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Y Kiuchi

Publications and source records attributed to Y Kiuchi.

At least 55 records · Page 3Linked to original sources

Role of nitric oxide and prostaglandin in the protective effect of pibutidine hydrochloride, a novel histamine H2-receptor antagonist, on the gastric mucosal lesions in rats.

1. The role of endogenous nitric oxide (NO) and prostaglandins (PGs) in the gastric mucosal protective action of pibutidine hydrochloride (IT-066), a novel histamine H2-receptor antagonist, was investigated in a 0.15 N hydrochloride (HCl) + 60% ethanol (EtOH)-induced gastric lesion model. 2. The 0.15 N HCl + 60% EtOH-induced lesion formation was reduced significantly by IT-066 (3 mg/kg, PO), NOR3 (spontaneous NO releaser; 0.03-0.1 mg/kg, SC) or PGE2 (0.01 mg/kg, PO) but was not reduced by famotidine (1-10 mg/kg, PO). 3. Pretreatment with NG-nitro-L-arginine methyl ester (L-NAME) (3 mg/kg, IV), an inhibitor of NO synthase, inhibited the protective action of IT-066 (3 mg/kg, PO), and the inhibitory effect of L-NAME was reversed by L-arginine (300 mg/kg, IV). The protective effect of PGE2 (0.01 mg/kg, PO) was not affected by the pretreatment with L-NAME (3 mg/kg, IV). 4. Infusion of carboxy-PTIO (1 mg/kg/min), a direct NO scavenger, inhibited the protective effect of IT-066 (3 mg/kg, SC) or NOR3 (0.1 mg/kg, SC). Pretreatment with indomethacin (5 mg/kg, SC) markedly reduced the protective effect of IT-066 (3 mg/kg, PO) or NOR3 (0.1 mg/kg, SC). 5. These results suggest that endogenous NO and PGs may be implicated in the gastric mucosal protection induced by IT-066 and that the endogenous PGs may contribute to the protective effect of NO.

Animals↗

Maturational change of KCl-induced Ca2+ increase in the rat brain synaptosomes.

To investigate maturational change in the susceptibility of voltage-dependent calcium (Ca2+) channels (VDCC) in the brain to excessive depolarization, which is likely to occur during hypoxia or ischemia, we studied depolarization-induced increases in Ca2+ concentration in cortical synaptosomes ([Ca2+]i) obtained from young (8, 15, 22, 36, and 43-day-old) and adult rats using fura 2-AM as a Ca2+ indicator. The effects of Ca2+ antagonists on the increase were also studied. The maximal increase in [Ca2+]i caused by 50 mM KCl-induced depolarization was significantly lower in 8-day-old rats (73.3 nM) compared with that in adult rats (133.6 nM). On the other hand, the time necessary for [Ca2+]i to decrease to 50% of its maximal level (tau) was significantly shorter in immature rats compared with that in adult rats and was particularly short in 8- and 15-day-old rats (0.28 and 0.40 min vs. 3.85 for adult rats). The maximal increase in [Ca2+]i in 22-day-old rats and tau in adult rats were markedly reduced by verapamil, omega-agatoxin IVA, and omega-conotoxin GVIA (antagonists of L-, P-, and N-type Ca2+ channels, respectively) to similar extents, while a mixture of the three antagonists markedly decreased both maximal increase and tau in 8- and 22-day-old and adult rats. These results indicate that depolarization-induced Ca2+ influx through VDCCs in immature rat brain is less pronounced than that in adult rats, and suggest that the susceptibility of all of L-, N-, and P-type Ca2+ channels is increased during maturation in the first few weeks after birth. This lower susceptibility to depolarization might be involved in the resistance to hypoxia in immature animals.

Aging↗

Dehydroepiandrosterone decreases serum tumor necrosis factor-alpha and restores insulin sensitivity: independent effect from secondary weight reduction in genetically obese Zucker fatty rats.

Dehydroepiandrosterone (DHEA) and its sulfate ester are the most abundant circulating adrenal steroids in humans. Administration of DHEA has been reported to have beneficial effects on obesity, hyperlipidemia, diabetes, and atherosclerosis in obese rodents, although its effects on insulin resistance have not been fully elucidated. In this study, the effects of DHEA treatment on insulin sensitivity were investigated in genetically obese Zucker rats, an animal model of insulin resistance, using the euglycemic clamp technique. After 0.4% DHEA was administered for 10 days to female obese Zucker rats aged 16 weeks, body weight and plasma insulin decreased and glucose disposal rate (GDR), which was normally reduced in obese rats, rose significantly compared with age- and sex-matched control obese rats. On the other hand, although the pair-fed obese rats also showed levels of weight reduction similar to those of DHEA-treated rats, the increase in GDR of DHEA-treated rats was significantly greater than in pair-fed rats, suggesting a direct ameliorating effect of DHEA on insulin sensitivity of obese rats. Serum concentration of tumor necrosis factor (TNF)-alpha, one of cytokines causing insulin resistance, was also reduced significantly in DHEA-treated, but not in pair-fed obese rats. In conclusion, our results suggest that DHEA treatment reduces body weight and serum TNF-alpha independently, and that both may ameliorate insulin resistance in obese Zucker fatty rats.

Animals↗

Effect of pibutidine hydrochloride on nitric oxide production in rat gastric mucosa.

This study examined the effect of pibutidine hydrochloride, a novel histamine H2 receptor antagonist (IT-066), on nitric oxide (NO) production in gastric mucosa by measuring nitrite and nitrate contents. IT-066 (0.3-3 mg/kg, p.o.) and NO donors, sodium nitroprusside (0.3 mg/kg, s.c.) and NOR3 (0.1 mg/kg, s.c.), increased the NO contents in gastric mucosa. Cimetidine (100 mg/kg, p.o.), ranitidine (30 mg/kg, p.o.) and famotidine (10 mg/kg, p.o.) did not significantly affect the NO production. Pretreatment with NG-nitro-L-arginine methyl ester (3 mg/kg, i.v.), a NO synthase inhibitor, decreased the level of IT-066 (3 mg/kg, p.o.)-stimulated NO production. These results suggest that IT-066 stimulated gastric mucosal NO production, and that endogenous NO may be implicated in the pharmacological effect of IT-066.

Animals↗

Amended structure of side chains in a cell wall mannan from Candida albicans serotype A strain grown in yeast extract-Sabouraud liquid medium under acidic conditions: detection of the branched side chains corresponding to antigenic factor 4.

In a previous study, we reported the excess production of alpha-1,3-linked mannose residues with the complete disappearance of beta-1,2-linked mannose residues in cell wall mannans of Candida albicans serotype A strain cells, which were grown in yeast extract-Sabouraud liquid medium at pH 2.0. In the present study, we examined the immunochemical reactivity of the same mannan of NIH A-207 with an enzyme-linked immunosorbent assay (ELISA) using several antisera to antigenic factors of the genus Candida (FAbs) and the structure of the mannan by two-dimensional homonuclear Hartmann-Hahn analysis. The ELISA showed that the mannan reacts to FAb 4 but not to FAbs 13b and 34, which are reported to be antibody factors against linear side chains containing an alpha-1,3-linked mannose residue. In the Hartmann-Hahn analysis, we found two branched side chains, Man alpha 1-2Man alpha 1-3[Man alpha 1-6]Man alpha 1-(2Man alpha 1-)(2)2Man and Man alpha 1-3[Man alpha 1-6]Man alpha 1-(2Man alpha 1-)(2)2Man, instead of the previously reported linear side chains. The branched side chains are oversynthesized under acidic conditions.

Antibodies, Fungal↗

Changes in glutamate receptors, c-fos mRNA expression and activator protein-1 (AP-1) DNA binding activity in the brain of phenobarbital-dependent and -withdrawn rats.

We studied changes in glutamate receptors, expression of immediate early genes, and AP-1 DNA binding activity in the brains of phenobarbital (PB)-dependent and -withdrawn rats to investigate the possible involvement of activation of glutamate receptors in PB withdrawal syndrome. PB-dependent rats were prepared by feeding drug-admixed food for 5 weeks. Autoradiographic analysis showed that binding of [3H(+)-5-methyl-10,11-dihydro-5H-dibenzo[a,d]cyclohepten-5,10-imin e (MK-801), an antagonist of N-methyl-D-aspartic acid (NMDA) receptors, increased significantly in the cerebral cortices of PB-dependent and 24-h-withdrawn rats. However, [3H]MK-801 binding in the hippocampus and [3H]6-cyano-7-nitroquinoxaline-2,3-dione (CNQX) and [3H]kainic acid binding in the hippocampus and cerebral cortex were essentially unchanged in both groups. PB withdrawal seizures were followed by increased expression of c-fos mRNA in the hippocampus and cerebral cortex and of c-jun mRNA in the cerebral cortex. The induction of c-fos and c-jun mRNA was suppressed by administration of MK-801. Furthermore, PB withdrawal enhanced AP-1 DNA binding activity in the brain. The present findings suggest functional enhancement of glutamatergic neurotransmission during the development of PB withdrawal syndrome.

6-Cyano-7-nitroquinoxaline-2,3-dione↗

Structure of a cell wall mannan from the pathogenic yeast, Candida catenulata: assignment of 1H nuclear magnetic resonance chemical shifts of the inner alpha-1,6-linked mannose residues substituted by a side chain.

We performed an enzyme-linked immunosorbent assay of the cell wall mannan purified from the pathogenic yeast, Candida catenulata, using antisera to factors of the genus Candida. The results suggest that mannan possesses a linear backbone consisting of alpha-1, 6-linked mannose residues and side chains possessing nonreducing terminal alpha-1,2- and alpha-1,3-linked mannose residues. The chemical structure of the mannan was analyzed by two-dimensional homonuclear Hartmann-Hahn and two-dimensional nuclear Overhauser enhancement and exchange spectroscopy. The sequential assignments of the cross-peaks caused by J-coupling and the nuclear Overhauser effect from these terminal mannose residues demonstrate that the H1 signal of an inner alpha-1,6-linked mannose residue substituted by an alpha-oligomannosyl side chain or a single mannose through the C-2 position in an alpha-anomer configuration undergoes a significant downfield shift (delta delta = 0.16 or 0.19 ppm, respectively) compared with that of unsubstituted residues. We therefore propose the exact overall structure of the antigenic mannan obtained from C. catenulata. The assignment data in the present study are useful for the determination of the exact overall structure of various yeast mannans using the two-dimensional nuclear magnetic resonance analysis without the need for harsh procedures.

Antigens, Fungal↗

Behavioral stimulation without alteration of beta and 5-HT receptors and adenylate cyclase activity in rat brain after chronic sertraline administration.

Effects of chronic treatment with selective 5-HT reuptake inhibitors (SSRIs) on the monoaminergic functions have not been much investigated in compared with tricyclic antidepressants. Therefore, we compared the effects of 3-week treatment with sertraline, a potent SSRI, to those of imipramine (10 mg/kg, IP, twice a day), on monoamine receptors and adenylate cyclase (AC) activity in rat brain. Two-week treatment with both sertraline and imipramine reduced immobility in the water wheel test to the comparable extent. Sertraline treatment did not affect Kd and Bmax of [3H]CGP12177 and [3H]ketanserin bindings or cAMP, accumulation by norepinephrine, isoproternol, 5'-guanylylimidodiphosphate [Gpp(NH)p] and forskolin in the cortical membrane compared with vehicle-treated rats. On the other hand, imipramine treatment decreased Bmax of both bindings and norepinephrine- or isoproternol-stimulated cAMP accumulation. Treatment with either antidepressant induced no apparent changes in [3H]8-OH-DPAT [2-(N, N-dipropylamino)-8-hydroxy-1,2,3,4-tetrahydronaphthalene] binding in the hippocampal membrane. These results suggested that chronic treatment of sertraline induced little effect on monoamine receptors and AC activity in the brain and that the alteration of these functions may not be primarily involved in antidepressive effects of antidepressants, at least of SSRIs.

1-Naphthylamine↗

Delayed neurite regeneration and its improvement by nerve growth factor (NGF) in dorsal root ganglia from MRL-lpr/lpr mice in vitro.

We studied neurite regeneration in MRL-lpr/lpr mice, a murine model of systemic lupus erythematosus, using a culture system to investigate the influences of immunological abnormalities on neurons. The regeneration of cultured dorsal root ganglion (DRG) neurons from MRL-lpr/lpr mice was delayed compared with control MRL-+/+ mice. This modification of regeneration was age-dependent. MRL-lpr/lpr mice older than 16 weeks of age exhibited less neurite regeneration than controls but those younger than 6 weeks of age showed equal regeneration. Regeneration was improved by adding nerve growth factor (NGF) to culture medium. Following immunocytochemical staining, we counted the low affinity NGF receptor p75-positive DRG neurons in MRL mice. The percentage of p75-positive neurons in MRL-lpr/lpr mice older than 16 weeks of age was higher than that in MRL-+/+ mice. These neuronal abnormalities were thought not to be directly dependent on the genetic defect of Fas antigen, which is related to apoptosis in MRL-lpr/lpr mice, but to be the result of immunological abnormalities. The present study is the first to demonstrate a modification of neurite regeneration by immunological dysfunction in autoimmune mice.

Aging↗

Circadian intraocular pressure management with latanoprost: diurnal and nocturnal intraocular pressure reduction and increased uveoscleral outflow.

Based on their mechanism of action, the most frequently used ocular hypertensive agents, the beta-blockers, cannot be assumed to reduce IOP during sleep. The need for drugs that reduce IOP around-the-clock is underscored, however, by the fact that inadequate nocturnal ocular perfusion pressure is considered to be one of the likely causes of glaucomatous optic neuropathy especially in some cases of normal tension glaucoma. The studies reviewed here demonstrate that latanoprost, a new ocular hypotensive prostaglandin F2 alpha analogue, applied once a day at a concentration of 0.005%, maintains a statistically highly significant IOP reduction around-the-clock. The magnitude of this IOP reduction was found to be essentially identical during the day and at night, both in patients maintained on timolol and in those not receiving other glaucoma medication. Latanoprost-induced IOP reduction was also found to be associated with increased uveoscleral outflow in normotensive volunteers, both during the day and at night. These circadian studies suggest that this new ocular hypotensive agent can be expected to be particularly useful for the medical management of some forms of glaucoma, such as normal tension glaucoma, when the cause of the glaucomatous damage cannot be linked specifically to diurnal IOP abnormalities.

Administration, Topical↗

Evidence for a depressive-like state induced by repeated saline injections in Fischer 344 rats.

We investigated the behavioral changes induced by mild stress in animals that may be relatively susceptible to a depressive-like state, the Fischer 344 rat strain. The mild stress of repeated handling and intraperitoneal (i.p.) injections with saline (2 ml/kg, twice a day for 14 days) elicited a moderate suppression of body weight gain, a decrease in open field activity, and a prolonged immobility during the tail suspension test in Fischer 344 rats compared with Sprague-Dawley rats. Chronic treatment of Fischer 344 rats with imipramine (10 mg/kg i.p., twice a day for 14 days) effectively suppressed open field activity and prolonged immobility. These results suggest that repeated saline injections may be a mild stressor in these rats. In the Fischer 344 strain, which may be vulnerable to the effects of mild stressors, repeated saline injections might induce a depressive-like state and could presumably represent an experimental model for depression.

Animals↗

Protective effect of citalopram against the attenuation of the alpha 1-potentiation of cAMP formation in Fischer 344 strain rats.

We investigated the effects of citalopram, a selective serotonin reuptake inhibitor (SSRI), using an animal model for a depressive state. In Fischer 344 rats, known as emotional animals, repeated stress by twice-daily intraperitoneal (i.p.) saline injections for 14 days elicited a depressive state characterized by a decreased open-field activity and a prolonged immobility during the tail-suspension test. Concomitantly, suppression of norepinephrine (NE)-induced cAMP formation was found in the cerebral cortical slices of the stress-exposed rats without changes in adrenergic alpha 1- or beta-receptors. The difference in cAMP formation between the intact and the stress groups was totally abolished under the blockade of the alpha 1-receptor system or by the stimulation with isoproterenol or forskolin, whereas the suppressed response in the stress group was also observed in combination with isoproterenol and phenylephrine. From these results, we confirmed that the potentiation of the beta-receptor-stimulated cAMP formation by the alpha 1-receptor is attenuated following repeated stress. Chronic i.p. administration of citalopram dissolved in saline improved both the suppressed open-field activity and the prolonged immobility in the tail-suspension test. The animals treated with citalopram exhibited a comparable alpha 1-potentiation effect as observed in the intact rats. However, another SSRI, paroxetine, was less effective on the attenuation of the alpha 1-potentiation in spite of its behavioral improvement in the depressive state. These findings suggest that citalopram has a protective effect against the repeated stress-induced depressive state by mechanisms besides the serotonin reuptake inhibition.

Adrenergic Uptake Inhibitors↗

Incidence of retinal vein occlusion at the Glaucoma Clinic of Hiroshima University.

We prospectively surveyed the incidence of retinal vein occlusion (RVO) at the glaucoma clinic of Hiroshima University between 1986 and 1991. Among 433 glaucoma patients, 18 (4.2%) subsequently presented with RVO, 9 had central retinal vein occlusion (CRVO) and 9 exhibited branch retinal vein occlusion (BRVO). Seven of 87 (8.1%) patients with primary angle closure glaucoma exhibited RVO, showing the highest incidence among glaucoma types. The incidence of RVO detected by the general outpatient clinic was 0.59% during the same period. The BRVO/CRVO ratio in the glaucoma clinic was 1.0, while it was 4.3 in the general outpatient clinic. Glaucoma is an important risk factor for the development of RVO, especially CRVO.

Adult↗

Subcapsular cell hyperplasia and mast cell infiltration in the adrenal cortex of mice: comparative study in 7 inbred strains.

Subcapsular cell hyperplasia (SCH) in the adrenal cortex of aged mice (13-15 months old) was frequent in both sexes of BALB/c, C3H/He, DBA/2J and IQI/Jic mice and in the females of A/J and C57BL/6, although the incidence and severity of SCH were considerably different among mouse strains. Mast cells were closely associated with SCH in the A/J, BALB/c, C57BL/6, DBA/2J and IQI/Jic mice, but not in the C3H/He strain. Compared with other strains, IQI/Jic mice had a significantly larger number of mast cells in the adrenal glands. Our findings suggest that mast cells may participate in the development of SCH, and IQI/Jic would be suitable for studying the pathogenesis of SCH and the role of mast cells in this lesion.

Adrenal Cortex Diseases↗

Effect of GK-128 [2-[(2-methylimidazol-1-yl)methyl]-benzo[f]thiochromen-1-one monohydrochloride hemihydrate], a selective 5-hydroxytryptamine3 receptor antagonist, on colonic function in rats.

We investigated the effects of various selective 5-hydroxytryptamine (5-HT)3 receptor antagonists, including GK-128 [2-[(2-methylimidazol-1-yl)methyl]benzo[f]thiochromen-1-one monohydrochloride hemihydrate], on colonic function. In conscious rats, 5-HT and a 5-HT3 receptor agonist, 2-methyl-5-HT, dose-dependently increased fecal pellet output, but another 5-HT3 receptor agonist, m-chlorophenylbiguanide, did not affect output. The selective 5-HT3 receptor antagonists GK-128, granisetron, ramosetron, azasetron and ondansetron depressed the increase in fecal pellet output caused by 2-methyl-5-HT and by wrap-restraint stress. However, the rank order of potency of antagonists in the two defecation models was not consistent with that for the von Bezold-Jarisch reflex. Although granisetron and ramosetron dose-dependently reduced the spontaneous excretion of fecal pellets, GK-128 did not affect it. These results suggest that GK-128 may be used for the treatment of stress-induced gastrointestinal dysfunction. Furthermore, the present results suggest that the 5-HT3 receptor involved in colonic motility may be different from the classically defined 5-HT3 receptor and/or that the regulation of colonic motility mediated by 5-HT3 receptors during stress may be different from normal physiological conditions.

Animals↗

Response and level of beta-adrenergic, vasoactive intestinal peptide, and PACAP receptors during the circadian cycle.

PURPOSE: To determine whether a nocturnal increase of ciliary process beta-adrenergic receptor responsiveness can explain the observation that timolol decreased the aqueous flow rate and intraocular pressure (IOP) during the night but not during the day in rabbits. METHODS: Rabbits were housed in alternating 12-hour periods of light and dark. In vitro stimulation of tissue cyclic adenosine monophosphate (cAMP) levels by isoproterenol (ISO), vasoactive intestinal peptide (VIP), pituitary adenylate cyclase activating polypeptide (PACAP), or a soluble derivative of forskolin (sFSK) was measured in ciliary processes harvested at mid-light phase and early and late dark phase. Inhibition of ISO and VIP stimulation of ciliary process cAMP by an alpha 2-adrenergic agonist and maximal binding of [125I]I-pindolol, [125I]I-VIP, and [125I]I-PACAP in ciliary process membranes were measured at the same three times. RESULTS: Although there may have been a nocturnal increase in the sensitivity of ciliary process cAMP levels to stimulation by ISO, this was not observed consistently, VIP, but not PACAP, stimulation increased at night, but there was no change in the response to sFSK. Inhibition by apraclonidine of elevated ciliary process cAMP levels was constant at all three times. Ligand-binding studies showed little change in ciliary process beta-adrenergic, VIP-, or PACAP-receptor levels at the three times. CONCLUSIONS: There is no convincing evidence for a nocturnal increase in beta-adrenergic receptor sensitivity in rabbit ciliary processes that could explain the difference between day and night effects of timolol on aqueous flow and IOP.

Adrenergic alpha-Agonists↗

Effect of cold-stress and indomethacin on the biosynthesis of gastric sulfated mucin in rats.

The biosynthesis of sulfated mucin in gastric tissue was investigated in cold-stress and indomethacin (CSI)-induced gastric ulcer models. To examine the synthesis of gastric sulfated mucin, [35S]H2SO4 (sulfate) incorporation into gastric mucin was measured. The treatment of CSI inhibited the incorporation of [35S]sulfate after 2 hr. The gastric acid hypersecretion or the formation of severe ulcer was observed at 1 or 4 hr after the CSI-treatment, respectively. Pibutidine hydrochloride (IT-066), a novel H2-receptor antagonist, (0.3 mg/kg, s.c.) inhibited the formation of ulcer and reversed the inhibition of mucin sulfation by the CSI-treatment, whereas atropine sulfate, a muscarinic receptor antagonist, (1.0 mg/kg, s.c.) did not inhibit the development of ulcer nor decrease in the mucin sulfation at 6 hr after the CSI-treatment. IT-066 inhibited the total acid output (T.A.O.) due to the reduction of the acidity in the gastric juice, whereas atropine inhibited the T.A.O. due to that of the volume. These results indicated that a different mode of action between IT-066 and atropine on gastric acid secretion influences their actions in the incorporation of [35S]sulfate and the formation of ulcer in the CSI-treated rat. Therefore, it is considered that the reduction of biosynthesis of gastric sulfated mucin following acid hypersecretion may be responsible for the formation of gastric ulcer.

Animals↗

Possible involvement of calmodulin-dependent kinases in Ca(2+)-dependent enhancement of [3H]5-hydroxytryptamine uptake in rat cortex.

Effects of Ca2+ on [3H]5-hydroxytryptamine (5-HT) uptake into rat cortical synaptosomes were studied. The uptake was enhanced in the presence of Ca2+ in Krebs-Ringer medium and the uptake at 0.3-5 mM Ca2+ was 2.4-2.7 times greater than that observed in the absence of Ca2+. The maximal increase at the concentration of 1 mM Ca2+ was achieved after 2 min preincubation. Ca(2+)-dependent enhancement of the [3H]5-HT uptake reflected an increase in Vmax of the uptake process. However, Kd and Bmax values for [3H]paroxetine were not significantly changed in the presence of 1 mM Ca2+ compared with Ca(2+)-free condition. On the other hand, uptake was still enhanced after synaptosomes were washed with Ca(2+)-free after preincubation with 1 mM Ca2+. Staurosporine (a protein kinase C inhibitor) and wortmannin (a myosin light chain kinase inhibitor) did not affect Ca(2+)-dependent enhancement of the uptake, whereas 1-[N,O-bis(5-isoquinolinesulfonyl)-N-methyl-L-tyrosyl]-4-phenylpiperazin e (KN-62, an inhibitor of Ca2+ /calmodulin-dependent kinase II) and N-(6-aminohexyl)-5-chloro-1-naphthalenesulfonamide hydrochloride (W-7, a calmodulin antagonist) significantly reduced it. Moreover, L-type, but not P- or N-type, voltage-dependent Ca(2+)-channel blockers suppressed enhancement of the uptake. These results indicate that Ca(2+)-dependent enhancement of [3H]5-HT uptake is mediated by activation of calmodulin-dependent protein kinases, suggesting a possibility of calmodulin-dependent regulation of in vivo 5-HT uptake.

Animals↗