Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0020538 (hypertension)
170,190 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

A patient with a ganglioneuroblastoma secreting both noradrenaline and vasoactive intestinal peptide is described. Their vasoactive effects are antagonistic and pre-operatively the patient was normotensive. Manipulation of the tumour provoked hypertension and after excision marked hypotension occurred which responded to the administration of metaraminol and blood. This case emphasises the need for thorough investigation of patients with amine or peptide-secreting tumours which have atypical features.
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PMID:Adrenal tumour secreting vasoactive intestinal peptide and noradrenaline. 59 87

A variety of vasoactive substances including biogenic amines, neuropeptide Y, somatostatin, enkephalin, ACTH, corticotropin-releasing hormone, growth hormone releasing hormone, vasoactive intestinal peptide, calcitonin, and atrial natriuretic factor have been extracted from intra-adrenal and extra-adrenal pheochromocytomas in men. Some of them appear to play an important role for the development of hypertension or clinical serious symptoms. However, informations on the molecular forms of other substances in pheochromocytomas are still limited, and precise amount of the peptides or hormones in the tumors has not yet been quantitated. Numerous in vitro or in vivo studies of this documented neoplasm over the years have been reviewed in this manuscript. Clinical analyses of early diagnosis, localization diagnosis, treatment of multiple endocrine neoplasia, preoperative and operative treatments are also evaluated in this paper. These informations will probably provide additional evidence for the multi-secretory APUD cells of neural crest origin and will contribute the therapy in patients with pheochromocytoma.
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PMID:[Pheochromocytoma--basic and clinical analyses]. 134 92

Xerostomia, the subjective feeling of dry mouth, affects millions of people particularly the elderly. It is invariably associated with hypofunction of the salivary glands. The amount, rate of secretion, and composition of saliva are regulated by both sympathetic and parasympathetic receptor systems whose stimulation transmits signals through intracellular messengers (cations, nucleotides, phospholipid derivatives) to structures and enzymes within the cell. Salivary glands express a variety of cell-surface receptors including adrenergic (alpha and beta), muscarinic-cholinergic, substance P, vasoactive intestinal peptide hormone, and ATP receptors. Ascorbate which is present in salivary acinar cells in relatively high concentrations, is closely involved in many cellular functions including the metabolism of pyrimidines, intracellular calcium, the catecholamines and other neurotransmitters which regulate salivary gland exocytosis. Ascorbate-dependent carboxyl-terminal peptide alpha-amidation enzyme similar to the pituitary peptidyl-glycine alpha-amidating monooxygase, is also present in salivary glands. It is therefore not fortuitous that the seemingly unrelated numerous factors like aging, drug ingestion, pregnancy, smoking, ionizing radiation, stress, and various pathological states such as cancer, autoimmune disorders, diabetes mellitus, and hypertension often implicated in the causation of xerostomia, all promote increased tissue requirement for and/or depletion of ascorbate.
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PMID:Ascorbate status and xerostomia. 143 93

Little is known about perivascular neuropeptides in hypertension in man. In this study we investigated the circulating levels of calcitonin gene-related peptide (CGRP)-, substance P- and vasoactive intestinal peptide-like immunoreactivity in 30 patients with severe hypertension before and after treatment for high blood pressure. Circulating levels of CGRP- and substance P-like immunoreactivity in the hypertensives were significantly different from the corresponding levels in 31 age- and sex-matched normotensive subjects. After normalization of blood pressure the mean levels of CGRP- and substance P-like immunoreactivity did not differ between the two groups. The levels of vasoactive intestinal peptide-like immunoreactivity remained unchanged. These observations suggest that vascular afferent nerves play a part in the maintenance of hypertension.
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PMID:Circulating perivascular dilatory neuropeptides in hypertension. 248 31

The occurrence and distribution of peptide-containing nerve fibers to the cerebral circulation are described. Immunocytochemical studies have revealed that cerebral blood vessels are invested with nerve fibers containing neuropeptide Y (NPY), vasoactive intestinal peptide (VIP), peptide histidine isoleucine (PHI), substance P (SP), neurokinin A (NKA), and calcitonin gene-related peptide (CGRP). In addition, there are studies reporting the occurrence of putative neurotransmitters such as cholecystokinin, dynorphin B, galanin, gastrin releasing peptide, vasopressin, neurotensin, and somatostatin. The nerves occur as a longitudinally oriented network around large cerebral arteries. There is often a richer supply of nerve fibers around arteries than veins. The origin of these nerve fibers has been studied by retrograde tracing and denervation experiments. These techniques, in combination with immunocytochemistry, have revealed a rather extensive innervation pattern. Several ganglia, such as the superior cervical ganglion, the sphenopalatine ganglion, the otic ganglion, and small local ganglia at the base of the skull, contribute to the innervation. Sensory fibers seem to derive from the trigeminal ganglion, the jugular-nodose ganglionic complex, and from dorsal root ganglia at level C2. The noradrenergic and most of the NPY fibers derive from the superior cervical ganglion. A minor population of the NPY-containing fibers contains VIP instead of NA and emanates from the sphenopalatine ganglion. The cholinergic and the VIP-containing fibers derive from the sphenopalatine ganglion, the otic ganglion, and from small local ganglia at the base of the skull. Most of the SP-, NKA-, and CGRP-containing fibers derive from the trigeminal ganglion. Minor contributions may emanate from the jugular-nodose ganglionic complex and from the spinal dorsal root ganglia. NPY is a potent vasoconstrictor in vitro and in situ. VIP, PHI, SP, NKA, and CGRP act via different mechanisms to induce cerebrovascular dilatation. The sympathetic, the parasympathetic, and the sensory systems appear to be involved in modulating cerebrovascular tone in hypertension and in conditions of threatening vasoconstriction, e.g., subarachnoid hemorrhage and migraine.
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PMID:Neuropeptides in the cerebral circulation. 270 77

A 3 year old Chinese girl with watery diarrhoea, abdominal distension and hypokalaemia due to a thoracic paraspinal vasoactive intestinal peptide (VIP) secreting ganglioneuroma is reported. The pre-operative serum VIP was 314 pmol/l (normal less than 30). Her diarrhoea stopped after the removal of the tumour. The VIP was 14 pmol/l 6 months post-operatively. Review of the 19 reported cases in children with documented elevated serum VIP showed that many of the cases presented with watery diarrhoea for prolonged duration before the diagnosis was made. Earliest age of onset was 2 weeks of age. The male to female ratio was 9:10. Ganglioneuroma and ganglioneuroblastoma were the commonest tumours. Pancreatic non-beta cell hyperplasia and neurofibroma were also reported. Location of the tumour was variable: neck, chest or abdomen. Increased urinary catecholamine excretion was reported in 50% of the cases. Abdominal distension, flushing, episodic hypertension and failure to thrive were the other associated features.
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PMID:Vasoactive intestinal peptide secreting tumours in children: a case report with literature review. 283 14

Dispersed cells from the submandibular gland of the male rat were prepared by collagenase treatment to study the mechanism by which immunoreactive tonin is secreted in vitro. Norepinephrine, epinephrine, and phenylephrine stimulated tonin release, an effect that was inhibited by phentolamine but not by propranolol, whereas isoproterenol, carbachol, histamine, and serotonin did not stimulate tonin release. The stimulatory effect elicited by alpha-adrenergic agonists was inhibited by both removal of Ca2+ from the medium and addition of diltiazem and nifedipine, both selective calcium channel blockers. The divalent cation ionophore A23187 stimulated tonin release in the presence of Ca2+, but not in the presence of Mg2+. Dibutyryl cyclic adenosine 3',5'-monophosphate, methylisobutylxanthine, angiotensin II, and vasoactive intestinal peptide had no effect on tonin release. The apparent molecular size of immunoreactive tonin released into the medium under basal and norepinephrine-stimulated conditions was similar to that of standard tonin by gel exclusion chromatography. These data suggest that the in vitro secretion of immunoreactive tonin from rat submandibular gland is initiated by activation of alpha-adrenergic receptors and apparently involves a mechanism dependent not on cyclic adenosine 3',5'-monophosphate, but on the influx of extracellular Ca2+.
Hypertension 1986 Oct
PMID:In vitro secretion of immunoreactive tonin from dispersed rat submandibular gland cells. 301 87

1. Spontaneously hypertensive rats (SHR) are useful for investigating the possible pathophysiological and neurochemical basis of human essential hypertension. 2. The accepted pathogenic mechanism of hypertension in SHR is an increased central sympathetic drive which results in an increased peripheral resistance. 3. The neurochemical basis of the increased sympathetic drive is unknown. The observation that there are reduced levels of neuropeptides (vasoactive intestinal peptide, neuropeptide Y, cholecystokinin octapeptide, neurotensin and calcitonin gene related peptide) in the spinal cord in SHR rats compared with age and gender matched Wistar-Kyoto normotensive rats could provide a basis for understanding the mechanism of hypertension in SHR.
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PMID:Altered levels of neuropeptides in the medulla and spinal cord of spontaneously hypertensive rats. 307 73

A 2-year-old boy with failure to thrive, watery diarrhea, abdominal distention, hypokalemia, metabolic acidosis, and episodes of hypertension and sweating was found to have a calcified right lower quadrant mass. Blood levels of vasoactive intestinal peptide (VIP) and norepinephrine (NE) were elevated. Presurgical management with phenoxybenzamine hydrochloride and metyrosine was associated with an absence of expected postoperative hypotension, and resection of a benign ganglioneuroma resulted in prompt relief of all symptoms and return to normal of VIP and NE levels. Evidence supports the theory that VIP is the substance responsible for the diarrhea that accompanies some neural crest tumors.
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PMID:Vasoactive intestinal peptide secreting tumors of childhood. 610 Dec 97

Polypeptides are endogenous agents, involved in the regulation of many physiologic functions and the pathogenesis of several diseases. Polypeptide antagonists form a group of new chemical entities which may provide valid therapeutic agents. Some polypeptides (angiotensin, kinins) are released through the action of proteolytic enzymes (renin, kallikreins) and act as hormones or autacoids; others (substance P, neurotensin) are synthetized by nervous cells to serve as neurotransmitters or neuromodulators. The main homeostatic role of the renin-angiotensin system is to uphold high systemic arterial blood pressure. Overproduction of renin and insufficient checking of renin secretion are among the most common causes of arterial hypertension. Several forms of arterial hypertension (neurovascular, idiopathic) benefit from a reduction in renin-angiotensin system activity. This is achieved either through decreasing renin secretion, by inhibiting conversion of angiotensin I into angiotensin II, or through blocking the peripheral actions (at the receptor sites) of angiotensin II. Renin secretion is very significantly reduced by beta-blocking agents (propranolol); conversion of angiotensin I into angiotensin II is inhibited by teprotide, captopril and their derivatives; peripheral actions of angiotensin II are blocked by saralasin. Bradykinin and related agents produce vasodilation, increase vascular permeability and stimulate pain fibers. Kinins thus reproduce the cardinal features of inflammation and are held to be mediators of the inflammatory reaction. The substance P neuropeptide is found in the brain and bowel; it may act as a transmitter of the sensation of pain at the spinal cord and central nervous system sites. Among other effects outside of the brain, substance P is a potent vasodilator and inhibits renin secretion. Neurotensin is a neuropeptide which produces hypothermia, muscular relaxation and analgesia. Outside of the brain, this peptide is involved in the regulation of gastric secretion, intestinal motility and insulin and glucagon secretion. The vasoactive intestinal peptide, found in certain cholinergic nerve endings, is a large peptide which inhibits gastric secretion, intestinal motility and vascular tone.
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PMID:[Polypeptides and antagonists]. 620 6


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