Search PubMed⌕ Search

Biomedical subjects

B Hamberger

Publications and source records attributed to B Hamberger.

At least 37 records · Page 2Linked to original sources

[When a disaster is a fact. Kamedo analyses how the help was functioning].

Kamedo (Organizing Committee for Disaster Medicine Studies) has for over 30 years compiled information on disasters in Sweden and abroad, analysed the data and published the results. The Kamedo reports supply knowledge and experience in the field of disaster medicine and form a basis for disaster medicine planning, education and research. Over 60 reports have been published so far, since 1980 including summaries in English. These summaries can be obtained from Kamedo, Swedish National Board of Health and Welfare (Socialstyrelsen), S-106 30 Stockholm, Sweden (fax +46 8 783 3287).

Disaster Planning↗

Multiple neuropeptide immunoreactivities in a renin-producing human paraganglioma.

BACKGROUND: A case of a renin-producing paraganglioma of adrenal origin with metastases to the retroperitoneal area, paravaginal area, and the ovary is reported with immunohistochemical findings indicating expression of multiple neuropeptide immunoreactivities. The patient was 23 years old at the time of diagnosis, and died from metastatic spread of the tumor 7 years later. METHODS: Tumor tissue was examined by light microscopy, indirect immunohistochemistry, and electron microscopy. RESULTS: The tumor tissue investigated contained several cells exhibiting opioid peptide-like immunoreactivities (i.e., enkephalin and dynorphin-like immunoreactivity [LI]). A lower number of cells displayed neuropeptide Y-, galanin-, somatostatin-, neurotensin-, substance P-, peptide histidine-isoleucine-, cholecystokinin-, renin-, and calbindin-LI. CONCLUSION: To the authors' knowledge, galanin, dynorphin, peptide histidine-isoleucine, cholecystokinin, and calbindin have not been reported previously to occur in paraganglioma, and renin has been reported to occur very rarely. A review of recent literature suggest that enkephalin-, neuropeptide Y-, and somatostatin-like immunoreactivities may be useful as diagnostic markers for paragangliomas.

Adrenal Gland Neoplasms↗

Somatic and MEN 2A de novo mutations identified in the RET proto-oncogene by screening of sporadic MTC:s.

Since germline mutations in the RET proto-oncogene (RET) predisposing to tumor development in Familial Medullary Thyroid Carcinoma (FMTC), Multiple endocrine neoplasia type 2A (MEN 2A), and Multiple endocrine neoplasia type 2B (MEN 2B) were reported, it has become possible to identify gene carriers with a very high degree of accuracy. Mutations in FMTC and MEN 2A exclusively affect cysteine residues in exon 10 and 11 of RET, whereas in MEN 2B codon 918 in exon 16 is involved. This latter mutation has also been described in a subset of apparently sporadic medullary thyroid carcinomas (MTC). Mutations in MEN 2B often occur as de novo germline mutations, whereas de novo mutations have not yet been described in FMTC or MEN 2A. We analyzed ten MTC:s and ten pheochromocytomas, all clinically judged to be sporadically occurring, by direct DNA sequencing of exons 10, 11, and 16 of RET. This analysis revealed a de novo germline mutation of codon 634 in exon 11 in a patient with MTC. In addition, somatic mutations of codon 918 in exon 16 in six of the remaining MTC:s were found. Interestingly, the presence of this somatic mutation was associated with a significantly less favorable clinical outcome.

Adult↗

Vasoactive agents and blood pressure regulation in sequential ultrafiltration and hemodialysis.

Hypotension is a common and sometimes dangerous side effect of hemodialysis. Its etiology is multifactorial and largely unknown. Earlier studies on the role of endogenous blood pressure regulating agents such as catecholamines and renin have rendered conflicting results. We studied the influence of ultrafiltration and isovolemic hemodialysis separately on the plasma concentrations of the following blood pressure regulating agents: adrenaline, noradrenaline, dopamine, neuropeptide Y, calcitonin gene-related peptide (CGRP), renin (PRA), angiotensin II, vasopressin, aldosterone and cortisol. During isolated ultrafiltration, plasma levels of two strong vasoconstrictors (noradrenaline and angiotensin II) and one strong vasodilator (calcitonin gene-related peptide, CGRP) increased significantly (noradrenaline 3.24 +/- 0.60 nM to 4.31 +/- 0.55 nM; p = 0.032, angiotensin II 19.74 +/- 3.46 pmol/l to 28.49 +/- 7.24 pmol/l; p = 0.047) No symptomatic hypotension occurred. At the end of isovolemic hemodialysis, plasma levels of all the vasoconstricting agents had decreased to pretreatment values, but those of CGRP had continued to rise (from 85.3 +/- 17.6 pmol/l to 114.5 +/- 25.3 pmol/l, p = 0.031). During isovolemic hemodialysis, blood pressure fell to symptomatic levels, but was restored at the end of treatment. The study shows that hemodialysis patients respond to fluid removal by ultrafiltration with an increase in plasma levels of CGRP, noradrenaline and angiotensin II. The net effect is an appropriate vasoconstriction and adequate blood pressure is maintained during isolated ultrafiltration.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Cardiovascular and renal effects of intracerebroventricular angiotensin II in conscious sheep.

Effects on systemic and pulmonary haemodynamics, renal electrolyte excretion, and plasma concentration of vasopressin, catecholamines, electrolytes and proteins in response to intracerebroventricular infusions of [Val5]-angiotensin II (ANG II) at 1, 2 and 4 pmol kg-1 min-1 in isotonic saline for 30 min were studied in conscious sheep (n = 6). Vehicle control infusions were performed in four of the animals. All three doses of ANG II were expected to increase CFS concentration of the peptide above physiological levels. All ANG II infusions were noticed to be dipsogenic, but the animals were not allowed to drink freely until at the end of the experiments (at 120 min post-infusion). The systemic arterial blood pressure increased significantly only in response to 2 and 4 pmol kg-1 min-1, concomitant with an increase of the systemic vascular resistance, whereas the cardiac output and heart rate remained unchanged. The central venous pressure increased only after administration of the highest ANG II dose, while pulmonary artery, and capillary wedge pressures were unaffected during all experiments. The plasma protein and K concentration fell in response to ANG II administration. Also here, the effects were significant only at 2 and 4 pmol kg-1 min-1. The plasma levels of vasopressin, noradrenaline, adrenaline and dopamine did not change significantly in response to any of the infusions. The renal Na excretion increased by 100-400%, but not in a strictly dose-dependent manner. Much smaller and more variable effects were seen on the renal K excretion.(ABSTRACT TRUNCATED AT 250 WORDS)

Angiotensin II↗

Increased resistance to haemorrhage induced by intracerebroventricular infusion of hypertonic NaCl in conscious sheep.

The effect of elevated cerebrospinal fluid Na+ concentration (CSF [Na+]) on the tolerance of blood loss, and concomitant cardiovascular and humoral responses were studied in conscious sheep. A slow (0.7 ml kg-1 min-1) venous haemorrhage was continued until the mean systemic arterial pressure suddenly decreased to less than 50 mmHg, or in the absence of hypotension, until a total blood loss of 25 ml kg-1. Significantly more blood had to be removed to induce hypotension in animals receiving an intracerebroventricular (i.c.v.) infusion (0.02 ml min-1) of 0.5 M NaCl (starting 30 min before haemorrhage and continued throughout the experiment) compared to control haemorrhages without concomitant i.c.v. infusion (22.7 +/- 1.2 ml vs 16.9 +/- 0.9 ml kg-1). In one animal, subjected to 0.5 M NaCl infusion, the blood pressure was still maintained at 25 ml kg-1 of haemorrhage. In spite of a larger blood loss, animals receiving i.c.v. infusion of hypertonic NaCl had an improved recovery of the blood pressure after haemorrhage, due to a better maintained cardiac output rather than to a reinforced increase of the vascular resistance. The improved cardiovascular responses to haemorrhage during elevated CSF [Na+] are not readily explained by the effects on the plasma concentrations of vasopressin, angiotensin II or noradrenaline, although the latter was augmented. The plasma protein concentration decreased already during the 30 min of hypertonic NaCl infusion preceding haemorrhage, and the haemodilution caused by the subsequent blood removal was aggravated, which indicates that this treatment also causes transfer of fluid to the plasma compartment. We conclude that elevated CSF [Na+] increases tolerance to haemorrhage and improves cardiovascular function after blood loss in sheep. Since the haemodynamic responses in many respects were similar to those reported in response to the systemic administration of a small volume of hypertonic NaCl solution in haemorrhagic shock, part of the effect of that treatment may be mediated via cerebral effects of increased Na+ concentration.

Angiotensin II↗

Multiple endocrine adenopathy.

The syndromes of multiple endocrine adenopathy (MEA) have associated endocrine abnormalities that are similar to the clinical syndromes based in the same hyperfunctions of parathyroid, pancreatic islets, thyroid C-cell and chromaffin tissue seen in sporadic cases. The natural history, histopathology and management of these problems when they occur in the hereditary MEA syndromes differ in significant and instructive ways over the isolated disorders. These differences and similarities of MEA adenopathies were discussed at an international conference, with the suggestion that the MEA syndromes afford opportunity to investigate regulation and control of pathogenesis in surgical endocrinological syndromes.

Adult↗

[Intake of disopyramide led to diagnosis of insulinoma].

A single dose of 250 mg disopyramide provoked severe hypoglycaemia and confusion in a 75-year-old woman. During subsequent investigation, fasting provoked symptomatic hypoglycaemia (venous blood glucose, 1.6 mumol/1) after 23 hours, plasma concentrations of insulin and C peptide then being 19 micrograms/ml and 0.85 pmol/l, respectively; computerised tomography and ultrasonography of the pancreas n.a.d. However, at laparotomy, a 10 mm diameter insulinoma was detected by intra-operative ultrasonography and palpation. The tumour was removed. To our knowledge, this is the first reported case of an insulinoma being detected due to intake of disopyramide.

Aged↗

Intraputaminal infusion of nerve growth factor to support adrenal medullary autografts in Parkinson's disease. One-year follow-up of first clinical trial.

Experimental studies in rodents show that beta-nerve growth factor can increase the survival, neurite outgrowth, and functional effect of grafts of adrenal chromaffin cells to the basal ganglia. We, therefore, have begun to investigate whether treatment with nerve growth factor might also increase the functional effect of autografts of adrenal medullary tissue in patients with Parkinson's disease. Previous studies have shown that stereotactic implantation of adrenal tissue pieces produces a transient functional improvement that lasts for a few months. This report describes a trial of grafting of adrenal chromaffin tissue into the putamen, supported by infusion of nerve growth factor. The patient is a 63-year-old woman with a 19-year history of Parkinson's disease, now complicated by on-off phenomena and drug-induced hyperkinesia, despite optimized medical management. The left adrenal gland was removed, and the medulla was dissected into 1- to 2-mm3 pieces in a solution containing nerve growth factor purified from mouse submandibular gland. Pieces were implanted in six tracts 3 to 4 mm from a previously placed cannula in the left putamen. Through the cannula, nerve growth factor was infused for 23 days for a total dose of 3.3 mg. Clinical assessment consisted of global ratings for rigidity and/or hypokinesia and for drug-induced hyperkinesia. Measures of gait and fine-motor control were also made. The motor readiness potential and auditory evoked potentials were recorded.(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenal Medulla↗

Plasma chromogranin A + B, neuropeptide Y and catecholamines in pheochromocytoma patients.

Plasma levels of chromogranin A + B, neuropeptide Y and catecholamines were analysed before, during and after surgery in seven patients with pheochromocytoma. The aim of the study was to determine the diagnostic sensitivity of these plasma amines and peptides, and to investigate their peroperative fluctuations. Chromogranin A + B in plasma was increased preoperatively in all patients, showed no significant increase during surgery, and normalized postoperatively. Neuropeptide Y, which alone can induce hypertension, was present in high levels in plasma from three patients preoperatively, increased further in four patients during surgery, and was postoperatively low in all patients. Fractionated plasma catecholamines were increased in five patients before surgery, increased in all patients during tumour dissection, and normalized postoperatively. It may be concluded that plasma chromogranin A + B exhibited as high a sensitivity for pheochromocytoma as fractionated urinary catecholamines in the patients studied.

Adrenal Gland Neoplasms↗

Basal and ACTH-stimulated cortisol and aldosterone release from adrenocortical adenomas in vitro.

Basal and ACTH-stimulated release of aldosterone and cortisol was studied in slices of adrenocortical adenomas and adrenal cortex from 16 consecutive patients with Conn's syndrome (n = 7), Cushing's syndrome (n = 5) or no signs of steroid hypersecretion (n = 4). Clinical data were reviewed and histologic examination was repeated. The adrenal cortex and all tumours but one (non-hyperfunctioning) secreted cortisol. Cortisol release increased after addition of ACTH in 13/15 tumours and all cortex slices. Aldosterone was secreted from the adrenal cortex in all patients and was increased by ACTH in 75% of the tissue specimens. Adenomas from patients with hyperaldosteronism showed the highest basal aldosterone secretion. This secretion was further increased by ACTH. Tumours from patients without signs of corticosteroid excess also released steroids and responded to ACTH. It is concluded that in vitro studies of steroids released from adrenocortical tumours contribute to their diagnostic and functional evaluation.

Adenoma↗

D-[U-11C]glucose uptake and metabolism in the brain of insulin-dependent diabetic subjects.

We used D-[U-11C]glucose to evaluate transport and metabolism of glucose in the brain in eight nondiabetic and six insulin-dependent diabetes mellitus (IDDM) subjects. IDDM subjects were treated by continuous subcutaneous insulin infusion. Blood glucose was regulated by a Biostator-controlled glucose infusion during a constant insulin infusion. D-[U-11C]-glucose was injected for positron emission tomography studies during normoglycemia as well as during moderate hypoglycemia [arterial plasma glucose 2.74 +/- 0.14 in nondiabetic and 2.80 +/- 0.26 mmol/l (means +/- SE) in IDDM subjects]. Levels of free insulin were constant and similar in both groups. The tracer data were analyzed using a three-compartment model with a fixed correction for 11CO2 egression. During normoglycemia the influx rate constant (k1) and blood-brain glucose flux did not differ between the two groups. During hypoglycemia k1 increased significantly and similarly in both groups (from 0.061 +/- 0.007 to 0.090 +/- 0.006 in nondiabetic and from 0.061 +/- 0.006 to 0.093 +/- 0.013 ml.g-1.min-1 in IDDM subjects). During normoglycemia the tracer-calculated metabolism of glucose was higher in the whole brain in the nondiabetic than in the diabetic subjects (22.0 +/- 1.9 vs. 15.6 +/- 1.1 mumol.100 g-1.min-1, P less than 0.01). During hypoglycemia tracer-calculated metabolism was decreased by 40% in nondiabetic subjects and by 28% in diabetic subjects. The results indicate that uptake of glucose is normal, but some aspect of glucose metabolism is abnormal in a group of well-controlled IDDM subjects.

Adult↗

Evidence for co-transmitter role of neuropeptide Y in the pig spleen.

1. The possible involvement of neuropeptide Y (NPY) in relation to noradrenaline (NA) and adenosine triphosphate (ATP) mechanisms in the sympathetic nervous control of the vascular tone and capsule contraction in the blood perfused pig spleen was investigated in vivo. 2. Local injections or infusions of NA, NPY and alpha-, beta-methylene ATP (mATP) caused vasoconstriction (perfusion pressure increase) and capsule contraction (increased venous blood flow). ATP only evoked vasodilatation. NPY was about 50 fold more potent than NA as a vasoconstrictor, and the NPY response was more long-lasting. Reserpine treatment did not change the effects of NPY. 3. Electrical stimulation of the splenic nerves in control animals caused a frequency-dependent, guanethidine-sensitive output of both NPY-like immunoreactivity (-LI) and NA, suggesting co-release. The output of NPY-LI relative to NA was enhanced at high frequency stimulation. Furthermore, alpha-adrenoceptor blockade by phentolamine enhanced both the output of NPY-LI and NA while inhibition of the neuronal uptake of NA with desipramine reduced the low frequency stimulation-evoked overflow of NPY-LI. Preganglionic denervation did not change the output of NPY-LI or NA. 4. Reserpine treatment reduced both the splenic content of NA and NPY-LI. Preganglionic denervation inhibited the reserpine-induced depletion of the NPY content but not of NA in terminal areas. The stimulation-evoked NPY overflow was markedly enhanced, especially at low-frequency stimulation after reserpine, and the plasma levels of NPY-LI in the venous effluent were then in the nmolar range (i.e. where exogenous NPY induced vasoconstriction). The perfusion-pressure increase upon stimulation in reserpine-treated, preganglionically-denervated animals was highly correlated (r = 0.91) to the NPY overflow. The functional 0.5 Hz responses were reduced after reserpine, while at higher frequencies the functional effects were of similar magnitude to controls but longer-lasting. 5. Tyramine induced a release of NA but not of NPY-LI. Furthermore, the increase in perfusion pressure induced by tyramine was absent after reserpine. 6. After tachyphylaxis to the vasoconstrictor effects of mATP, the nerve stimulation-evoked, functional response as well as the NA and NPY-LI overflow were unchanged. After reserpine treatment, both the perfusion-pressure increase and NPY-LI overflow to nerve stimulation were reduced after mATP tachyphylaxis. 7. In conclusion, release of NPY rather than ATP may explain the long-lasting, non-adrenergic, splenic functional responses in reserpinized animals upon sympathetic stimulation. However, NA is most likely the main splenic transmitter when low-frequency stimulation is used under control conditions.

Adenosine Triphosphate↗

Early circulatory and metabolic events in island skin flaps of the pig.

Circulatory and metabolic skin-flap events were studied prior to and up to 6 hours after elevation of buttock island flaps in pigs. During the elevation, significant reductions in superficial skin blood flow, measured by laser Doppler flowmetry (LDF) and dermal flap temperature, were seen. Significant correlations were found between blood flow and temperature. Total flap blood flow, measured as venous outflow, also showed an initial transient decrease, but 2 hours after flap construction, venous outflow had returned to preoperative values. A significant increase in lactate release, together with increased oxygen consumption and glucose uptake, was seen 4 hours after the surgical intervention. Hypoxanthine release, indicating ischemia, was seen only during the first hour after flap elevation. Noradrenaline outflow was noted after 4 and 6 hours, but there was no parallel reduction in flap blood flow. A great deal of the flow reduction in acutely elevated island flaps may thus be due to primary hypothermia rather than to the degenerative release of noradrenaline, which seems to have no early effect on skin flap blood flow. On the other hand, the noradrenaline release may be linked to an increased metabolic activity in the skin flaps.

Animals↗

Transient insulin resistance following infusion of adrenaline in type 1 (insulin-dependent) diabetes mellitus.

Insulin resistance was assessed after an intravenous infusion of adrenaline (50 ng.kg-1.min-1) or saline (control study) given between 08.00 and 08.30 hours in nine patients with Type 1 (insulin-dependent) diabetes mellitus. The blood glucose level during a somatostatin (100 micrograms/h)-insulin (0.4 mU.kg-1.min-1)-glucose (4.5 mg.kg-1.min-1)-infusion-test performed between 10.30 and 14.30 hours served as an indicator of the total body insulin resistance. Blood glucose was maintained around 7 mmol/l between 08.00 and 10.30 hours by a constant infusion of regular insulin (0.57 mU.kg-1.min-1) and a variable infusion of a 20% glucose solution. The infusion of adrenaline raised plasma adrenaline to 2.7 +/- 0.3 nmol/l (mean +/- SEM) at the end of the infusion; thereafter it returned to its basal level within 30 min. The plasma levels of free insulin, glucagon, cortisol and growth hormone were similar in the adrenaline and the control studies from 08.00 to 14.30 hours. In comparison with the control study the infusion of adrenaline decreased the need for intravenous glucose significantly over the initial 2 h. Furthermore, during the somatostatin-insulin-glucose infusion test the blood glucose rose significantly (p less than 0.05) over the initial 2 h; thereafter no significant differences between the two studies were seen. It is concluded that a short term infusion of adrenaline, resembling the adrenergic hormone response to hypoglycaemia, induces a diabetogenic effect which subsides within 6 h after omission of the adrenaline infusion.

Adult↗