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F Jacobsen

Publications and source records attributed to F Jacobsen.

50 records · Page 3Linked to original sources

In vitro cytotoxicity of lymphocyte subpopulations against autologous human bladder tumor cells.

The in vitro cytotoxicity of unfractionated blood lymphocytes and T and non-T lymphocytes respectively, was tested against autologous tumor cells from 21 patients with grade III-IV urothelial bladder carcinomas. Generally, little or no cytotoxicity was seen. However, some differences in autologous cytotoxicity between T and non-T lymphocytes were detectable. Four of 21 patients had cytotoxic non-T lymphocytes against autologous bladder tumor cells. The results indicate, that the effector cells are primarily non-T lymphocytes, and that cytotoxicity appears at lower levels of T lymphocytes in unfractionated lymphocyte preparations.

Adult↗

Complement-dependent in vitro cytotoxicity against autologous invasive bladder tumor cells in humans. Evaluation of the possible role of naturally-occurring antibodies in complement-dependent cytotoxicity.

Complement-dependent serum-mediated cytotoxicity (CDC) was measured in a 51-chromium release assay against autologous tumor cells from 7 non-invasive and 9 invasive transitional-cell tumors of the urinary bladder. CDC was demonstrated against tumor cells from invasive tumors. Heat-inactivation of autologous sera lead to complete loss of cytotoxicity. There were no differences in CDC of autologous sera from patients and allogenic sera from controls. The cytotoxic response seems to be strongly dependent on the target cell. CDC was significantly reduced by use of an allogenic C 2 deficient serum. Direct immunofluorescence did not reveal any tumor cell associated immunoglobulins of IgG or IgM classes. Indirect immunofluorescence with autologous heat-inactivated sera demonstrated in most cases both IgG and IgM attachment to the tumor cells, but there were no obvious relations between indirect immunofluorescence and CDC. Absorption of allogenic sera to trypsin- or neuraminidase-treated erythrocytes did not affect CDC of these sera against invasive tumor targets. The results indicate a complement-dependent cytotoxicity against target cells from invasive bladder tumors. Complement seems to be activated through the classical pathway, but the possible role of naturally-occurring antibodies against invasive tumor targets is not clarified.

Aged↗

Acute effects of insulin on plasma noradrenaline and the cardiovascular system.

It is now known that insulin has marked acute effects on plasma noradrenaline and the cardiovascular system. These effects of insulin are not due to hypoglycemia and occur without changes in plasma adrenaline. Intravenous injection of insulin in juvenile diabetics increased plasma noradrenaline and heart rate and decreased glomerular filtration rate, renal and peripheral blood flow, and plasma volume. Urinary excretion rates of beta-2-microglobulin and urinary volume decreased after insulin, whereas urinary albumin excretion increased. When blood glucose was maintained by glucose infusion after insulin, glomerular filtration rate and renal blood flow remained unaltered whereas plasma noradrenaline, heart rate, and urinary albumin excretion increased and beta-2-microglobulin excretion decreased. Decreases in glomerular filtration rate and renal blood flow after insulin are thus due to the fall in blood glucose. Rise in albumin excretion after insulin is probably of glomerular origin and not caused by the fall in blood glucose or by changes in renal hemodynamics. In patients with long-term diabetic nephropathy and albuminuria, insulin decreased albumin excretion (probably due to renal vasoconstriction) and plasma noradrenaline did not increase. In alloxan-diabetic rabbits the increase in heart rate after insulin was not abolished by autonomic blockade. In short-term streptozotocin-diabetic rats, muscle capillary endothelial cells showed a reduced number of free micropinocytotic vesicles. The number was nearly normalized 1 hr after intramuscular injection of insulin. The mechanism of action of insulin on plasma noradrenaline, heart rate, plasma volume, and urinary albumin excretion is not known. The rise in plasma noradrenaline after insulin may be compensatory to hypovolemia or to antagonizing effects of insulin on some actions of noradrenaline. The findings in streptozotocin-diabetic rats suggest that insulin may be essential for the normal function of capillary endothelial cells.

Adult↗

Stimulation of heart rate by insulin: uninfluenced by beta-adrenergic receptor blockade in rabbits.

Intravenous injection of insulin increased heart rate approximately 20% in six alloxan-diabetic rabbits. Blood glucose concentrations after insulin did not decrease below the fasting level of non-diabetic animals and none of the rabbits had signs of hypoglycermia. Intravenous injection of saline or insulin solvent had no effect on heart rate. The stimulatory effect of insulin on heart rate was not influenced by autonomic nervous blockade by propranolol or by propranolol plus atropine.

Adrenergic beta-Antagonists↗

[Ergotism].

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Adult↗