Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0018681 (headache)
56,091 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

A 17-year-old women received 12,000 rads of alpha-particle radiation for the treatment of Cushing's disease. One day after the completion of therapy, the patient developed nausea, vomiting, headache, and postural hypotension. Laboratory evaluation demonstrated a marked fall of the previously elevated urinary 17-hydroxycorticosteroids (17-OHCS) and undetectable plasma cortisols. The urinary 17-OHCS transiently returned to supranormal levels but over a 2 1/2-week period decreased and then remained low. The patient also demonstrated a subnormal urinary aldosterone excretion in relation to plasma renin activity (PRA) during 10 mEq/24 h sodium restriction. The remainder of the endocrine evaluation was normal, suggesting that pituitary function otherwise remained intact. One and one-half years after alpha-particle therapy, the patients's urinary 17-OHCS were normal and responded normally to metyrapone. The relationship between urinary aldosterone excretion and PRA also was normal. It is postulated that there was an infarction of an ACTH secreting pituitary tumor leaving the remainder of the pituitary intact. Achronically elevated circulating level of ACTH with sudden loss of ACTH secretion appeared to have been responsible for the initial low urinary aldosterone as well as the low urinary 17-OHCS. This is the first reported case of a presumed pituitary tumor infarction in association with alpha-particle pituitary radiation.
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PMID:Rapid appearance of transient secondary adrenocortical insufficiency after alpha-particle radiation therapy for Cushing's disease. 18 95

With advancing age blood pressure rises in most populations with the exception of some isolated tribes. In western countries 30 to 40% of the people above the age of 60 years have casual blood pressure levels greater than or equal to 160/95 mm Hg. Advancing age per se produces a number of physiological changes related to blood pressure, such as a decrease in cardiac output, an increase in peripheral vascular resistance and a decrease in plasma renin-angiotensin-aldosterone levels. The mechanism causing the elevation in pressure with age are unknown though increased rigidity of the great vessels contributes to the rise in systolic pressure. There is a decline in the sensitivity of the baroreceptor reflex, but the contribution of this to the elevation of pressure has not be elucidated. Elderly patients with uncomplicated essential hypertension have a low cardiac output and high peripheral vascular resistance. The rise in blood pressure is associated with an increased cardiovascular morbidity and mortality even in the elderly hypertensives. The available data on the efficacy of hypotensive treatment in the elderly is scanty. There are no data proving that hypotensive therapy prolongs life. Controlled studies on the prevention of organ damage especially cerebrovascular accidents are inconclusive, showing either a significant decrease or no effect. Isolated reports illustrate, however, that drastic blood pressure reduction can provoke serious side effects, thus decreasing the quality of life. Hypotensive treatment is indicated in elderly hypertensive patients with hypertensive retinopathy grade III or IV, congestive heart failure or cerebral haemorrhage, in elderly patients with a markedly elevated diastolic blood pressure (greater than or equal to 120 mm Hg) and a trial of hypotensive therapy should be offered in milder forms of hypertension when it is accompanied by certain specific symptoms such as angina, headache and dyspnoe. The management of elderly hypertensive patients is more difficult than in the young. General measures are often not well accepted. The dose adjustment of the hypotensive agent is more critical and volume depletion or orthostatic hypotension are more likely to occur.
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PMID:Aging and the cardiovascular system. 37 49

In a 31-year old woman with a six year history of headache and hypertension a diagnosis of primary aldosteronism was made on the basis of urine samples containing 45 mug/day of aldosterone. The preoperative systemic blood pressure was 240 mm Hg systolic and 120 mm Hg diastolic. The serum potassium level was 2.6 mEq/L and other laboratory findings were within normal limits. The patient was to undergo operation. Pre-medication consisted of oral pentobarbitone, intramuscular pethidine and atropine. For induction of anaesthesia, enflurane 2.0-2.5% maximum was given with O2 (21/min) and N2O (61/min); no intravenous agents were used. Suxamethonium chloride 40 mg was administered to facilitate endotracheal intubation. Anaesthesia was maintained with enflurane 1.5-2.0% with 50% N2O and O2. Tubocurarine 27 mg was given for muscle relaxation. When the tumour was manipulated, systemic arterial blood pressure was elevated again to 190 mm Hg systolic and 120 mm Hg diastolic. After removal of the tumour, the arterial pressure and heart rate were stable and recovery from anaesthesia was without circulatory or respiratory complications. Plasma aldosterone levels reached a maximum when the tumour was manipulated and fell to normal levels on the second post-operative day. Cortisol levels were not altered markedly even when the tumour was handled. These data imply that adrenocortical response to enflurane anaesthesia as jadged by plasma aldosterone levels would be different from that as estimated by plasma cortisol levels.
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PMID:Enflurane anaesthesia for removal of aldosterone producing adenoma. 126 18

A 16-year-old girl was admitted with the complaints of headache, chest pain, low abdominal pain and left hemi-numbness. Her blood pressure was high and plasma renin activity and aldosterone levels were elevated. Renal angiography revealed vascular stenoses and microaneurysms although the renal artery and its main branches were not involved. Polyarteritis nodosa (PN) was strongly suspected and oral prednisolone and intravenous pulse therapy of cyclophosphamide were started. The second renal angiography which was performed 11 days after the therapy was started, showed marked improvement of vascular lesions. This is a case which suggests that the angiographic findings of PN can improve very rapidly with therapy.
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PMID:A young female case of polyarteritis nodosa strongly suspected by typical angiographic findings which improved rapidly after prednisolone and cyclophosphamide therapy. 135 68

We studied the effects of nifedipine on blood pressure and on clinical and analytical parameters in hypertensive patients. Seven male and eight female subjects (mean age of 46.27 +/- 5.38 years, range of 41-56 years) with essential arterial hypertension were given nifedipine (20 mg b.i.d.) for 3 months. Before and after treatment, history, blood pressure, and biochemical values were recorded [blood: Na, K, Ca, creatinine, uric acid, triglycerides, cholesterol, HDL cholesterol, antidiuretic hormone (ADH), and aldosterone; urine: Na, K, Ca, creatinine, ADH, aldosterone, and percentage fraction of Na, K, and Ca excreted]. After 3 months of treatment, we found (a) significant decreases in systolic (147 +/- 18 vs. 166 +/- 16 mm Hg, p less than 0.001) and diastolic blood pressure (90 +/- 8 vs. 107 +/- 8 mm Hg, p less than 0.0007), triglycerides (107 +/- 47 vs. 120 +/- 49 mg/dl, p less than 0.0007), and cholesterol (236 +/- 4 vs. 257 +/- 44 mg/dl, p less than 0.00075) in blood, and in K excretion (50 +/- 19 vs. 46 +/- 19 mEq/g of creatinine, p less than 0.0007) and excreted fraction of K (49 +/- 6% vs. 8 +/- 5%, p less than 0.0012) in urine; (b) significant increases in HDL cholesterol (65 +/- 13 vs. 58 +/- 13 mg/dl, p less than 0.001) in blood, and in Na (115 +/- 73 vs. 109 +/- 69 mEq/g of creatinine, p less than 0.0007) in urine; and (c) no significant change in the remaining biochemical parameters, or in heart rate. Secondary effects included flushing (34%), headache (20%), ankle swelling (17%), dizziness (13%), palpitations (4%), and pruritus (4%).(ABSTRACT TRUNCATED AT 250 WORDS)
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PMID:Metabolic and antihypertensive effects of nifedipine in hypertensive patients. 137 8

From 1975 to 1989, 52 patients with primary aldosteronism underwent adrenalectomy. There were 16 men and 36 women. The average age was 42.5 years, ranging from 28 years to 70 years. They were all hypertensive, with average pre-operative diastolic pressures varying from 105 to 140 mm Hg (median 117 mm Hg). The subjective symptoms most frequently reported were headache (71%) and asthenia (53%). In all patients except two, serum potassium concentration was 3.3 mEq/L (median 2.7 mEq/L) at the time of diagnosis. Plasma aldosterone concentration was elevated in all patients, 48 +/- 5.3 ng/mL in the recumbent position and 52.6 +/- 6.0 ng/mL in the upright position. The operations carried out were 50 unilateral and 2 bilateral adrenalectomies. In 4 patients a transperitoneal approach was employed and in the remaining 48 patients an extraperitoneal flank incision was used. The histological findings were 47 adenomas (with dimension ranging from 1 to 4.5 cm), unilateral macronodular hyperplasia in 2 patients, an adenoma plus controlateral hyperplasia in 1 patient, bilateral hyperplasia in 1 patient, and unilateral hyperplasia in 1 patient. After long-term follow-up (median 77 months, range 13 to 189 months), 15 patients remained hypertensive (diastolic blood pressure up to 100 mm Hg). In 9 of these patients the hypertensive illness had been present for more than 5 years prior to operation. In the remaining 37 (71%) patients, the arterial pressure returned to normal and in almost half of the patients this result was evident one or two days after operation.
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PMID:Adrenalectomy in primary aldosteronism: a long-term follow-up study in 52 patients. 141 36

Cardiac pains related to estrogen therapy for prostatic cancer (PC) emerged in 53% of treated patients with ischemic heart disease (IHD). The pain complaints were associated with impairment of coronary circulation in 48% of cases. This clinical condition is attributed to elevated STH levels and a trend to hypercorticism. In hypertensive PC patients estrogens provoked more frequent and severe headaches which occurred at initial stages of the treatment in 23% and after 1-year administration of hormones in 44% of patients. Hypertensive reactions may be caused by aldosterone and prolactin hyperproduction. Observation of the therapist and endocrinologist can help to prevent complications in IHD patients with PC.
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PMID:[Changes in hormonal homeostasis and development of disorders of the cardiovascular system in patients with prostatic cancer on estrogen therapy]. 172 22

Co-dergocrine mesylate (Cod), which inhibits norepinephrine secretion by stimulating presynaptic dopamine receptors, and has no known metabolic side effect, has an additive antihypertensive effect to that of Nifedipine (Nif). Plasma norepinephrine, epinephrine, renin activity and aldosterone have been measured after acute administration of Nif and Cod alone and in combination to 18 patients with a diastolic blood pressure greater than 105 mmHg in a cross-over, randomized, double-blind study. Every patient received 4 mg Cod then 20 mg Nif, placebo then 20 mg Nif and 4 mg Cod then placebo. The second treatment was always given 1 h after the first medication. Blood pressure was measured before and every 15 min during the study period. Blood for measurement of catecholamines, aldosterone and renin activity was collected before medication, 1 h after the first dose and 90 min after the second treatment. Blood pressure was significantly lower (P less than 0.05) where Cod preceded Nif. Cod caused a significant decrease in plasma norepinephrine from 293 to 202 pg.ml-1 and in epinephrine from 67 to 55 pg.ml-1. The Nif-induced increase in norepinephrine from a pre-treatment value of 293 pg.ml-1 with preceding Cod to 331 pg.ml-1 was much less than the increase with placebo as premedication, from 284 to 440 pg.ml-1. Nif caused an increase in renin activity but no increase in aldosterone. Nif-related side effects, such as flushing and headache, occurred in 6 patients of whom 5 had no received Cod as premedication.(ABSTRACT TRUNCATED AT 250 WORDS)
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PMID:Co-dergocrine mesylate inhibits the increase in plasma catecholamines caused by nifedipine in essential hypertension. 207 34

We performed an epidemiological study on the atrial natriuretic factor pattern in a young population. Subjects were recruited in the Ospedale Militare Principale of Rome among young men liable to conscription, whose hospitalization was due either to essential hypertension or to other pathologies (not influencing our study, such as headache etc.). The recruitment lead to the formation of three different groups: normotensives, normotensives with family history of hypertension (mother and/or father) and hypertensives. On the morning of the study (after 7 days of pharmacological wash-out, under a diet containing 120 mEq of Na+/die), blood samples were taken. Plasma atrial natriuretic factor, renin activity and aldosterone were assayed by RIA. Digoxin-like immunoreactive substance was assayed by a solid-phase radioimmunoassay, following the extraction of plasma. Serum creatinine, sodium, potassium and urinary sodium and potassium (24 h before the study) were assayed by standard methods. Urinary kallikrein was assayed by chromogenic substrate S-2266. So far, we have studied 60 subjects (26 hypertensives, 21 normotensives and 13 normotensives with family history) and we wish to discuss in this article the preliminary results concerning the atrial natriuretic factor and its relationship with renin activity, aldosterone and blood pressure. Our results show that the mean plasma levels of atrial natriuretic factor in the hypertensive group were higher, although not significantly, than those of the other two groups and that the normotensives with family history had slightly higher levels as compared to normotensives (Delta % = + 7.4).(ABSTRACT TRUNCATED AT 250 WORDS)
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PMID:[Atrial natriuretic factor: an epidemiological study. Preliminary results]. 252 19

The specific competitive alpha 1-postsynaptic blocking action and haemodynamic effects of prazosin (Minipress) have been summarized. Prazosin causes dilatation of arterioles and veins, reduces total peripheral resistance as well as preload and afterload. Cardiac output does not change at rest, stroke volume and subsequent cardiac output increase during exercise. The changes in heart rate have non-significant. It does not cause sympathetic counter-regulation, plasma renin activity does not increase, aldosterone level decreases, salt- and fluid retention may rarely be observed. It does not provoke angina. The authors report on the results of their examinations with the first dose of prazosin in 61 patients (in 33 cases by the double-blind cross-over method by placebo control), and summarize the observations made with the drug in long-term treatment in Hungary. The authors and other teams used prazosin as a long-term treatment (of approximately 3 months) in combination with other drugs in a total of 344 patients, and as monotherapy in 159 patients. In the course of combination treatment side-effects were observed in 15% of the patients (dizziness, headache, weakness, occasionally palpitation). During monotherapy, side-effects occurred in 12% of the patients (tachycardia, headache, weakness, dizziness). Hungarian results confirm the usefulness of prazosin in all stages of hypertension. It is effective in 30-35% of the cases as a monotherapy (this rate is congruent with the efficacy of beta-blockers, calcium antagonists and antihypertensive drugs of central action). Earlier prazosin had been used as a third agent in combination treatment of hypertension.(ABSTRACT TRUNCATED AT 250 WORDS)
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PMID:The mechanism of the action of Minipress. Examinations in hypertension. 257 64


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