Search PubMed⌕ Search

Biomedical subjects

A G Herman

Publications and source records attributed to A G Herman.

At least 109 records · Page 6Linked to original sources

Ca2+ dependency of the release of nitric oxide from non-adrenergic non-cholinergic nerves.

1. The role of Ca2+ in nitrergic neurotransmission was studied in the canine ileocolonic junction. 2. The specific N-type voltage-sensitive Ca2+ channel blocker omega-conotoxin GVIA (CTX, 10-100 nM) significantly reduced the electrically-evoked (2-16 Hz, 1-2 ms pulse width) non-adrenergic non-cholinergic (NANC) relaxations, preferentially affecting those to low frequency stimulation, in circular muscle strips of the ileocolonic junction. In contrast, the nerve-mediated NANC-relaxations in response to acetylcholine (30 microM), gamma-aminobutyric acid (100 microM) and adenosine 5'-triphosphate (100 microM), as well as the relaxations to nitric oxide (NO) (3-10 microM) and nitroglycerin (1 microM), remained unaffected. 3. A NO-related substance (NO-R), released from the ileocolonic junction in response to NANC nerve stimulation (4 and 16 Hz, 2 ms pulse width), was assayed with a superfusion bioassay cascade. CTX (50 nM) reduced the release of NO-R induced by electrical impulses (4 Hz: from 18 +/- 4% to 6 +/- 4%; 16 Hz: from 33 +/- 2% to 14 +/- 4%, n = 5), but not that in response to the nicotinic receptor agonist, 1,1-dimethyl-4-phenylpiperazinium (DMPP, 0.3 mM). In Ca(2+)-free medium, the release of NO-R evoked by electrical impulses or DMPP was inhibited. The L-type Ca2+ channel blockers verapamil (1-3 microM) and nifedipine (1 microM) had no effect. 4. From these results we conclude that the release of NO-R in response to NANC nerve stimulation is Ca(2+)-dependent. The electrically-evoked release of NO-R results from Ca2+ entry through CTX-sensitive N-type voltage-sensitive Ca2+ channels, whereas that induced by nicotinic receptor activation involves CTX-insensitive Ca2+ channels, different from the L- or N-type.

Animals↗

The endothelium during cuff-induced neointima formation in the rabbit carotid artery.

Intimal thickening in human arteries is considered as a site of predilection for atherosclerosis. The placement of a flexible, physically nonconstrictive, silicone cuff around the rabbit carotid artery induced a neointima composed of smooth muscle cells (SMCs) within 14 days. To investigate possible alterations of the endothelial cells (ECs) during neointima formation, their morphology was examined with scanning electron microscopy (SEM), transmission electron microscopy (TEM), and confocal microscopy. In the early postoperative period (6 hours), both cuffed and sham-operated arteries demonstrated small foci (5 to 200 microns) of denudation, presumably as a consequence of the manipulation. Within 24 hours the luminal surface of the cuffed and sham-operated arteries was completely covered with endothelium, which remained continuous throughout the study. However, after 1 week the ECs of the cuffed arteries contained a pronounced rough endoplasmic reticulum. From 6 hours until 3 days, polymorphonuclear leukocytes infiltrated the cuffed but not the sham-operated arteries from the lumen. Subendothelial SMC accumulation in the cuffed arteries began after this time period. At day 14 a full-blown neointima composed of longitudinally oriented SMCs had formed in the cuffed arteries. The sham-operated arteries did not develop a neointima. During neointima formation immunoreactivity for von Willebrand factor (vWf) increased in the ECs, and vWf was deposited in the extracellular spaces of the neointima. At day 14 the area of vWf deposits correlated positively with the area of the neointima (r = .73, P < .001). In subsequent weeks, the intimal area did not increase, and vWf deposits vanished from the neointimal matrix. The endothelium of the sham-operated arteries showed no change in vWf immunoreactivity compared with untreated arteries throughout the study. The altered ultrastructural morphology of the ECs and the concurrent vWf deposition in cuffed but not in sham-operated arteries point to alterations in EC function during the development of the neointima. The vWf secretion could possibly lead to increased adhesiveness of the extracellular matrix for the ECs as well as modulate neointima formation.

Actins↗

Interleukin-8 production in patients undergoing cardiopulmonary bypass. The influence of pretreatment with methylprednisolone.

Pulmonary dysfunction caused by pulmonary neutrophil sequestration is a frequent postoperative complication in patients undergoing cardiopulmonary bypass (CPB) surgery. It is yet unclear whether treatment with corticosteroids in vivo in these patients can prevent complement-mediated neutrophil activation and sequestration in the lungs. Therefore, we conducted a prospective study in order to investigate whether methylprednisolone (MP) pretreatment (30 mg/kg) could influence the appearance of IL-8 (a recently discovered cytokine with potent neutrophil-chemotactic activity) in the peripheral circulation. We also studied the effects of MP pretreatment on the inflammatory parameters in the bronchoalveolar lavage (BAL) fluid 4 h postoperatively. Although peripheral neutropenia and the rise in IL-8 serum levels was less pronounced in MP-treated than in non-steroid-treated patients, there was no significant difference in albumin, total protein, concentrations of IL-8 and C3a, and the number of neutrophils in the BAL fluid between the two groups. However, when cultured in vitro, alveolar macrophages from patients treated with MP released significantly lower IL-8, both in basal conditions and after stimulation with lipopolysaccharide. Our results show that MP does not prevent (IL-8-mediated) pulmonary neutrophil infiltration after CPB, although it might affect certain aspects of the microvascular lung injury.

Aged↗

L-arginine-dependent nitric oxide synthase: a new metabolic pathway in the lung and airways.

An L-arginine-dependent pathway, metabolising L-arginine to citrulline and nitrogen oxides, has been described in many cell types in different species, including man. Two subtypes of this nitric oxide synthase have been reported: a constitutive enzyme type, releasing nitric oxide after stimulation, is typically found in endothelial and neural cells; another subtype can be induced in macrophages after cytokine treatment. This review summarizes the literature on the known and proposed roles of this L-arginine-dependent nitric oxide production in different pulmonary processes. Nitric oxide has been reported to act as a neurotransmitter in the inhibitory nonadrenergic, noncholinergic nerves in the airways of guinea-pig and man. It is released in cytostatic processes by immune-stimulated alveolar macrophages. Recent data on the role of L-arginine-dependent processes in immune-complex-mediated lung injury, histamine-induced activation of guanylate cyclase or cytokine networks in the lung are also discussed. Finally, similarities and differences between tracheal epithelium-derived relaxing factor and nitric oxide are analysed. The details of the role and distribution of nitric oxide synthase in the (human) lung and airways are not yet completely understood. Nitric oxide is believed to play a role in various pulmonary physiological processes, such as bronchodilation and the cytotoxic action of certain cells. The modulation of nitric oxide release will therefore, most probably lead to application of novel therapies in diseases such as asthma and inflammatory pulmonary diseases.

Amino Acid Oxidoreductases↗

Effects of different antibiotics on the endothelium of the porcine aortic valve.

Homograft heart valves are usually sterilized by exposure to multiple-antibiotic solutions at 4 degrees C for 24 hours. Several combinations of antibiotics have been proposed and discussed in the literature, but their toxicity to cusp endothelium has not been investigated yet. We studied the endothelial cell viability of porcine aortic valves by measuring their in vitro prostacyclin (PGI2) production after being exposed to different antibiotics solutions. Porcine aortic valves were immersed for 24 hours at 4 degrees C in RPMI medium to which antibiotics (Gentamycin 80 micrograms/ml, Azlocillin 500 micrograms/ml, Cloxacillin 25 micrograms/ml, Metronidazole 100 micrograms/ml, Amphotericin B 50 micrograms/ml, GACMA) were added separately or in combination. The basal and bradykinin (10 microM) stimulated PGI2 release of these valves in the medium were measured during consecutive incubation lasting 15 minutes at 37 degrees C, using a radioimmunoassay for 6-oxo-PGF1 alpha. Valves treated with the combination of all five antibiotics produced significantly less PGI2 in basal and stimulated conditions (1.64 +/- 0.63--7.25 +/- 1.73 ng/ml x cm2, p < 0.05) than the controls (4.66 +/- 0.66--30.55 +/- 3.84 ng/ml x cm2, p < 0.001). Although all antibiotics, when studied separately at the above mentioned concentrations, tended to reduce the biosynthesis of PGI2, amphotericin B was responsible for the most pronounced decrease in its production. The toxic effect of amphotericin B was dose dependent; at a low concentration (5 micrograms/ml), which is usually enough for antifungal action, toxicity was undetectable. At 50 micrograms/ml PGI2 production was half of that found at 5 micrograms/ml, although concentrations as high as 100 micrograms/ml have been used clinically to disinfect homografts. Scanning electron microscopy (SEM) also confirmed the extensive loss of endothelium after exposure to high concentrations of amphotericin B. Our study suggests that the other four antibiotics used in the concentrations described above do not damage endothelial function; amphotericin B is also harmless if used at a concentration of 5 micrograms/ml.

Amphotericin B↗

Synergism between interleukin-1 beta and interferon-gamma, an inducer of nitric oxide synthase, in rat lung fibroblasts.

An L-arginine-dependent pathway, by which L-arginine is metabolised to citrulline and nitrogen oxides, has been recently identified in some cell types. In cultured rat lung fibroblasts the presence of L-arginine was necessary for the production of nitrite to be induced by rat recombinant interferon-gamma and synergistically enhanced by lipopolysaccharide and interleukin-1 beta. Lipopolysaccharide and interleukin-1 beta did not induce nitrite biosynthesis by themselves. Biosynthesis was apparently dependent on tetrahydrobiopterin, since it could be blocked by diaminohydroxypyrimidine, an inhibitor of tetrahydrobiopterin synthesis. Dexamethasone blocked nitrite production by a receptor-mediated mechanism. These data indicate that rat lung fibroblasts express an L-arginine-dependent nitric oxide synthase which can be induced by some mediators of inflammation.

Amino Acid Oxidoreductases↗

Differences in structure of angiotensin-converting enzyme inhibitors might predict differences in action.

Angiotensin-converting enzyme (ACE) inhibitors probably work by inhibition of tissue-located ACE, and they differ with regard to their relative ability to inhibit ACE in different organs. This apparent tissue selectivity may stem from either differences in tissue bioavailability or from a different affinity for the enzyme. The affinity of the ACE inhibitor for a particular enzyme is not only determined by the structure of the inhibitor, but also by the structure of the enzyme. ACE enzymes from different tissues may be slightly different, and this may have some bearing on the relative affinities of different ACE inhibitors for ACE from different tissues. The duration of inhibition in a particular tissue reflects not only the affinity of that inhibitor for the tissue enzyme, but also reflects the ease or difficulty with which the active ACE inhibitor is released from that tissue. Whether the beneficial effects of ACE inhibitors on experimentally induced myocardial infarction and reperfusion arrhythmias are due to the presence of a sulfhydryl group or are mainly related to the ACE inhibitor-mediated bradykinin potentiation remains a matter of controversy.

Angiotensin-Converting Enzyme Inhibitors↗

Soybean trypsin inhibitor and beta-amylase induce alveolar macrophages to release nitrogen oxides.

Rat alveolar macrophages incubated with soybean trypsin inhibitor and beta-amylase produced nitrite in a dose- and time-dependent manner. This production depends on the presence of L-arginine (L-arg) in the culture medium. The precursor of this nitrite was demonstrated as being nitric oxide by bleaching ferredoxin at 410 nm when added to the culture medium. NG-Monomethyl-L-arginine and the tetrahydrobiopterin biosynthesis inhibitor 2,4-diamino-6-hydroxypyrimidine inhibited the release of nitrite in a dose-dependent manner. Dexamethasone was able to modulate this release. These data indicate that alveolar macrophages are capable of secreting L-arg-derived nitrogen oxides when stimulated with certain alimentary proteins.

Animals↗

Diminished capacity to release metabolites of nitric oxide synthase in macrophages loaded with oxidized low-density lipoproteins.

Activation of J774-macrophages with lipopolysaccharide (LPS) or LPS and recombinant interferon-gamma (IFN-gamma) induced nitric oxide (NO) synthase activity, as measured by the production of nitrite and citrulline. NO synthase activity was suppressed by loading the cells with oxidatively modified low-density lipoprotein (ox-LDL) but not with acetylated LDL (ac-LDL), although the intracellular lipid accumulation was comparable. This suggests that the extent of activation of lipid-loaded macrophages may be influenced by the type of lipid.

Amino Acid Oxidoreductases↗

Impaired endothelium-dependent cholinergic coronary vasodilation in patients with angina and normal coronary arteriograms.

The coronary vasomotor responses to selective infusion of graded concentrations (10(-6) to 10(-4) M) of acetylcholine into the left anterior descending artery were assessed by quantitative coronary arteriography in 24 patients with normal coronary arteriograms (12 patients with atypical symptoms and 12 patients with typical anginal pain) and 36 patients with coronary artery disease with different degrees of atherosclerosis of the left anterior descending artery. In the patients with normal coronary arteries and atypical chest pain, acetylcholine induced predominantly a vasodilator response, which was maximal during a 10(-5) M acetylcholine infusion. In contrast, in patients with coronary artery disease, acetylcholine caused dose-dependent vasoconstriction, which was observed even if the left anterior descending artery itself was smooth. Marked vasoconstriction was also induced in the patients with typical anginal pain and angiographically normal coronary arteries. In nine of these patients, this constrictor response was associated with anginal pain and electrocardiographic evidence of myocardial ischemia. Intracoronary administration of isosorbide dinitrate (1 mg) relieved the anginal pain and dilated all vessels. These data suggest that 1) patients with normal coronary arteriograms and angina pectoris manifest impairment of endothelium-dependent vasodilation similar to that observed in patients with overt coronary atherosclerosis; and 2) abnormal coronary vasoconstrictor responses resulting from this impairment may contribute to the pathogenesis of myocardial ischemia and angina in these patients.

Acetylcholine↗

Improved endothelial viability of heart valves cryopreserved by a new technique.

The aim of this study was to compare different techniques of aortic valve cryopreservation by studying the viability of the endothelial cells. Viability was assessed by measuring their in vitro prostacyclin (PGI2) production under basal and stimulated conditions. Fresh and cryopreserved porcine valves were incubated at 37 degrees C in tissue culture medium and PGI2 content in the medium was measured every 15 min up to 300 min. Cryopreservation by the older procedure A included 5% fetal calf serum (FCS) in the preservation medium, a plastic box inside a freezing plastic bag, a cooling schedule approximating -2 degrees C/min, a long thawing time and few dilution steps of the cryoprotectant dimethylsulphoxide (DMSO). The newer procedure B differed from A in packaging, freezing and thawing rates and DMSO dilution. Procedure C was similar to B with the exception that FCS was omitted. Leaflets preserved by procedure A produced significantly less prostacyclin as compared to those treated according to procedures B or C. We conclude that minor differences in the cryopreservation method can become critical to endothelial functional viability.

Animals↗

Interleukin 8 (IL-8) in the bronchoalveolar lavage fluid from patients with the adult respiratory distress syndrome (ARDS) and patients at risk for ARDS.

A sensitive and specific radioimmunoassay was used to measure interleukin 8 (IL-8) in bronchoalveolar lavage fluids from control subjects, patients with the adult respiratory distress syndrome (ARDS) and patients undergoing coronary bypass surgery, a risk factor for developing ARDS. Concentrations of IL-8, albumin, total protein and numbers of neutrophils were higher in both patient groups than in controls. Levels of IL-8 were significantly correlated with the influx of neutrophils, plasma protein extravasation and with the PaO2/FiO2 ratio. These data suggest that IL-8 may mediate the recruitment of neutrophils from the vascular compartment into the alveolar space and may therefore be an important determinant in neutrophil-mediated lung injury. Since increased levels of IL-8 were also found in BAL fluid from patients at risk in whom ARDS did not develop, other factors are likely to be involved and IL-8, as well as other markers of inflammation, are of little prognostic use.

Adult↗

Paradoxical vasoconstriction as result of acetylcholine and serotonin in diseased human coronary arteries.

UNLABELLED: In experimental atherosclerosis, impairment of endothelium-dependent vasodilation results in an unmasking of potent vasoconstrictor responses to serotonin, a substance released by aggregating platelets. To determine whether similar changes occur in diseased human coronary arteries, the responses to selective intracoronary infusions of acetylcholine and serotonin (both endothelium-dependent vasodilators) and to isosorbide dinitrate (a dilator directly acting on the smooth muscle) were assessed by quantitative coronary arteriography in 16 patients with angiographically normal coronary arteries, in 10 patients with minimal (less than 30% narrowing) and in five patients with more advanced (greater than 50% narrowing) coronary atherosclerosis. Acetylcholine induced constriction in diseased coronary arteries, but in patients with normal coronary arteriograms, it caused dilatation in seven patients (smooth dilators) and constriction in nine patients (smooth constrictors). In the smooth dilators, however, serotonin evoked no significant changes (+1.4 +/- 4.1%), whereas in the smooth constrictors and in patients with diseased coronary arteries, serotonin caused dose-dependent constriction. The vasoconstrictor responses to serotonin were similar in patients with minimal (-26.5 +/- 4.7%) and more advanced atherosclerosis (-30.9 +/- 5.3%). In one patient with coronary artery disease, serotonin caused a temporary coronary occlusion. All other patients dilated in response to isosorbide dinitrate. The vasomotor responses to acetylcholine and to serotonin were thus shown to be completely in parallel. CONCLUSION: impairment of endothelium-dependent vasodilation unmasks potent vasoconstrictor responses to serotonin both in early and advanced coronary atherosclerosis. These changes may play an important role in the pathogenesis of a dynamic coronary artery stenosis.

Acetylcholine↗

Selective muscarinic alterations of nitric oxide-mediated relaxations by neointima.

During neointima formation, which is an early and essential step in the development of atherosclerosis, endothelium-independent relaxations (nitroglycerin, 3-morpholinosydnonimine) are preserved, whereas muscarinic endothelium-dependent relaxation becomes impaired. The present study was undertaken to determine the selectivity of this impairment. The neointima was induced by positioning a nonocclusive, soft silicone collar around the left carotid artery of rabbits. The contralateral artery served as a control. Seven days later, vascular rings were mounted in organ chambers, contracted with phenylephrine (0.35 microM), and cumulative dose-relaxation curves were made. Intima-bearing vessels were less sensitive to acetylcholine, confirming the original observation. In contrast, the dose-relaxation curves for substance P and for the calcium ionophore A23187 were not altered in the presence of neointima. The curve for ATP was even shifted to the left. These results suggest that the nitric oxide synthase: cyclic GMP system remains intact in intima-bearing vessels and that the diminished endothelium-dependent relaxations are due to a selective alteration of the muscarinic receptors.

Adenosine Triphosphate↗

The role of endothelial cells in the relaxations induced by 13-hydroxy- and 13-hydroperoxylinoleic acid in canine arteries.

1. One of the major fatty acids in the arterial wall is linoleic acid. It has been shown that its 13-hydroxy metabolite (13-HODE) is generated in significant amounts by cultured endothelial cells. The aim of the present study was to investigate the relaxations to 13-HODE and its hydroperoxyprecursor (13-HPODE) and to examine the role of the endothelial cells. 2. Ring segments of canine circumflex and splenic artery were mounted in organ chambers for isometric tension recording. During contractions induced by prostaglandin F2 alpha or noradrenaline, 13-HODE and 13-HPODE evoked dose-dependent relaxations. Removal of the endothelial cells reduced the relaxations to 13-HODE, but had no effect on those elicited by 13-HPODE. 3. Indomethacin and meclofenamate (0.3 microM to 30 microM) blocked the relaxations evoked by 13-HODE and 13-HPODE in endothelium-denuded rings. In segments with endothelium, both cyclo-oxygenase inhibitors again abolished the relaxations to 13-HODE, but only diminished those to 13-HPODE. 4. Prostacyclin biosynthesis, as measured by radioimmunoassay, increased upon incubation with 13-HODE and 13-HPODE (10 microM). Bioassay of the release of nitric oxide (NO) indicated that NO was not involved in the relaxations elicited by either metabolite. Moreover, L-NG-nitroarginine (100 microM), a specific inhibitor of NO synthesis, did not influence the relaxations to 13-HODE and 13-HPODE. The responses to 13-HPODE were also not altered by superoxide dismutase. 5. In the splenic artery 13-HPODE and 13-HODE induced contractions above 3 microM which were blocked by the thromboxane receptor antagonist, daltroban.In the circumflex artery contractile responses to high concentrations of 13-HODE could be observed only after inhibition of cyclo-oxygenase.6. We conclude that the vasodilatation induced by 13-HODE and 13-HPODE was due to stimulation of prostacyclin biosynthesis both in the endothelium and smooth muscle cells or other subendothelial structures. An additional, unidentified intermediate, which was neither NO nor a cyclo-oxygenase product nor superoxide anion, contributed to the relaxations to 13-HPODE in arteries with endothelium.

Animals↗

Pterins inhibit nitric oxide synthase activity in rat alveolar macrophages.

1. The synthesis of nitrite and citrulline from L-arginine by immune-stimulated rat alveolar macrophages and the modulation of this synthesis were studied. 2,4-Diamino-6-hydroxypyrimidine (DAHP), 6R-5,6,7,8-tetrahydro-L-biopterin (BH4) and L-sepiapterin were potent inhibitors of the recombinant interferon-gamma induced production of nitrogen oxides in intact cultured cells with I50 values for BH4 and L-sepiapterin of approximately 10 microM. They were equally effective in inhibiting the induced production of citrulline. This inhibitory effect was concentration-dependent for all three modulators investigated. 2. The inhibitory effects were not dependent on incubation times of either 24 or 48 h, on the immune-stimulus used (lipopolysaccharide, interferon-gamma), or whether these stimuli were added during or after the induction period. 3. Pterin-6-carboxylic acid (PCA), which cannot be converted into BH4, and methotrexate (MTX), which inhibits dihydrofolatereductase but not de novo biosynthesis of BH4, did not change the production of nitrite. 4. The data indicate that DAHP, an inhibitor of the de novo biosynthesis of the co-factor BH4, blocks the nitric oxide synthase activity in intact cells. Since the pterins BH4 and L-sepiapterin blocked the L-arginine dependent production of nitrite and citrulline, the activity of nitric oxide synthase in phagocytic cells may be regulated by metabolic endproducts of the de novo biosynthesis of BH4.

Amino Acid Oxidoreductases↗

Triphasic sequence of neointimal formation in the cuffed carotid artery of the rabbit.

A nonocclusive silicone cuff placed around the rabbit carotid artery results in a diffuse intimal thickening. The early stages of this phenomenon were studied by light microscopy, immunohistochemistry, and electron microscopy. Neointimal formation appeared to be triphasic. The first phase started 2 hours after cuff placement, with vascular infiltration by polymorphonuclear leukocytes (PMNs). In the second phase, starting within 12 hours, 1.90 +/- 0.36% of the medial smooth muscle cells (SMCs) were replicating, as demonstrated by their immunoreactivity for proliferating cell nuclear antigen (PCNA). The third phase was characterized by the appearance, from day 3 onward, of subendothelial SMCs that were immunoreactive for alpha-SMC actin and vimentin. A few cells showed immunoreactivity for PCNA. During this phase all the PMNs disappeared, but SMC replication in the media was still present, as indicated by the presence of mitoses and the persisting immunoreactivity for PCNA (0.76 +/- 0.22% at day 7). In the third phase the number of subendothelial cells increased (104 +/- 15 SMC nuclei per section at day 7, of which 8.89 +/- 2.26% were PCNA-positive) and was associated with deposition of collagen type IV and fibronectin. At 14 days a complete, circular neointima was present and contained 2.13 +/- 0.28% replicating SMCs. The media showed 0.44 +/- 0.08% cell-cycling SMCs, which was still four times higher than normal. During the first week there was also a significantly higher PCNA activity in the media of sham-operated carotid arteries (no cuff present) than in nonsurgical ones. However, this did not lead to the formation of a neointima. We conclude that in the cuff system SMC replication in the media precedes the neointimal formation. The system can be used to study SMC replication, migration, and neointimal formation with minimal medial SMC damage.

Actins↗

Selective M3 muscarinic receptor antagonists inhibit smooth muscle contraction in rabbit trachea without increasing the release of acetylcholine.

Although five muscarinic receptor subtypes have now been cloned, only three receptor subtypes have been demonstrated pharmacologically in bronchial tissue (designated M1, M2 and M3). By using drugs that show selectivity for these receptor subtypes, in combination with a sensitive and specific high-pressure liquid chromatography method that enables the direct measurement of acetylcholine (ACh) release, the existence and function of these muscarinic receptor subtypes was investigated in rabbit trachea in vitro. Atropine and ipratropium bromide, nonselective antimuscarinic agents, dose-dependently suppressed contraction of rabbit trachea induced by transmural electrical stimulation, but at the same time enhanced the release of ACh, suggesting the presence of an autoregulatory feed-back system. The M2/M4 receptor antagonists methoctramine, 11-((2-[(diethylamino)methyl]-1-piperidinyl)acetyl)-5, 11-dihydro-6H-pyrido(2,3-b)(1,4)benzodiazepine-6-one, 5,11-dihydro-11-([(2-(2-[(dipropylamino)methyl]-1-piperidinyl)ethyl) amino]carbonyl)-6H-pyrido(2,3-b)(1,4)benzodiazepine-6-one and 11-((4-[4-(diethylamino)butyl]-1-piperidinyl)acetyl)-5, 11-dihydro-6H-pyrido(2,3-b)(1,4)benzodiazepine-6-one also dose-dependently increased ACh release during electrical stimulation, indicating that the powerful negative feedback system is mediated by presynaptic autoreceptors of the M2 or M4 type.(ABSTRACT TRUNCATED AT 250 WORDS)

Acetylcholine↗