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R Gamse

Publications and source records attributed to R Gamse.

At least 19 recordsLinked to original sources

The serotonin 5-HT4 receptor. 1. Design of a new class of agonists and receptor map of the agonist recognition site.

The design and synthesis of a new class of potent and selective 5-HT4 receptor agonists containing an indole nucleus linked to a carbazimidamide are presented. A conformational study of the 5-HT4 receptor agonists serotonin and zacopride led to the identification of an initial pharmacophore and to the definition of a three-dimensional map of the 5-HT4 agonist recognition site. 1, a representative member of our new class of 5-HT4 receptor agonists, incorporates all reference structural features and matched perfectly with these models. 1 is a highly potent, full agonist at 5-HT4 receptors present in the isolated electrically stimulated guinea pig ileum preparation, with a pD2 value of 8.8, displaying selectivity (ranging from 40- to over 10,000-fold) versus other members of the serotonin receptor family.

Animals↗

The serotonin 5-HT4 receptor. 2. Structure-activity studies of the indole carbazimidamide class of agonists.

A number of substituted indole carbazimidamides were prepared and evaluated as 5-HT4 receptor agonists by using the isolated field-stimulated guinea pig ileum preparation. Their selectivity for the 5-HT4 receptor was established by examining their affinity for other 5-HT receptors using radioligand-binding techniques. Several selective and highly potent full as well as partial agonists emerged from this study. For example, 1b,d were found to be the most potent, full 5-HT4 receptor agonist described so far (EC50 = 0.5 and 0.8 nM, respectively), being 6 and 4 times more potent than serotonin itself. On the other hand, 5b and 1h appeared as partial 5-HT4 receptor agonists in the nonstimulated guinea pig ileum preparation with potencies, evaluated against serotonin action, respectively similar (5b, Ki = 12 nM) to and 300-fold higher (1h, Ki = 0.04 nM) than serotonin.

Amides↗

A novel approach for high level production of a recombinant human parathyroid hormone fragment in Escherichia coli.

We describe a novel approach to the production in E. coli of a peptide fragment derived from the human parathyroid hormone (hPTH). The first 38 amino acids of hPTH were fused at the amino terminus to a derivative of the bacteriophage T4-encoded gp55 protein, and were expressed in the E. coli cytoplasm in inclusion bodies at levels exceeding 50% of the total cell protein. Solubilization and subsequent incubation of the inclusion bodies in dilute hydrochloric acid facilitated the cleavage of an acid-labile aspartyl-prolyl peptide bond engineered into the fusion protein, thus releasing the hormone fragment directly from the inclusion body preparation. The amino-terminal prolyl-prolyl dipeptide-extension was subsequently removed by treatment with Lactococcus lactis dipeptidyl peptidase IV which was overexpressed in E. coli and purified to near homogeneity from the cytosol of the recombinant bacteria. In pilot-scale fermentations, more than 80 mg of pure hPTH(1-38) were isolated per liter of bacterial culture, with an overall yield of 35%. This process is suitable for scale-up, is cost effective, and by employing recombinant dipeptidyl peptidase IV, should be widely and directly applicable to the manufacturing of peptides of pharmaceutical interest.

Amino Acid Sequence↗

Inhibition of 5-hydroxytryptamine- and enterotoxin-induced fluid secretion by 5-HT receptor antagonists in the rat jejunum.

The effects of cholera toxin and heat stable Escherichia coli (E. coli) enterotoxin on intestinal fluid secretion are commonly considered to be mediated by cyclic nucleotides. It was demonstrated recently, by using the 5-hydroxytryptamine (5-HT)2 receptor antagonist ketanserin and the 5-HT3 receptor antagonist tropisetron, that 5-HT acts as an important mediator in cholera toxin- and heat stable E. coli enterotoxin-induced fluid secretion. In the present investigation ketanserin and tropisetron were compared with the newer 5-HT3 receptor antagonists ondansetron and granisetron versus 5-HT-, cholera toxin- and heat stable E. coli enterotoxin-induced fluid secretion in the rat jejunum in vivo. Both ondansetron and granisetron dose-dependently inhibited 5-HT- and enterotoxin-induced fluid secretion. Ketanserin blocked 5-HT-induced fluid secretion, but only diminished enterotoxin-induced effects even at higher doses. Tropisetron inhibited 5-HT- and cholera toxin-induced effects at high dose but only diminished heat stable E. coli enterotoxin-induced effects. We conclude that 5-HT3 receptors, located on enterochromaffin cells and nervous structures, are more important in mediating fluid secretion than 5-HT2 receptors, located on the epithelial cells.

Animals↗

N-terminal truncation of salmon calcitonin leads to calcitonin antagonists. Structure activity relationship of N-terminally truncated salmon calcitonin fragments in vitro and in vivo.

Structural requirements for binding to the bone calcitonin (CT) receptor and for CT bioactivity both in vitro and in vivo were assessed for a series of N-terminally truncated, N alpha-acetylated, fragments of salmon calcitonin (sCT). Sequential deletion of amino acid residues from the amino-terminus of [Ala7]sCT-(2-32) peptide amide first led to partial agonists and, upon deletion of residues 1 to 7, to a high affinity antagonist, N alpha-acetyl-sCT-(8-32)-NH2. The presence of two separate domains within the sCT sequence is proposed: (I) a binding domain comprising residues 9-32 and (II) an activation domain requiring residues 3 to 6. N alpha-acetyl-sCT-(8-32)-NH2, in several bioassays including plasminogen activator release from LLC-PK1 cells (pA2 = 7.31), cAMP production in UMR-106-06 cells (pA2 = 7.81) and in the fetal rat long bone resorption assay showed potent antagonistic properties.

Acetylation↗

SDZ 205-557, a selective, surmountable antagonist for 5-HT4 receptors in the isolated guinea pig ileum.

A selective antagonist for the recently characterized 5-HT4 receptor is lacking. The only surmountable antagonist available, ICS 205-930, is a weak antagonist and is far more potent at 5-HT3-than at 5-HT4 receptors. In this paper, SDZ 205-557 (2-methoxy-4-amino-5-chloro-benzoic acid 2-(diethylamino) ethyl ester) is characterized as the first potent, selective and surmountable antagonist at 5-HT4 receptors in the isolated guinea pig ileum. SDZ 205-557 was investigated in the non-stimulated and in the field-stimulated guinea pig ileum longitudinal muscle preparation for its affinity for 5-HT4-, 5-HT3-, muscarine-, nicotine- and histamine H1 receptors. The affinity for 5-HT1-, 5-HT2-, alpha 1-, alpha 2- and opiate (mu) receptors was determined by binding assays. SDZ 205-557 was devoid of substantial affinity (pKD values below 5.6) for all receptors investigated except for 5-HT3- and 5-HT4 receptors. At these two receptors, SDZ 205-557 acted as an antagonist without measurable intrinsic activity. At the 5-HT4 receptors of the non-stimulated guinea pig ileum, responses to 5-HT and 5-methoxytryptamine were antagonized by SDZ 205-557 with identical pA2 values of 7.4. The effect of renzapride was also blocked with no significant change in the maximum response; Schild analysis, however, revealed that the interaction was not competitive with an "apparent" pA2 value of 7.6. A pA2 of 6.8 was obtained using zacopride as a contractile agent; this value differed significantly from 7.4, the value obtained for 5-HT and 5-methoxytryptamine.(ABSTRACT TRUNCATED AT 250 WORDS)

4-Aminobenzoic Acid↗

Antiemetic action of 5-HT3 receptor antagonists: review of preclinical and clinical results with ICS 205-930.

These results thus indicate, that ICS 205-930 is a very effective antiemetic for cancer chemotherapy-induced emesis in man. Given as a single dose prior to the chemotherapeutic agent, ICS 205-930 inhibits emesis and nausea for at least 24 hr. Together with the lack of extrapyramidal side-effects, these properties of ICS 205-930 indicate a clear superiority to the current therapeutic standard metoclopramide.

Animals↗

5-HT3 receptor antagonists inhibit sensory neuropeptide release from the rat spinal cord.

5-HT3 receptors may be present on primary afferent neurons containing substance P (SP), neurokinin A (NKA) or calcitonin gene-related peptide (CGRP). We investigated the release of SP-, NKA- and CGRP-immunoreactivities (IR) from rat spinal cord slices. Thirty mM potassium chloride caused an increased outflow of all three peptides, i.e. 140-190% of spontaneous release. This release was slightly enhanced in the presence of 3 x 10(-5) M 5-hydroxytryptamine (5-HT). In contrast, a significant inhibition of potassium-evoked, but not of basal NKA-IR and CGRP-IR release was observed when 10(-7) M BRL 43694 or ICS 205-930, two specific 5-HT3 receptor antagonists, were superfused together with 5-HT. In conclusion, 5-HT may facilitate the evoked release of peptides from central terminals of primary sensory neurons via 5-HT3 receptors.

Animals↗

Release of multiple tachykinins from capsaicin-sensitive sensory nerves in the lung by bradykinin, histamine, dimethylphenyl piperazinium, and vagal nerve stimulation.

Recent evidence suggests that activation of airway C-fibers, besides causing afferent transmission, also causes release of transmitters from peripheral endings, probably via local axon reflexes, resulting in effects on vascular and bronchial smooth muscle, i.e., vasodilatation, increase in vascular permeability, and bronchoconstriction. In the present study, the release of tachykinins was investigated in the perfused guinea pig lung by various ways of neuronal activation. Substance-P-like immunoreactivity (SP-LI) and neurokinin-A-like immunoreactivity (NKA-LI) was determined by radioimmunoassay in the perfusates. A significantly increased outflow of both SP-LI and NKA-LI was observed during perfusion of the lung with high potassium concentration (60 mM), the C-fiber activator capsaicin (1 microM), bradykinin (1 microM), histamine (100 microM), or the nicotinic agonist dimethylphenyl piperazinium (DMPP) (32 microM). Release of both SP-LI and NKA-LI could also be achieved by electrical stimulation of vagal nerves. The percental increase varied from 80 to 1,000% depending on the kind of stimulus. The release of tachykinins by K+ or capsaicin was greatly reduced in calcium-free medium. Release by histamine was completely inhibited by 1 microM mepyramine, and release by DMPP was abolished by 20 microM hexamethonium. High performance liquid chromatography indicated that NKA-LI consisted of several cross-reacting substances, presumably other peptides of the tachykinin family. Among the isolated mammalian tachykinins, NKA was the most potent one to contract tracheal smooth muscle of guinea pigs in vitro, followed by neurokinin B and by SP. Both NKA and SP relaxed the guinea pig pulmonary artery with similar potency.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Cystometric changes in the early phase of streptozotocin-induced diabetes in rats: evidence for sensory changes not correlated to diabetic neuropathy.

The effect of streptozotocin (STZ) induced diabetes on rat urinary bladder function was investigated by means of 'in vivo' cystometry and 'in vitro' recording of bladder strips contractility. A group of sucrose-fed animals was included to determine to what extent the STZ-induced changes were ascribable to the increased diuresis. After 7-9 weeks from STZ injection there was a marked increase in weight of bladder and ureters. Cystometry revealed a marked increase in bladder capacity (volume threshold) although pressure threshold and amplitude of micturition contraction were unaffected. Sucrose-fed animals, having normal blood glucose levels but a similar increase in urine production exhibited cystometric changes identical to those of STZ animals. 'In vitro' experiments indicated that the response to field stimulation (0.1-20 Hz) is reduced in STZ-pretreated but increased in sucrose-fed animals, as compared to controls. The content of urinary bladder and ureters in sensory neuropeptides (substance-P, neurokinin-A and calcitonin-gene related peptide-like immunoreactivity) was increased by STZ diabetes when values were corrected for the increased weight of these organs. The capsaicin-induced contraction of the rat isolated bladder strips, presumably caused by neuropeptides released from intramural sensory nerves, is unaffected by STZ diabetes. These findings indicate that STZ diabetes produces, at an early stage, changes similar to those reported to occur in the human disease, e.g. a greater bladder capacity with unimpaired voiding function. The increased bladder capacity of STZ-rats seems largely, if not solely, ascribable to changes in physical properties of the detrusor muscle, thereby allowing accommodation of greater than normal volumes with similar increase of intraluminal pressure.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Antidromic vasodilatation in the rat hindpaw measured by laser Doppler flowmetry: pharmacological modulation.

Antidromic vasodilatation in the hindpaw skin of rats was studied by laser Doppler flowmetry (LDF). Antidromic stimulation of the saphenous nerve (10 V, 1 ms, 2 Hz, 15 s) increased LDF readings more than two-fold. This increase was abolished by acute nerve section, local lidocain or local 1% capsaicin, augmented by guanethidine (20 mg/kg) and unaffected by atropine (1 mg/kg). While mepyramine plus cimetidine (10 mg/kg each) reduced basal LDF readings, they did not change the percent increase after stimulation. [D-Met2, Pro5] enkephalinamide (3 mg/kg) caused a naloxone-reversible inhibition of the stimulation-induced increase. Lofentanil (10 micrograms/kg i.v.) also caused an inhibition but this was associated with a marked fall in blood pressure. These results indicate that LDF is a suitable non-invasive method for the indirect measurement of antidromic vasodilatation in rat skin. While opiates appear to inhibit the release of the neurogenic vasoactive mediator(s), histamine is unlikely to be involved in the rapid vasodilator response following antidromic sensory nerve stimulation.

Adrenergic Fibers↗

[New aspects of the autonomic innervation of human nasal mucosa].

The neuropeptide Substance-P (SP) was found in clinically normal and chronically inflamed hyperplastic human nasal mucosa. SP is the transmitter substance in afferent neurons and causes oedema, as animal experiments have shown, via local and central reflexes as well as vasodilation, smooth muscle contraction and glandular hypersecretion. The study proved the existence of peptidergic nerve fibres besides adrenergic and cholinergic fibres in human nasal mucosa. The result of the study and its presumable pathophysiological meaning is discussed.

Acetylcholine↗

Several mediators appear to interact in neurogenic inflammation.

Plasma protein extravasation was studied in the rat abdominal skin. Substance P (SP), neurokinin A (NKA) and B (NKB) were found to induce extravasation with a threshold dose of about 1 pmol. Calcitonin gene-related peptide (CGRP) caused no or little extravasation alone but it potentiated the action of SP, NKA, NKB, and physalaemin. The potentiation of the SP-induced extravasation was unaffected by pretreatment with capsaicin, indomethacin or compound 48/80, it was reduced by neuropeptide Y or pretreatment with mepyramine plus cimetidine, and was abolished in streptozotocin diabetic rats. CGRP augmented extravasation induced by histamine, reduced the effect of ATP or adenosine and did not alter extravasation by serotonin, bradykinin or neurotensin. These results indicate that in addition to SP the novel mammalian tachykinins NKA and NKB may be considered as mediator candidates for neurogenic plasma extravasation. CGRP is a possible mediator of antidromic vasodilation. Furthermore, CGRP potentiates the extravasation caused by coexisting tachykinins and could thereby augment neurogenic inflammation. The diverse interactions of CGRP with other inflammatory mediators suggest multiple sites of action.

Animals↗

Coexisting peptides in capsaicin-sensitive sensory neurons: release and actions in the respiratory tract of the guinea-pig.

Release of substance P (SP) and neurokinin A (NKA), was demonstrated in the isolated perfused guinea-pig lung. Significant release was obtained by perfusion with capsaicin, high potassium, histamine, bradykinin dimethylphenylpiperazinium, and by electrical vagal nerve stimulation. Capsaicin-induced peptide release was not blocked by 1 microM clonidine. SP and NKA contracted respiratory smooth muscle, NKA being 42 times more potent. Both tachykinins were equipotent in relaxing pulmonary artery. It is concluded that multiple tachykinin can be released from capsaicin-sensitive sensory nerves in the respiratory tract, exerting multiple effects on the target tissues.

Animals↗

[Changes in nasal volume flow following local administration of neuropeptide substance P and capsaicin].

In a recently published paper, the author discovered the neuropeptide Substance-P (SP) in human nasal mucosa. SP is the transmitter substance of sensory neurons in the central and peripheral nervous system. The influence of SP and CAPSAICIN on the vascular system of human nasal mucosa is investigated. The application of these substances on the nasal mucosa of volunteers leads to a significant decrease of nasal air flow which can be registered by anterior rhinomanometry. The pathogenetic importance of vascular protein leakage and vasodilatation caused by the neuropeptide SP is discussed.

Capsaicin↗