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Biomedical subjects

I Muramatsu

Publications and source records attributed to I Muramatsu.

At least 19 recordsLinked to original sources

Endothelin-1-endothelin receptor type A mediates closure of rat ductus arteriosus at birth.

1. The ductus arteriosus (DA) undergoes rapid closure after birth as pulmonary circulation is established. The involvement of endothelin-1 (ET1) in this closure mechanism is controversial. 2. The effect of ATZ1993 (ATZ), a non-peptide antagonist for the ET(A) and ET(B) receptors, on postnatal closure and O2-induced contraction of the rat DA was investigated both in vivo and in vitro. Rat pups were delivered by Caesarean section and were given ATZ intraperitoneally. The minimum external DA diameter and the extent of DA constriction in vivo were evaluated at 2.5 h after birth. ATZ caused a dose-dependent inhibition of DA closure in vivo. When rat pups were given ATZ at 2.5 h after birth, re-opening of the DA was observed. 3. In vitro, ATZ also caused a marked inhibition of O2-induced and ET1-induced DA contractions as did BQ123, an ET(A)-specific antagonist. In contrast, sarafotoxin S6c, an ET(B)-specific agonist, did not cause DA contraction and BQ788, an ET(B)-specific antagonist, did not affect O2-induced DA contraction. 4. In conclusion, ET1 and its cognate receptor ET(A) may play a physiological role in the postnatal closure of the rat DA in vivo.

Animals↗

Rapid acid extrusion response triggered by alpha(1) adrenoceptor in CHO cells.

1. Using a microphysiometer with synchronized valve switching, we investigated real-time acid extrusion from Chinese hamster ovary (CHO) cells in which human alpha(1) adrenoceptor (AR) is stably expressed, in response to noradrenaline (NA). 2. In the cells expressing alpha(1a) AR, the time course of extracellular acidification after stimulation had two phases; in the first phase it transiently reached a rate several times greater than the base rate with a peak at around 10 s, and in the second it increased to 2 times the base rate and reached a plateau in 2 min. Both phases showed a concentration-dependent increase of acidification rate in response to NA, but had distinct pEC(50) values; 5.6 for the transient phase and 7.2 for the steady phase. 3. In the cells expressing alpha(1b) AR, the transient phase was not detected but the steady phase was observed. The pEC(50) value was 7.1, although the magnitude of the response was much smaller than that with alpha(1a) AR. 4. Both 5-(N-ethyl-N-isopropyl)amiloride (EIPA) and HOE642 inhibited the acid extrusion response by either AR in a concentration-dependent manner. EIPA and HOE642 had high pIC(50) values (7.4 and 7.3, respectively) for inhibition of the transient phase response via alpha(1a) AR. In the inhibition of the steady phase response via alpha(1a) AR, both drugs revealed the presence of two components in the response; one had high pIC(50) values (8.1 and 8.2 for EIPA and HOE642, respectively) and the other had low pIC(50) values (5.6 and 6.0, respectively). In contrast, the steady phase response via alpha(1b) AR was inhibited by EIPA and HOE642 with low pIC(50) values (5.3 and 5.9, respectively). 5. As Ca2+ was depleted, the alpha(1a) AR-induced transient phase disappeared, while the steady phase was not affected. 6. These results suggest that alpha(1a) AR drives two acid extrusion systems in CHO cells upon stimulation; one elicits the transient response, which is largely mediated by an EIPA/HOE642-sensitive and Ca(2+)-dependent Na(+)-H(+) exchanger (NHE), presumably NHE1, and the other induces the steady acid extrusion that is mediated by NHE1 and another NHE which has low sensitivity to both EIPA and HOE642. alpha(1b) AR drives only the steady phase acid extrusion response, which is mainly mediated by NHEs other than NHE1.

Acids↗

No evidence for AT2R gene derangement in human urinary tract anomalies.

BACKGROUND: It has been recently found that mice, especially males, with a disrupted angiotensin type 2 receptor (AT2R) gene, which is located on the X-chromosome, often have a range of congenital anomalies of the kidney and urinary tract (CAKUT), including renal hypoplasia, and that Caucasian male patients with ureteropelvic junction stenosis (UPJ) and multicystic dysplastic kidneys frequently have A-G transition in intron 1 of the AT2R gene. We have previously found that renal hypoplasia is remarkably predominant in Japanese boys. METHODS: We investigated sex ratios for the frequency of each CAKUT. The frequency of the A-G transition between the controls and 66 Japanese boys with CAKUT were compared. There was renal hypoplasia in 16, UPJ in 17, vesicoureteral in 20, and other anomalies in 13. We also investigated whether any mutations in AT2R genes were detectable in patients with renal hypoplasia. RESULTS: In contrast to mice with a disruption of the AT2R gene, the male-to-female ratios in human patients proved to be considerably variable: 16 for renal hypoplasia, 2.1 for UPJ, 0.8 for vesicoureteral, and 1.2 for others. The frequency of the A-G transition was not different between the control population and the patients with CAKUT [31 of 102 (30%) vs. 23 of 66 (35%), respectively]. A sequencing study disclosed no mutations in nine boys with renal hypoplasia. CONCLUSIONS: These findings indicate that the AT2R gene may not play a major role in the development of renal hypoplasia and other CAKUT in humans, at least in the Japanese population.

Alleles↗

Affinity of serotonin receptor antagonists and agonists to recombinant and native alpha1-adrenoceptor subtypes.

Binding affinities of serotonin (5-HT)-receptor antagonists and agonists at human recombinant alpha1-adrenoceptor subtypes (alpha1a-, alpha1b- and alpha1d-subtypes) were examined and compared with the functional affinities obtained in rat caudal artery (alpha1A-subtype), dog carotid artery (alpha1B-subtype) and rat thoracic aorta (alpha1D-subtype). Most of the 5-HT-receptor antagonists and agonists tested showed relatively high affinity to three alpha1-adrenoceptor subtypes. The highest affinity close to 1 nM was seen for NAN-190 (5-HT1A antagonist) in binding and functional studies. 5-Methylurapidil (5-HT1A agonist) and BMY7378 (5-HT1A agonist) showed, respectively, alpha1a(alpha1A)- or alpha1d(alpha1D)-subtype selectivity in both binding and functional affinities, but spiperone (5-HT2A antagonist) showed alpha1b-selectivity only in binding affinity. Functional affinity of ritanserin (5-HT2A antagonist) to the alpha1B-subtype was approximately 500-fold lower than that of affinity to the alpha1b-subtype. The present results show that many 5-HT-receptor antagonists and agonists have high affinity to alpha1-adrenoceptors, but suggest that there is deviation between their functional affinities and binding affinities for some drugs.

Animals↗

Pharmacological characterization of [3H]-JTH-601, a novel alpha1-adrenoceptor antagonist: binding to recombinant human alpha1-adrenoceptors and human prostates.

Several alpha1-adrenoceptor (AR) selective antagonists are now widely used to improve lower urinary tract symptoms in benign prostatic hyperplasia patients. However, these drugs often result in orthostatic hypotension, because of their poor uroselectivity; the blockade of alpha1-AR not only in prostate but also in vasculature. Here we have investigated uroselectivity of JTH-601, a newly developed antagonist, in radioligand binding experiment using recombinant human alpha1-AR subtypes and human prostate. In saturation experiments, [3H]-JTH-601 showed subtype selectivity: high affinity to alpha1a-AR (pKd; 9.88+/-0.09), lower affinity to alpha1b-AR (pKd; 8.96+/-0.17) and no specific binding at concentrations up to 3000 pM to alpha1d-AR. In competition experiments, JTH-601 and its metabolic compound (JTH-601-G1) also showed alpha1a-AR selectivity, exhibiting approximately 5 times higher affinity for alpha1a-AR than for alpha1b-AR, 10 to 20 times higher affinity than for alpha1d-AR, respectively. [3H]-JTH-601 also bound to human prostate membranes in monophasic manner with high affinity constant (pKd; 9.89+/-0.12, Bmax=123.6+/-16 fmol/mg protein). JTH-601 is a unique alpha1-AR antagonist that shows high affinity and selectivity for human recombinant alpha1a- and human prostate. This new compound is useful for understanding alpha1-AR pharmacology and may have a therapeutic value.

Adrenergic alpha-Antagonists↗

Homeobox gene Hex is essential for onset of mouse embryonic liver development and differentiation of the monocyte lineage.

Disruption of the mouse Hex gene resulted in embryonic lethality around embryonic age (E) 10.5, due to no substantial liver formation. Expression of albumin was detectable in heterozygous (Hex(+/-)) but not in homozygous (Hex(-/-)) [corrected] embryos at E8.5. Instead of liver bud formation at E9.5, a liver-like capsule structure was observed in Hex(-/-) [corrected] embryos. In Hex(-/-) [corrected] mutant liver, we found no hepatocytes but no signs of apoptotic cell death in the area. Expression of transcription factors involved in hepatocyte differentiation, hepatocyte nuclear factor (Hnf)3beta, Hnf6, Hnf4alpha and Hnf1alpha, were restricted to the capsule and internal matrix-like structure in the mutant liver and expression of a subset of these factors were reduced. Hematopoiesis of monocytes was impaired in mutant embryos while erythroid lineage was unaffected. These results indicate that Hex plays an essential role in progenitor cells which commit to the hepatic endoderm and in the hematopoietic differentiation of the monocyte lineage.

Albumins↗

Cloning of rabbit alpha(1b)-adrenoceptor and pharmacological comparison of alpha(1a)-, alpha(1b)- and alpha(1d)-adrenoceptors in rabbit.

We have isolated a cDNA clone of the rabbit alpha(1b)-adrenoceptor which has an open reading frame of 1557 nucleotides encoding a protein of 518 amino acids. The sequence shows higher identity to those of hamster, human, and rat alpha(1b)-adrenoceptors than to those of rabbit alpha(1a)- and alpha(1d)-adrenoceptors. The pharmacological binding properties of this clone expressed in Cos-7 cells showed a characteristic profile as alpha(1b)-adrenoceptor; high affinity for prazosin (pK(i)=10.3), relatively high affinity for tamsulosin (9.5) and low affinity for (-)-(R)-1-(3-hydroxypropyl)-5-[2-[[2-[2-(2,2, 2-trifluoroethoxy)phenoxy]ethyl]amino]propyl]indoline-7-carboxamid e (KMD3213) (8.5), 2-(2,6-dimethoxy-phenoxyethyl)-aminomethyl-1, 4-benzodioxane hydrochloride (WB4101) (8.7), and 8-[2-[4-(2-methoxy-phenyl)-L-piperazinyl]-8-azaspiro[4,5]decane-7, 9-dione dihydrochloride (BMY7378) (7.3). We have compared the levels of mRNA expression of three alpha(1)-adrenoceptor subtypes in rabbit tissues using the competitive reverse transcription/polymerase chain reaction (RT/PCR) assay. In most rabbit tissues except heart, alpha(1a)-adrenoceptor mRNA was expressed 10 folds more than the other two subtypes. However, binding experiments with [3H]prazosin and [3H]KMD3213 in rabbit tissues revealed a poor relationship between binding density and mRNA level. Especially, alpha(1b) binding sites were exclusively predominant in spleen, whereas the alpha(1b) subtype was minor at the mRNA level. These results indicate a high identity of structural and pharmacological profiles of three distinct alpha(1)-adrenoceptor subtypes between rabbit and other species, but there are species differences in their distribution.

Adrenergic alpha-Antagonists↗

Splice isoforms of alpha(1a)-adrenoceptor in rabbit.

Two splice isoforms of rabbit alpha(1a)-adrenergic receptor (AR), (named alpha(1a)-OCU.2-AR and alpha(1a)-OCU.3-AR) have been isolated from the liver cDNA library in addition to the previously reported isoform (alpha(1a)-OCU.1-AR). Although they have the identical splice position with human alpha(1a)-AR isoforms, the C-terminal sequences are distinct from those of human isoforms. Among these rabbit alpha(1a)-AR isoforms, there are no significant differences in pharmacological properties: high affinity for prazosin, WB4101, KMD-3213 and YM617 and low affinity for BMY7378, using COS-7 cells expressing each isoform by radioligand binding assay. Competitive reverse transcription-polymerase chain reaction (RT - PCR) analysis revealed that mRNA of alpha(1a)-ARs was expressed in liver, thoracic aorta, brain stem and thalamus of rabbit. The splice isoforms exhibited a distinct distribution pattern in rabbit; alpha(1a)-OCU. 1-AR was expressed most abundantly in those tissues. CHO clones, stably expressing each isoforms with receptor density 740 fmol mg(-1) protein in alpha(1a)-OCU.1-AR, 1200 fmol mg(-1) in alpha(1a)-OCU.2-AR and 570 fmol mg(-1) in alpha(1a)-OCU.3-AR, respectively, showed a noradrenaline-induced increase in inositol trisphosphate which was suppressed by prazosin. Noradrenaline elicited a concentration-dependent increase in extracellular acidification rate (EAR) in the CHO clones with pEC(50) values of 6. 19 for alpha(1a)-OCU.1-AR, 6.49 for alpha(1a)-OCU.2-AR and 6.58 for alpha(1a)-OCU.3-AR, respectively. Noradrenaline caused a concentration-dependent increase in intracellular Ca(2+) concentration ([Ca(2+)]i) in the CHO clones with pEC(50) values of 6. 14 for alpha(1a)-OCU.1-AR, 7.25 for alpha(1a)-OCU.2-AR and 7.70 for alpha(1a)-OCU.3-AR, respectively. In conclusion, the present study shows the occurrence of three splice isoforms of rabbit alpha(1a)-AR, which are unique in C-terminal sequence and in tissue distribution. They show similar pharmacological profiles in binding studies but alpha(1a)-OCU.3-AR had the highest potency of noradrenaline in functional studies in spite of the lowest receptor density. These findings suggest that the structure of C-terminus of alpha(1a)-ARs may give the characteristic functional profile.

Alternative Splicing↗

Inverse agonism and neutral antagonism at a constitutively active alpha-1a adrenoceptor.

We have studied the antagonist action of prazosin and KMD-3213 in a constitutively active mutant of the human alpha-1a adrenoceptor in which Ala(271) was substituted to Thr and was expressed in CHO cells. Inverse agonism was characterized by up-regulation of receptor density, a decrease in basal GTPgammaS binding, and a reduction in basal inositol-1,4,5-trisphosphate (IP(3)) level. According to the above criteria, prazosin acted as an inverse agonist, whilst KMD-3213 behaved as a neutral antagonist. Compared with the wild-type receptor, mutant receptor exhibited single affinity sites for [(3)H]-prazosin, [(3)H]-KMD and the non-radioactive ligands tested, and displayed significantly higher affinities for several agonists but not for the two antagonists. Administration of KMD-3213 to prazosin-treated CHO cells expressing the mutant receptor reversed the inverse agonism of prazosin resulting in rapid increases in cellular IP(3), in intracellular [Ca(2+)] and in the rate of extracellular acidification. These results indicated that a neutral antagonist can reverse the action of an inverse agonist at the receptor site. The distinct properties of inverse agonist and neutral antagonist in affecting receptor function may be important for the clinical use of such antagonists.

Adrenergic alpha-1 Receptor Antagonists↗

Adsorption of lidocaine into a plastic infusion balloon.

An infusion balloon is a well established device used to continuously supply drugs for pain management. In this study, we determined the concentration of lidocaine that flowed out of a balloon because the balloon is made from plastics that adsorb local anesthetics.

Adsorption↗

Characterization of the endothelin receptor subtypes in human prostate.

Endothelin (ET) receptor subtypes in human prostate with benign prostatic hyperplasia were investigated by binding and functional studies. In the displacement experiment, LU224332 [endothelin-A/-B (ET(A)/ET(B)) nonselective antagonist] competed for [125I]ET-1 binding with a monophasic curve. On the other hand, LU135252 (ET(A)-selective antagonist) and sarafotoxin S6c (S6c, ET(B)-selective agonist) competed for [125I]ET-1 binding with shallow and biphasic curves. The analysis of the displacement curves for LU135252 and S6c showed that both ET(A) and ET(B) subtypes coexist but that ET(A) is the dominantly expressed receptor. In human prostate strips, 10 microM of both LU135252 and LU224332 strongly inhibited the contractile response to ET-1 with equal potency. However, 10 microM of BQ788 (ET(B)-selective antagonist) did not show a clear inhibition. S6c also produced a contractile response, which was potently inhibited by LU224332 or BQ788, and slightly suppressed by LU135252. These results suggest that in human prostate both ET(A) and ET(B) subtypes are functional receptors mediating contraction, but that ET-1-mediated contractions are predominantly mediated by activation of dominant receptor subtype, ET(A).

Aged↗

Pharmacological analysis of neurogenic, sympathetic responses mediated through alpha-1-, alpha-2-adrenergic and purinergic receptors in the dog saphenous vein.

Electrical transmural stimulation evoked a sympathetic contraction in the isolated dog saphenous vein. This contraction consisted of three components (alpha(1)-adrenergic, alpha(2)-adrenergic and purinergic), which were separately observed under combined treatments either with yohimbine (blockade of alpha(2)-adrenoceptor) and alpha,beta-methylene ATP (desensitization of P(2X)-purinoceptors), with prazosin (blockade of alpha(1)-adrenoceptor) and alpha,beta-methylene ATP, or with prazosin and yohimbine, respectively. The alpha(1)-adrenergic and purinergic contractions immediately developed after the start of stimulation and reached a peak rapidly. In contrast, the alpha(2)-adrenergic contraction developed slowly, thus the time to peak contraction was longer than the other two components. The relationship between the peak amplitudes of contraction and stimulus frequencies were similar between alpha(1)- and alpha(2)-adrenergic components, but the purinergic contraction was smaller than the other components at all frequencies (0.1-30 Hz). Cocaine, a neuronal uptake inhibitor of noradrenaline, significantly potentiated alpha(1)- and alpha(2)-adrenergic components and prolonged their duration with a relatively greater effect on the alpha(2)-adrenergic component. In contrast, the purinergic component was not affected by cocaine. Exogenous noradrenaline produced concentration-dependent contraction, which was inhibited more effectively after combined treatment with combination of prazosin and yohimbine than either blocker given alone. Cocaine potentiated the attenuated contractile response to noradrenaline in the presence of prazosin, resulting in the recovery of response to the control level. Exogenous ATP produced a transient contraction, which was abolished under conditions where postjunctional P(2X)-purinoceptors were desensitized with alpha,beta-methylene ATP. Cocaine did not affect the ATP-induced contraction. These results suggest that sympathetic contraction of the dog saphenous vein is caused through three distinct routes (alpha(1)- and alpha(2)-adrenoceptors and P(2X)-purinoceptors).

Adenosine Triphosphate↗

Effects of perinatal nicotine exposure on development of [3H]hemicholinium-3 binding sites in rat neonate brain.

In this study, [3H]hemicholinium-3 ([3H]HC-3) binding, which labels the presynaptic high affinity-choline transport sites, was examined in two brain regions, cerebral cortex and midbrain, of nicotine-treated and -untreated rat neonates. In nicotine-untreated neonates, [3H]HC-3 binding sites of cerebral cortex increased from 64 fmol/mg protein at postnatal day 7 to 142 fmol/mg protein at postnatal day 35. In nicotine-treated neonates, the development of [3H]HC-3 binding sites in cerebral cortex was significantly retarded, compared with control neonates on the 7th, 14th and 21st postnatal days. In parallel with this, the development of muscarinic receptor in cerebral cortex, which was detected by [3H]quinuclidinyl benzylate ([3H]QNB) binding, was also retarded by nicotine treatment. However, in midbrain, neither [3H]HC-3 nor [3H]QNB binding sites at postnatal day 14 was affected by nicotine treatment. These results strongly suggest that perinatal treatment with nicotine inhibits presynaptic and postsynaptic development of the cholinergic pathway in cerebral cortex but not in midbrain of rat neonate.

Animals↗

Tissue selectivity of KMD-3213, an alpha(1)-adrenoreceptor antagonist, in human prostate and vasculature.

PURPOSE: We evaluated the binding and functional affinity of KMD-3213 and other alpha 1-adrenoceptor (AR) antagonists such as prazosin or tamsulosin, to compare the tissue selectivity of these antagonists between human prostate and vasculature. MATERIALS AND METHODS: In the binding experiments, saturation experiments using [3H]-KMD and [3H]-prazosin (PZ) were performed, and competition of [3H]-PZ binding by antagonists was also examined in human prostatic and aortic membranes. In the functional study, contractile responses to noradrenaline were evaluated in human prostate and mesenteric artery. RESULTS: [3H]-PZ bound to human prostatic and aortic membranes with subnanomolar affinity. [3H]-KMD also bound to human prostate, with higher affinity than [3H]-PZ; whereas it did not bind sufficiently to human aorta. Competition of [3H]-PZ binding revealed that KMD-3213 had more than 200-fold higher affinity for human prostate than for aorta. Binding profiles of antagonists revealed that human prostate predominantly expressed alpha 1A-AR, whereas human aorta expressed alpha 1B-AR mainly. In functional experiments, KMD-3213 potently inhibited the noradrenaline-induced contraction in human prostate as potently as tamsulosin, although prazosin showed relatively low affinity. Comparing these functional affinities with those in the mesenteric artery, only KMD-3213 exhibited substantial tissue selectivity, showing more than 100-fold higher affinity for human prostate than for mesenteric artery. Functional affinity of each antagonist suggested that noradrenaline-induced contractions were mainly mediated by alpha 1L-AR in the human prostate and by alpha 1B-AR in the mesenteric artery. CONCLUSION: These results suggest that KMD-3213 is a substantially prostate-selective alpha 1-AR antagonist in human tissues compared with other alpha 1-AR antagonists.

Adrenergic alpha-Antagonists↗

Effect of JTH-601, a novel alpha1-adrenoceptor antagonist, on the function of lower urinary tract and blood pressure.

In the present study, we investigated the effect of JTH-601 (3-{N-[2-(4-hydroxy-2-isopropyl-5-methylphenoxy)ethyl]-N-methylaminomethyl}-4-methoxy-2,5,6-trimethylphenol hemifumarate), a novel alpha1-adrenoceptor antagonist, in vitro and in vivo. JTH-601 (10(-9)-3 x 10(-8) M) competitively antagonized phenylephrine-induced contraction in lower urinary tract tissues (prostate, urethra and bladder trigon) in a concentration-dependent manner. The mean pA2 values for JTH-601 were 8.59+/-0.14, 8.74+/-0.09 and 8.77+/-0.11 for prostate, urethra and bladder trigon, respectively. In anesthetized rabbits, intraduodenal administration of JTH-601 (0.3-3 mg/kg), prazosin (0.03-0.3 mg/kg) and tamsulosin (0.03-0.3 mg/kg) dose dependently inhibited the phenylephrine-induced increase in urethral pressure for 3 h. Although these drugs also decreased mean blood pressure, JTH-601 was less potent than prazosin or tamsulosin. In conscious rabbits, administered JTH-601 (0.01-1 mg/kg, i.v.) had a tendency to augment orthostatic hypotension, but dose dependency was not evident. Prazosin (0.01-1 mg/kg) and tamsulosin (0.001-1 mg/kg) dose dependently augmented orthostatic hypotension. These results indicate that JTH-601 antagonized alpha1-adrenoceptor-mediated contractile responses more potently than prazosin or tamsulosin in rabbit lower urinary tract both in vitro and in vivo. JTH-601 is therefore expected to be effective in the treatment of urinary outlet obstruction in benign prostatic hypertrophy.

Adrenergic alpha-Antagonists↗

Binding and functional characterization of alpha1-adrenoceptor subtypes in the rat prostate.

The alpha1-adrenoceptor subtypes of rat prostate were characterized in binding and functional experiments. In binding experiments, [3H]tamsulosin bound to a single class of binding sites with an affinity (pKD) of 10.79+/-0.04 and Bmax of 87+/-2 fmol mg(-1) protein. This binding was inhibited by prazosin, 2-(2,6-dimethoxy-phenoxyethyl)-aminomethyl-1,4-benzodioxane hydrochloride (WB4101), 5-methylurapidil, alpha-ethyl-3,4,5,-trimethoxy-alpha-(3-((2-(2-methoxyphenoxy)ethyl)-amin o)-propyl)benzeneacetonitrile fumarate (HV723) and oxymetazoline with high efficacy, resulting in a good correlation with the binding characteristics of cloned alpha1a but not alpha1b and alpha1d-adrenoceptor subtypes. In functional studies, noradrenaline and oxymetazoline produced concentration-dependent contractions. These contractions were antagonized by tamsulosin, prazosin, WB4101 and 5-methylurapidil with an efficacy lower than that exhibited by these agents for inhibition of [3H]tamsulosin binding. The relationship between receptor occupancy and contractile amplitude revealed the presence of receptor reserve for noradrenaline, but the contraction induced by oxymetazoline was not in parallel with receptor occupation and developed after predicted receptor saturation. From these results, it is suggested that alpha1A-adrenoceptors are the dominant subtype in the rat prostate which can be detected with [3H]tamsulosin, but that the functional subtype mediating adrenergic contractions has the characteristics of the alpha1L-adrenoceptor subtype, having a lower affinity for prazosin and some other drugs than the alpha1A-adrenoceptor subtype.

Acetonitriles↗

Possible involvement of nitroglycerin converting step in nitroglycerin tolerance.

Nitroglycerin (GTN) produces a dilation of vascular smooth muscle by releasing NO through a putative GTN-converting step. However, the response to GTN is markedly attenuated after prolonged or repeated exposure, resulting in tolerance. We investigated the mechanisms of GTN tolerance, employing exogenous and endogenous NO in rat aorta. In endothelium-denuded rat aortic strips, the GTN-induced relaxation response was attenuated by preceding exposure to either GTN or sodium nitroprusside (SNP). In contrast, the SNP-induced relaxation response was not affected by this protocol of GTN or SNP preexposure. Preincubation of aortic strips with lipopolysaccharide (LPS) +/- L-arginine for 12 h also caused attenuation of GTN-induced responses such as relaxation, cGMP production and nitrite/nitrate formation. The attenuating effect of LPS abolished in aortic strips co-incubated with LPS and cycloheximide or N(G)-nitro-L-arginine. These results suggest that GTN tolerance is predominantly associated with the reduction of NO release from GTN, which is caused through inhibition of a GTN-converting step due to preceding exposure to NO itself.

Animals↗