Accidental transplantation of malignant tumor from a donor to multiple recipients.
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Biomedical subjects
Publications and source records attributed to M Morris.
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1. Plasma concentrations of atrial natriuretic peptide (ANP) and antidiuretic hormone (ADH) were measured in conscious stroke-prone spontaneously hypertensive (SPR), spontaneously hypertensive (SHR) and normotensive Wistar-Kyoto (WKY) rats before and after acute volume expansion or haemorrhage. 2. Plasma ANP concentration was reduced to one-third of resting values 30 min after a 1.5% haemorrhage (1.5 ml of blood per 100 g bodyweight). Plasma ADH concentration rose immediately 50-fold on haemorrhage and remained elevated at 30 min. 3. Plasma ANP concentration increased 2.5-fold relative to resting values 1 min after infusion of 2.0 ml per 100 g 5% dextrose; after 10 min plasma ANP remained elevated. Plasma ADH concentration tended to fall on volume expansion although no significant decrease was observed. 4. There was no difference in the basal levels of ANP and ADH, or in the changes produced by alterations in blood volume, in hypertensive SPR and SHR compared with normotensive WKY. 5. Thus, plasma ANP concentrations moved in opposite directions in response to two physiological stimuli: volume expansion and haemorrhage. Reciprocal changes were observed in plasma ADH.
Activation of neurons arising in the rostral ventrolateral medulla evokes a pressor response in the rat and the rabbit. This region of the medulla gives rise to bulbospinal neurons containing many different neurotransmitters, including amines such as adrenaline, noradrenaline and serotonin, and neuropeptides such as substance P and neuropeptide Y. Colocalization of amines and neuropeptides has been described in some neurons descending from the rostral ventrolateral medulla. In this paper we discuss the evidence that bulbospinal serotonin-containing neurons (B3) and adrenaline-containing neurons (C1) arising from this part of the medulla exert pressor effects by distinct central pathways and conclude that they do. We also consider the possibility that the pressor effects of activating these two groups of neurons are associated with release of neuropeptides and highlight evidence that substance P is released into the spinal cord by activation of descending serotonin-containing neurons, while neuropeptide Y may be released by activation of bulbospinal adrenaline-containing neurons.
We investigated the effect of arterial baroreceptor deafferentation on serum and pituitary prolactin (PRL) and on catecholamines in median eminence (ME) and anterior and posterior pituitaries. Male Wistar rats were sinoaortic denervated (SAD) or sham operated (SO). Three days after surgery serum prolactin, measured by radioimmunoassay, was suppressed in SAD rats (-54%, P less than 0.05), and dopamine (DA) and norepinephrine (NE) concentrations, measured by radioenzymatic or high-performance liquid chromatography electron capture methods, were significantly reduced in ME of SAD rats (NE, -54% P less than 0.005 and DA, -56% P less than 0.001). Simultaneously, anterior pituitary of SAD rats had significant increases in both catecholamines, whereas posterior pituitary showed no changes. Four hours after surgery serum PRL was also reduced (-40%, P less than 0.05) in SAD rats, but no changes in ME catecholamines were found. Mean arterial pressure (MAP) and heart rate were measured before and after injection of bromocriptine (0.5 mg/kg ip) in SAD and SO rats 3 days after surgery. Bromocriptine markedly suppressed serum PRL in both groups and reduced MAP from 144 +/- 10 to 84 +/- 5 and from 116 +/- 2 to 99 +/- 3 in SAD and SO rats, respectively; heart rate was reduced in SAD rats. We conclude that the SAD rat is a model of hypertension with suppressed serum PRL and that interruption of arterial baroreceptor nerves suppresses PRL secretion probably by modulating tuberoinfundibular turnover of catecholamines.
We compared the cardiovascular and hormonal responses to angiotensin converting enzyme inhibition and hemorrhage of 20% of blood volume in chronically instrumented unanesthetized newborn lambs and adult sheep. Administration of the nonsulfhydryl-containing converting-enzyme inhibitor enalapril reduced mean arterial pressure in the newborn but not in the adult animals. Blood pressure fell in both age groups after hemorrhage, and the hemorrhage-induced fall in blood pressure, integrated over the period of hypovolemia, was more pronounced when converting-enzyme inhibition was present in the lambs. This was not observed in the adults. Cardiac output fell following hemorrhage in both age groups, and the fall was greater when enalapril was present in the lambs, but this was not the case in the adults. Hemorrhage increased plasma renin activity in both groups, and enalapril augmented this increase. Plasma concentrations of vasopressin and catecholamines increased following hemorrhage within and between groups. Taken together these data suggest that the renin-angiotensin system plays a more important role in the maintenance of cardiovascular homeostasis in newborn lambs than it does in adult sheep, and catecholamine and vasopressin responses to volume loss can occur in the presence of blockade of the renin-angiotensin system.
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We have used a sensitive direct radioimmunoassay to study the effects of exercise on plasma atrial natriuretic peptide (ANP) concentrations in man. Plasma ANP concentration increased three-fold in sixteen patients undergoing bicycle ergometer electrocardiographic tests for the investigation of chest pain. Resting ANP concentrations were higher in those patients in whom there was more evidence of heart disease, such as a positive exercise test, treatment with a beta blocker or history of myocardial infarction, although exercise resulted in increased ANP in both groups. We also confirm the increased plasma ANP concentration observed in patients with congestive cardiac failure and renal failure. In nine patients with renal failure routine haemodialysis was accompanied by a 30 per cent reduction in plasma ANP concentration. Plasma ANP concentrations were similar in treated hypertensive patients, untreated borderline hypertensive patients and normotensive subjects.
5 min exposure of inbred Maudsley Reactive male rats to intermittent foot-shock resulted in an approximate doubling of plasma atrial natriuretic peptides ANP (Control grp mean = 62.12 +/- 8.74; Stressed grp mean = 128.70 +/- 26.63 pg/ml) and 25 min exposure resulted in a three-fold increase (Stressed grp mean = 187.88 +/- 39.24 pg/ml). In the second experiment exposure of genetically heterogeneous Wistar male rats to 15 min of intermittent foot-shock produced a 10-fold increase in plasma ANP (Control grp mean = 45.76 +/- 6.05; Stressed grp mean = 471.20 +/- 58.49 pg/ml). The magnitude of the increase in plasma ANP produced by acute stress is as large as the increase caused by volume expansion and administration of various pharmacological agents and therefore delineation of biological role of ANP must take account of its potential role as a stress-hormone.
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It is often difficult to differentiate between an exacerbation of systemic lupus erythematosus (SLE) and intercurrent pre-eclampsia in a patient with SLE since the manifestations of both entities include proteinuria and hypertension. This study was undertaken to determine wether serum C3 and C4 values can help distinguish SLE activity from pre-eclampsia. In 21 nonpregnant women of child-bearing age, the mean C3 level was 124 +/- 5 mg/dl and the mean C4 was 31 +/- 1 mg/dl. In 24 normal women in the third trimester of pregnancy, the C3 and C4 levels were elevated (165 +/- 4 mg/dl, p less than 0.001 versus nonpregnant control women; 37 +/- 2 mg/dl, p less than 0.01 versus nonpregnant control women, respectively). In 17 women in the third trimester of pregnancy with documented pre-eclampsia, the mean C3 level was 162 +/- 4 mg/dl, no different from that in normal pregnant women (p less than 0.001 versus nonpregnant control women; p = NS versus normal pregnant women), and the mean C4 was 29 +/- 3 mg/dl, lower than that found in normal pregnant women (p less than 0.02 versus normal pregnant women). Antinuclear antibody was absent at titers of less than 1:20 in all of these pre-eclamptic patients. In contrast, pregnant women with SLE has significantly lower C3 (103 +/- 13 mg/dl) and C4 (15.3 +/- 3.6 mg/dl) values during the third trimester of pregnancy than either normal pregnant women (p less than 0.001 for C3 and C4) or women with pre-eclampsia (p less than 0.001 for C3 and p less than 0.004 for C4) during the third trimester of pregnancy. Of the eight women with SLE in whom serial complement values were determined, three had falling C3 or C4 levels, and in each, there was a flare of SLE activity either during or immediately after pregnancy. None of the five patients with a rising C3 concentration had a flare of disease activity; however, pre-eclampsia developed in one of these patients, characterized by hypertension and proteinuria. Thus, measurement of serum C3 and C4 can help differentiate between SLE activity and pre-eclampsia, since both C3 and C4 are significantly lower in women with SLE than women with pre-eclampsia, and serum C3 and C4 concentrations rise during uncomplicated or pre-eclamptic pregnancy in women with SLE.
Using established tissue culture methodology, a protocol has been developed for the culture of specific hypothalamic regions. A microdissection technique is used to remove the paraventricular and supraoptic nuclear regions from fresh tissue. These explants are maintained in culture and appear to be viable on the basis of several criteria: the continuing presence of peptides in both tissue and media, the ability to incorporate a labeled amino acid precursor into proteins and peptides, the histological appearance using phase contrast microscopy, and the immunocytochemical identification of peptide neurons. This tissue culture model may prove useful in the study of neuroendocrine mechanisms in specific brain regions.
The main purpose of this study was to evaluate changes in plasma arginine vasopressin (AVP) associated with arterial baroreceptor deafferentation. Food and water intake of sham-operated (SO) rats was matched to that of sinoaortic denervated (SAD) rats, and blood samples were collected from groups of SAD and SO rats 15 min, 1-4 h, 24 h and 4-7 days after operation. Plasma AVP was 2-4 times higher in SAD than SO rats at each of the times studied during the 1st week (p less than 0.001); at those times no significant differences in hematocrit, plasma sodium or osmolality were found. Three weeks after surgery, plasma AVP was similar in both groups of rats. Mean arterial pressure, measured in additional groups of rats, was approximately 35 mm Hg higher in SAD than SO rats for the first 4 postsurgical hours, remaining about 20 mm Hg higher at the later times. Administration of an AVP pressor antagonist to SAD rats caused a small (8-11%), statistically significant reduction in the elevated pressure of SAD rats during the first 4 postsurgical days. Thus, AVP contributes modestly to the elevation of arterial pressure caused mainly by neurogenic mechanisms in SAD rats during the early postoperative period. Ingestive behavior was monitored in additional SO and SAD rats. SAD rats had significantly reduced food and water intake for 5 days after surgery, however, by day 6 intake was comparable to that of SO rats. Preoperative body weight was not regained until 2 weeks after surgery.(ABSTRACT TRUNCATED AT 250 WORDS)
Intraventricular perfusion with a hypertonic sodium chloride solution elicits increases in cerebrospinal fluid vasopressin and blood pressure and a decrease in heart rate. The central peptide response was greatly reduced in the hypertensive rat. Central pretreatment with the vasopressin (V1) antagonist completely abolished the pressor response to hypertonic sodium chloride in the normotensive animal. Results suggest that a central vasopressin receptor may play a role in the control of blood pressure.