLP. DHEA application was associated with a reduction of mortality of 100% in TNF-RI(-/-) mice after CLP to 50%. This result engages, that the effect of DHEA is TNF-RI independent. However, the application of DHEA had no influence on the mortality in IL-6-/- mice. It can be concluded that the protective effect of DHEA in polymicrobial sepsis is mediated IL-6 dependently. DHEA reduces the systemic inflammation, measurable via the proinflammatory cytokines TNF-alpha, IL-1beta, IL-6, and the antiinflammatory cytokine IL-10. IL-6 might be involved in the DHEA-mediated reduction of postseptic complications. In contrast, DHEA seems to be TNF-RI independent. Consequently, DHEA might be useful as an adjunct therapy for the immune modulation in sepsis.

Adjuvants, Immunologic↗

Reconstituted high-density lipoprotein attenuates organ injury and adhesion molecule expression in a rodent model of endotoxic shock.

The salutary effects of high-density lipoproteins (HDLs) in animal and human models of endotoxic shock have in the past been attributed to the ability of this lipoprotein to bind to lipopolysaccharide. However, the precise mechanisms for the protective effect of HDL are unclear. The first objective of this study was to determine the effects of HDLs on the organ injury and dysfunction associated with acute severe endotoxemia. Second, to gain insight into the mechanism of action of HDL, we also investigated the effect of HDLs on 1) the expression of P-selectin and intercellular adhesion molecule-1 in the kidneys of rats treated with endotoxin and 2) the rise in the plasma levels of tumor necrosis factor-alpha (TNF-alpha). Rats were given Escherichia coli lipopolysaccharide (6 mg/kg i.v.), pretreated with either vehicle (n = 9) or reconstituted HDL (rHDL; apolipoprotein A-I/phosphatidylcholine proteoliposomes, n = 10), and were monitored for 6 h. Here we report that rHDL attenuates the renal injury and dysfunction caused by endotoxin in the rat. In addition, rHDL reduced the degree of histological tissue injury in the lung, liver and intestine and attenuated the expression of P-selectin and intercellular adhesion molecule-1 in the renal glomerulus. Interestingly, pretreatment of rats with rHDL did not prevent the hypotension nor the rise in plasma levels of TNF-alpha (at 90 min) caused by endotoxin. Thus, rHDL reduces the organ injury/dysfunction, but does not affect the circulatory failure, nor the rise in plasma levels of TNF-alpha caused by endotoxin in the rat. We propose that the mechanisms of these beneficial effects of HDL may be related to direct inhibition of adhesion molecule expression.

Alanine Transaminase↗

Hypertonic saline solution increases the expression of heat shock protein 70 and improves lung inflammation early after reperfusion in a rodent model of controlled hemorrhage.

Hypertonic saline solution (HS solution, NaCl 7.5%) has shown to restore hemodynamic parameters in hemorrhagic shock and to decrease the inflammation triggered by ischemia-reperfusion injury (I-R). Therefore, our objective was to investigate the effects of HS solution on the mechanisms involved in I-R, in an experimental model of controlled hemorrhagic shock. Wistar rats (280-350 g) were submitted to controlled bleeding, keeping the mean arterial pressure around 40 mmHg, for 1 h. After that, rats were randomized and treated with HS solution (4 mL/kg) or normal saline (34 mL/kg). There were no differences in hemodynamic parameters between both groups for at least 2 h after shock. No difference either was observed in reactive oxygen species generation (measured indirectly by malondialdehyde concentration) or cytokines (interleukins 6 and 10) production (measured by enzyme-linked immunosorbent assay). Quantitative analysis of lung tissue showed a smaller neutrophil infiltration in animals that received HS solution. Moreover, the animals in the HS group showed an increased expression of heat shock protein 70. Therefore, we concluded that treatment of hemorrhagic shock with HS solution can decrease pulmonary inflammation and increase cellular protection by up-regulating heat shock protein 70 expression.

Animals↗

Oxidative DNA lesions in a rodent model of traumatic brain injury.

BACKGROUND: Oxidative DNA lesions have not been well studied in traumatic brain injury (TBI). METHODS: TBI was induced with a controlled cortical impact injury in rats. Brain tissue was examined for 8-hydroxy-2'-deoxyguanosine (oh8dG) using mono-clonal antibodies at different time frames; 15 minutes (n = 4), 30 minutes (n = 7), 60 minutes (n = 6), and 240 minutes (n = 5). The control group consisted of sham-operated animals undergoing the same surgery without the controlled cortical impact injury (n = 5). RESULTS: An elevation of oh8dG was detected in the nuclear and perinuclear (mitochondrial) regions of the ipsilateral cortex, but seldom in those of the contralateral cortex. The amount of oh8dG in those animals with TBI was significant in all time frames when compared with sham-operated controls (p < 0.001). The oh8dG levels were more prominent at 15 minutes (p < 0.0001) when compared with controls. CONCLUSION: Oxidative DNA lesions occurred in this model of TBI maximally early after TBI. This suggests that oh8dGs may affect genetic material of the brain and that oh8dGs may adversely affect gene expression that occurs early after head injury.

8-Hydroxy-2'-Deoxyguanosine↗

Reappraisal of histologic features of the acute cutaneous graft-versus-host reaction based on an allogeneic rodent model.

We employed a rat model of complete major histocompatibility complex-mismatched allogeneic bone marrow transplantation to better characterize the histologic expression of the acute cutaneous graft-versus-host reaction (GVHR), compared with changes due to the preparative regimen. Cyclosporin A abolished the development of this GVHR. Low levels of dyskeratotic cells were present in all groups (allogeneic and syngeneic transplants with and without cyclosporin A) and, alone, were insufficient to diagnose a cutaneous GVHR. A consistent histologic feature of the GVHR was significant lymphoid infiltration of the dermis. The pattern of cytotoxic folliculitis involved follicular epithelium above the entry of sebaceous glands. Immunostain for major histocompatibility complex class II, IA, and IE antigens revealed that dendritic cells within the follicle were limited to this upper region and that lower follicular epithelium did not upregulate expression with evolution of the GVHR. Based on this model, we conclude 1) that the diagnostic scheme for the acute cutaneous GVHR should include lymphoid infiltration of the dermis, 2) that the preparative regimen (including total body irradiation) induces persistent low levels of dyskeratotic cells (two to three cells/linear mm of epidermis), and 3) that the pattern of follicular involvement may relate to the distribution of dendritic cells and to an inability of lower follicular epithelium to upregulate major histocompatibility complex class II antigens.

Animals↗

A rodent model of organophosphorus-induced delayed neuropathy: distribution of central (spinal cord) and peripheral nerve damage.

Central and peripheral nerve fibre damage has been produced in Long-Evans hooded male rats with tri-ortho-cresyl phosphate. Animals were dosed by gavage with intermittent or daily amounts of the organophosphate and examined after 2, 6, 12, 18 and 24 weeks. The distribution of central nervous system (spinal cord) damage and the differential vulnerability among various peripheral nerves supported a "dying-back' classification for the neuropathy. Giant axonal swellings, containing massive accumulations of smooth endoplasmic reticulum, hallmarked the neuropathy. In spite of severe neurological damage the animals displayed only moderate functional disturbances. These findings have shown that the rat is highly sensitive to the structural damage caused by organo-phosphates, although resistant to the ataxia.

Animals↗

Temporal pattern of plasma membrane calcium ATPase 2 expression in the spinal cord correlates with the course of clinical symptoms in two rodent models of autoimmune encephalomyelitis.

Axonal/neuronal pathology is an important and early feature of multiple sclerosis and its animal model, experimental autoimmune encephalomyelitis (EAE). However, the underlying molecular mechanisms remain elusive. We have previously reported that the levels of an important neuronal calcium pump, plasma membrane calcium ATPase 2 and synaptic proteins, synapsin IIa and syntaxin 1B are decreased in the rat spinal cord at onset of acute EAE. Whether the expression of these genes is restored during neurological recovery and affected in other EAE models is currently unknown. The present study was undertaken to address these issues by use of validated multiplex quantitative real-time RT-PCR with fluoro-primers, western blot and immunocytochemistry. We report that plasma membrane calcium ATPase 2 (PMCA2) transcript and protein levels return to control values during recovery from acute disease in the Lewis rat, whereas they are reduced throughout the course of chronic, non-remitting EAE in the C57Bl/6 mouse. These results indicate a close correlation between PMCA2 levels and disease course as defined by clinical scores reflecting motor deficits. Decrease in synapsin IIa expression also correlated with the onset and progression of neurological symptoms, whereas the pattern of syntaxin 1B mRNA and protein expression suggested post-transcriptional regulation. The decrease in PMCA2 transcript and protein levels and the correlation between expression and disease course in two different EAE models further highlight the importance of this calcium pump in neuronal dysfunction during inflammation.

Animals↗

Neuroprotective effects of metabotropic glutamate receptor ligands in a 6-hydroxydopamine rodent model of Parkinson's disease.

Increasing evidence implicates glutamate-mediated excitotoxicity as a contributory factor in dopaminergic cell death in the substantia nigra pars compacta (SNc) in Parkinson's disease (PD). Previous studies have suggested that metabotropic glutamate receptor (mGluR) ligands are neuroprotective against excitotoxicity in vitro. In the present study, the neurotoxin 6-hydroxydopamine (6-OHDA) produced a significant loss (61.2 +/- 8.9%; P < 0.01) of tyrosine hydroxylase-immunopositive (TH+) cells in both the SNc and striatal dopamine (58.02 +/- 1.27%; P < 0.05) in control male Sprague-Dawley rats. Both losses were significantly attenuated by sub-chronic (7 day) treatment with the Group I mGluR antagonists, 2-methyl-6(phenylethynyl)-pyridine (MPEP) or (S)-(+)-alpha-amino-4-carboxy-2-methylbenzeneacetic acid (LY367385); the Group II mGluR agonist (2R,4R)-4-aminopyrrolidine-2,4-dicarboxylate (2R,4R-APDC); or the Group III mGluR agonist, L(+)-2-amino-4-phosphonobutyric acid (L-AP4). These data demonstrate a neuroprotective action of mGluR ligands in vivo against 6-OHDA toxicity that has important implications for the treatment of PD.

Animals↗

Expression of a truncated tau protein induces oxidative stress in a rodent model of tauopathy.

Truncation of tau protein and oxidative stress have been implicated as important pathogenetic events in tauopathies including Alzheimer's disease (AD). We have generated a transgenic rat model that expresses a human truncated tau protein analogous to a variant form derived from sporadic AD. We employed this model to investigate the relationship between tau protein truncation and oxidative stress. We have found that rat cortical neurons (derived from transgenic animals) that had been cultured in vitro for 16 days showed an increased accumulation of reactive oxygen species (up to 1.4-fold increase; P < 0.01) when compared to neurons derived from nontransgenic control animals. Transgene-expressing neurons treated with inducers of oxidative stress, such as glucose oxidase (GO) and buthionine sulfoximine (BSO), displayed dramatically reduced survival (31.4 +/- 3.3 and 24.9 +/- 3.6%, respectively; both P < 0.001) compared to neurons from control animals (79.9 +/- 7.1%, survival following treatment with GO and to 98.2 +/- 3.8%, survival following treatment with BSO). The number of mitochondria in processes of neurons from transgenic animals was decreased by about one-third from that present in neurons from control animals. The results reveal that expression of a human truncated variant form of tau protein leads to the accumulation of reactive oxygen species and sensitizes rat cortical neurons to cell death induced by oxidative stress. This indicates that truncation of tau may precede oxidative stress in the pathogenesis of neurodegenerative diseases such as AD and other tauopathies. These findings may have implications for therapeutic strategies aiming at prevention of neurofibrillary degeneration and cognitive decline, and identify potential new targets for drug development.

Alzheimer Disease↗

Oral treatment with a vitamin D3 analogue (BXL628) has anti-inflammatory effects in rodent model of interstitial cystitis.

OBJECTIVE: To investigate the effects of a vitamin D3 analogue (BXL628) in a model of chronic cystitis, as calcitriol analogues might be an interesting new therapeutic option for interstitial cystitis, for although the cause of the disease remains unclear, the increase in mast cells in the mucosa and detrusor muscle are significant. MATERIALS AND METHODS: We devised a mouse model of allergen-induced allergic cystitis that is associated with the up-regulation of genes for interleukin-13, FcepsilonRIalpha and mast cells-derived proteases, a massive inflammatory reaction in the bladder tissue, and augmented levels of mast cell-derived protease 1 (MMCP1) detected in mouse sera. RESULTS: Oral administration of BXL628 significantly reduced the expression of interleukin-13, FcepsilonRIalpha and MMCP1 in the bladder. Furthermore, histological analysis showed a decrease in oedema and leukocyte infiltration in the bladder wall. BXL628 treatment reduced serum MMCP1 levels, indicating an effect on mast cell degranulation in vivo. CONCLUSIONS: Vitamin D3 analogues may successfully be used as anti-inflammatory agents in allergen-mediated inflammatory reactions. Moreover, the modulatory effect shown on mast cell activation by the BXL628 analogue strongly supports its potential therapeutic use in a possibly mast cell-dependent disease such as human interstitial cystitis.

Animals↗

Effects of alpha 1-acid glycoprotein in different rodent models of shock.

It was the aim of the present study to investigate the effects of the acute phase protein alpha 1-acid glycoprotein in different models of shock. The human plasma preparation used was without effect on mortality in lipopolysaccharide-injected mice when administered in two different doses (1 or 0.33 g/kg i.v.) and according to different treatment schedules. The same preparation significantly increased survival rate (48 h) in rats with septic peritonitis. This effect was seen when alpha 1-acid glycoprotein (200 mg/kg i.v.) was given 15 min prior to and 24 h after cecal puncture. All other dose regimes tested were without significant effect on survival rate. A hemorrhagic/hypovolemic shock model (including a defined trauma) in rats resuscitated with 200 mg/kg alpha 1-acid glycoprotein resulted in significantly higher values of mean arterial blood pressure, cardiac output and stroke volume when compared to corresponding values obtained after resuscitation with Ringer's solution or 200 mg/kg albumin i.v. (free of alpha 1-acid glycoprotein; placebo formulation). Taking all other possible mechanisms of alpha 1-acid glycoprotein into consideration, the partially protective effects of the preparation are explained by enhancing the capillary barrier function and thereby maintaining perfusion of vital organs.

Animals↗

Aminoguanidine attenuates the delayed circulatory failure and improves survival in rodent models of endotoxic shock.

1. We have investigated the effects of aminoguanidine, a relatively selective inhibitor of the cytokine-inducible isoform of nitric oxide synthase (iNOS), on the delayed circulatory failure, vascular hyporeactivity to vasoconstrictor agents, and iNOS activity in a rat model of circulatory shock induced by bacterial endotoxin (E. coli lipopolysaccharide; LPS). In addition, we have evaluated the effect of aminoguanidine on the 24 h survival rate in a murine model of endotoxaemia. 2. Male Wistar rats were anaesthetized and instrumented for the measurement of mean arterial blood pressure (MAP) and heart rate (HR). Injection of LPS (10 mg kg-1, i.v.) resulted in a fall in MAP from 115 +/- 4 mmHg (time 0, control) to 79 +/- 9 mmHg at 180 min (P < 0.05, n = 10). The pressor effect of noradrenaline (NA, 1 microgram kg-1, i.v.) was also significantly reduced at 60, 120 and 180 min after LPS injection. In contrast, animals pretreated with aminoguanidine (15 mg kg-1, i.v., 20 min prior to LPS injection) maintained a significantly higher MAP (at 180 min, 102 +/- 3 mmHg, n = 10, P < 0.05) when compared to rats given only LPS (LPS-rats). Cumulative administration of aminoguanidine (15 mg kg-1 and 45 mg kg-1) given 180 min after LPS caused a dose-related increase in MAP and reversed the hypotension. Aminoguanidine also significantly alleviated the reduction of the pressor response to NA: indeed, at 180 min, the pressor response returned to normal in aminoguanidine pretreated LPS-rats. 3. Thoracic aortae obtained from rats at 180 min after LPS showed a significant reduction in the contractile responses elicited by NA (10-9- 10-6 M). Pretreatment with aminoguanidine (15 mg kg- 1, i.v.,at 20 min prior to LPS) significantly prevented this LPS-induced hyporeactivity to NA ex vivo.4. Endotoxaemia for 180 min resulted in a significant increase in iNOS activity in the lung from 0.6 +/- 0.2 pmol mg-1 min-1 (control, n = 4) to 4.8 +/- 0.3 pmol mg-1 min-1 (P<0.05, n = 6). In LPS-rats treated with aminoguanidine, iNOS activity in the lung was attenuated by 44+/- 5% (n = 6, P <0.05).Moreover, when added in vitro to lung homogenates obtained from LPS-rats, aminoguanidine and N omega-nitro-L-arginine methyl ester (L-NAME; 10-8 to 10-3 M) caused a concentration-dependent inhibition of iNOS activity (n = 3-6, IC50: 30 +/- 12 and 11 +/- 6pEM, respectively P>0.05). In contrast,aminoguanidine was a less potent inhibitor than L-NAME of the constitutive nitric oxide synthase in rat brain homogenates (n = 3-6, IC50 is 140 +/- 10 and 0.6 +/- 0.1 I1M, respectively, P<0.05). In addition, the inhibitory effect of aminoguanidine on iNOS activity showed a slower onset than that of L-NAME(maximal inhibition at 90 min and 30 min, respectively).5. Treatment of conscious Swiss albino (T/O) mice with a high dose of endotoxin (60 mg kg-1, i.p.)resulted in a survival rate of only 8% at 24 h (n = 12). However, therapeutic application of aminoguanidine (15 mg kg-1, i.p. at 2 h and 6 h after LPS) increased the 24 h survival rate to 75%(n = 8), whereas L-NAME (3 mg kg-1, i.p. at 2 h and 6 h after LPS) did not affect the survival rate(11%, n=9).6 Thus, aminoguanidine inhibits iNOS activity and attenuates the delayed circulatory failure caused by endotoxic shock in the rat and improves survival in a murine model of endotoxaemia. Aminoguanidine,or novel, more potent selective inhibitors of iNOS may be useful in the therapy of septic shock.

Amino Acid Oxidoreductases↗