Fosinopril and zofenopril, two angiotensin-converting enzyme (ACE) inhibitors, potentiate the anticonvulsant activity of antiepileptic drugs against audiogenic seizures in DBA/2 mice.
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Giovambattista De Sarro | Emilio Russo | Vincenzo Rispoli | R. Citraro | E. Russo | G. Tripepi | L. Gallelli | A. Siniscalchi | Antonio Siniscalchi | Luca Gallelli | P. Gareri | Giovanni Tripepi | G. Sarro | S. Gratteri | Rita Citraro | Santo Gratteri | Pietro Gareri | Eugenio Donato Di Paola | E. D. Paola | V. Rispoli
[1] T. Degrauw,et al. Automated microanalysis of gabapentin in human serum by high-performance liquid chromatography with fluorometric detection. , 1999, Journal of chromatography. B, Biomedical sciences and applications.
[2] B. Meldrum. Identification and Preclinical Testing of Novel Antiepileptic Compounds , 1997, Epilepsia.
[3] A. Davoli,et al. Influence of levetiracetam on the anticonvulsant efficacy of conventional antiepileptic drugs against audiogenic seizures in DBA/2 mice , 2007, Epilepsy Research.
[4] B. Suresh,et al. Differential anxiolytic effect of enalapril and losartan in normotensive and renal hypertensive rats , 2003, Physiology & Behavior.
[5] Koji Yamada,et al. Effect of a centrally active angiotensin-converting enzyme inhibitor, perindopril, on cognitive performance in a mouse model of Alzheimer's disease , 2010, Brain Research.
[6] E. Ongini,et al. Excitatory amino acid neurotransmission through both NMDA and non-NMDA receptors is involved in the anticonvulsant activity of felbamate in DBA/2 mice. , 1994, European journal of pharmacology.
[7] T. Tomson,et al. The pharmacological treatment of epilepsy in adults , 2011, The Lancet Neurology.
[8] N W DUNHAM,et al. A note on a simple apparatus for detecting neurological deficit in rats and mice. , 1957, Journal of the American Pharmaceutical Association. American Pharmaceutical Association.
[9] C. I. Johnston,et al. Biochemistry and Pharmacology of the Renin-Angiotensin System , 2012, Drugs.
[10] R W Piepho,et al. Overview of the angiotensin-converting-enzyme inhibitors. , 2000, American journal of health-system pharmacy : AJHP : official journal of the American Society of Health-System Pharmacists.
[11] H. Yamashita,et al. Effects of 2-[N-(4-Chlorophenyl)-N-methylamino]-4H-pyrido[3.2-e]-1,3-thiazin-4-one (YM928), an Orally Active α-Amino-3-hydroxy-5-methyl-4-isoxazolepropionic Acid Receptor Antagonist, in Models of Generalized Epileptic Seizure in Mice and Rats , 2004, Journal of Pharmacology and Experimental Therapeutics.
[12] T. Tomson,et al. Progress report on new antiepileptic drugs: A summary of the Twelfth Eilat Conference (EILAT XII) , 2015, Epilepsy Research.
[13] N. Hirawa,et al. Long-term inhibition of renin-angiotensin system sustains memory function in aged Dahl rats. , 1999, Hypertension.
[14] J. Tchekalarova,et al. Ang II and Ang III modulate PTZ seizure threshold in non-stressed and stressed mice: Possible involvement of noradrenergic mechanism , 2006, Neuropeptides.
[15] J. Trzeciakowski,et al. Potentiation by glycine of anticonvulsant drugs in maximal electroshock seizures in rats , 1990, Neuropharmacology.
[16] G. Raszewski,et al. Captopril potentiates the anticonvulsant activity of carbamazepine and lamotrigine in the mouse maximal electroshock seizure model , 2010, Journal of Neural Transmission.
[17] G Bernardi,et al. An in vitro electrophysiological study on the effects of phenytoin, lamotrigine and gabapentin on striatal neurons , 1999, British journal of pharmacology.
[18] P. Gard. The role of angiotensin II in cognition and behaviour. , 2002, European journal of pharmacology.
[19] P. Schofield,et al. The glycine receptor. , 1997, Pharmacology & therapeutics.
[20] R. Levy,et al. Risk and predictability of drug interactions in the elderly. , 2007, International review of neurobiology.
[21] G. Grover,et al. Comparisons in vitro, ex vivo, and in vivo of the actions of seven structurally diverse inhibitors of angiotensin converting enzyme (ACE). , 1989, British journal of clinical pharmacology.
[22] S. Sangiah. Effects of glycine and other inhibitory amino acid neurotransmitters on strychnine convulsive threshold in mice. , 1985, Veterinary and human toxicology.
[23] C. Ferrario,et al. Angiotensin-(1-7) augments bradykinin-induced vasodilation by competing with ACE and releasing nitric oxide. , 1997, Hypertension.
[24] B. Meldrum,et al. Anticonvulsant actions of DS 103–282 Pharmacological studies in rodents and the baboon, Papio papio , 1984, Neuropharmacology.
[25] C. Napoli,et al. Sulfhydryl angiotensin-converting enzyme inhibition induces sustained reduction of systemic oxidative stress and improves the nitric oxide pathway in patients with essential hypertension. , 2004, American heart journal.
[26] S. Czuczwar,et al. Interactions between ACE inhibitors and classical antiepileptic drugs in the mouse maximal electroshock seizures , 2011, Pharmacology Biochemistry and Behavior.
[27] A. Lajtha,et al. Anticonvulsant effects of some inhibitory neurotransmitter amino acids , 1983, Neurochemical Research.
[28] J. Tchekalarova,et al. Effects of angiotensin III and angiotensin IV on pentylenetetrazol seizure susceptibility (threshold and kindling): interaction with adenosine A1 receptors , 2001, Brain Research Bulletin.
[29] J. Tchekalarova,et al. Angiotensin peptides modulatory system: how is it implicated in the control of seizure susceptibility? , 2005, Life sciences.
[30] A. Lajtha,et al. Glycine potentiates the action of some anticonvulsant drugs in some seizure models , 1984, Neurochemical Research.
[31] F. Wilcoxon,et al. A simplified method of evaluating dose-effect experiments. , 1948, The Journal of pharmacology and experimental therapeutics.
[32] B. Swanson,et al. Enalapril, a new nonsulfhydryl angiotensin converting enzyme inhibitor, does not potentiate morphine analgesia. , 1984, European journal of pharmacology.
[33] A. Katyal,et al. Involvement of angiotensin converting enzyme in cerebral hypoperfusion induced anterograde memory impairment and cholinergic dysfunction in rats , 2008, Neuroscience.
[34] J. Harding,et al. Angiotensin receptor subtype mediated physiologies and behaviors: New discoveries and clinical targets , 2008, Progress in Neurobiology.
[35] N. Garcia-Cairasco,et al. Inhibition of the renin-angiotensin system prevents seizures in a rat model of epilepsy. , 2010, Clinical science.
[36] B. Meldrum,et al. Anticonvulsant effects of 7‐nitroindazole in rodents with reflex epilepsy may result from L‐arginine accumulation or a reduction in nitric oxide or L‐citrulline formation , 1996, British journal of pharmacology.
[37] Abu T. M. Serajuddin,et al. Relative Lipophilicities and Structural-Pharmacological Considerations of Various Angiotensin-Converting Enzyme (ACE) Inhibitors , 1992, Pharmaceutical Research.
[38] J. Braszko,et al. Captopril and Enalapril Improve Cognition and Depressed Mood in Hypertensive Patients , 2003, Journal of basic and clinical physiology and pharmacology.
[39] A. Chapman,et al. Anticonvulsant drug action and regional neurotransmitter amino acid changes , 2005, Journal of Neural Transmission.
[40] J. Harding,et al. Important roles for angiotensin III and IV in the brain renin-angiotensin system , 1997, Brain Research Reviews.
[41] W. V. van Gilst,et al. Converting Enzyme Inhibitors and the Role of the Sulfhydryl Group in the Potentiation of Exo‐ and Endogenous Nitrovasodilators , 1991, Journal of cardiovascular pharmacology.
[42] G. S. Thind. Angiotensin converting enzyme inhibitors: Comparative structure, pharmacokinetics, and pharmacodynamics , 2005, Cardiovascular Drugs and Therapy.
[43] J. McMurray,et al. Free radical scavenging: a potentially beneficial action of thiol-containing angiotensin converting enzyme inhibitors. , 1990, Biochemical Society transactions.
[44] N. Belluardo,et al. Influence of carbenoxolone on the anticonvulsant efficacy of conventional antiepileptic drugs against audiogenic seizures in DBA/2 mice. , 2004, European journal of pharmacology.
[45] G. De Sarro,et al. Topiramate potentiates the antiseizure activity of some anticonvulsants in DBA/2 mice. , 2000, European journal of pharmacology.
[46] U. Aguglia,et al. Lamotrigine potentiates the antiseizure activity of some anticonvulsants in DBA/2 mice , 1996, Neuropharmacology.
[47] G. Sedvall,et al. Associations between the angiotensin-converting enzyme insertion/deletion polymorphism and monoamine metabolite concentrations in cerebrospinal fluid , 2010, Psychiatry Research.
[48] M. Brodie. Adverse antiepileptic drug effects: toward a clinically and neurobiologically relevant taxonomy , 2010 .
[49] C. Chevillard,et al. Effect of chronic treatment with trandolapril or enalapril on brain ACE activity in spontaneously hypertensive rats , 1995, Neuropharmacology.
[50] M. Richardson,et al. Captopril given intracerebroventricularly, subcutaneously or by gavage inhibits angiotensin-converting enzyme activity in the rat brain. , 1980, European journal of pharmacology.
[51] S. Shorvon. The treatment of chronic epilepsy: a review of recent studies of clinical efficacy and side effects. , 2007, Current opinion in neurology.
[52] B. Meldrum,et al. Evaluation of anticonvulsant drugs in DBA/2 mice with sound-induced seizures. , 1984, Arzneimittel-Forschung.
[53] A. Constanti,et al. Nifedipine affects the anticonvulsant activity of topiramate in various animal models of epilepsy , 2004, Neuropharmacology.
[54] Y. Michotte,et al. In vivo characterization of the angiotensin‐(1–7)‐induced dopamine and γ‐aminobutyric acid release in the striatum of the rat , 2005, The European journal of neuroscience.
[55] Y. Michotte,et al. Involvement of insulin-regulated aminopeptidase in the effects of the renin–angiotensin fragment angiotensin IV: a review , 2008, Heart Failure Reviews.
[56] W. Fischer,et al. Influence of some β-adrenoceptor antagonists on the anticonvulsant potency of antiepileptic drugs against audiogenic seizures in DBA/2 mice , 2002 .
[57] C. Kellogg. Audiogenic seizures: Relation to age and mechanisms of monoamine neurotransmission , 1976, Brain Research.
[58] F. J. Miñano,et al. EFFECT OF PEPTIDYL‐DIPEPTIDASE INHIBITORS IN EXPERIMENTAL CONVULSIONS IN MICE , 1987, Fundamental & clinical pharmacology.
[59] J. McMurray,et al. Unique cardioprotective potential of angiotensin converting enzyme inhibitors: a hypothesis still to be tested on humans. , 1991, Journal of hypertension.
[60] T. Waldron,et al. Preclinical Pharmacology of Zofenopril, an Inhibitor of Angiotensin I Converting Enzyme , 1989, Journal of cardiovascular pharmacology.
[61] T. Jenkins. Effect of angiotensin-related antihypertensives on brain neurotransmitter levels in rats , 2008, Neuroscience Letters.
[62] G. De Sarro,et al. 7-Nitroindazole potentiates the antiseizure activity of some anticonvulsants in DBA/2 mice. , 2000, European journal of pharmacology.
[63] J. Somberg,et al. Rapid Determination of Partition Coefficients Between n-Octanol/Water for Cardiovascular Therapies , 2002, American journal of therapeutics.
[64] J. Reid. From kinetics to dynamics: are there differences between ACE inhibitors? , 1997, European heart journal.
[65] G. De Sarro,et al. Gabapentin potentiates the antiseizure activity of certain anticonvulsants in DBA/2 mice. , 1998, European journal of pharmacology.
[66] K. Catt,et al. International union of pharmacology. XXIII. The angiotensin II receptors. , 2000, Pharmacological reviews.