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Biomedical subjects

K Kivistö

Publications and source records attributed to K Kivistö.

5 recordsLinked to original sources

Time-resolved fluorometric assay for leukocyte adhesion using a fluorescence enhancing ligand.

A new 96-well microtiter plate, time-resolved fluorometric assay was developed to measure leukocyte adhesion in vitro. The assay is based on loading leukocytes with a fluorescence enhancing ligand 2,2':6', 2"-terpyridine-6,6"-dicarboxylic acid (TDA), which in its acetoxymethyl ester form readily diffuses through the cell membrane. After hydrolysis by nonspecific intracellular esterases, the impermeable TDA accumulates inside the cells. When the TDA-labeled adherent leukocytes are lysed, the ligand is released and reacts with europium present in the lysis solution to produce a highly fluorescent and stable chelate. The fluorescence signal can be measured by time-resolved fluorometry and correlates directly with the number of adherent cells. In this study, we have optimized both the TDA-labeling and adhesion assay conditions in isolated human neutrophils. Furthermore, we have compared the assay with a traditional microscopic counting method. This time-resolved fluorometric assay provides a rapid, reproducible and convenient method for the routine analysis of leukocyte adhesion.

Cell Adhesion↗

Systemic suppression of human peripheral blood phagocytic leukocytes after whole-body UVB irradiation.

We examined systemic effects of whole-body UVB irradiation on human peripheral blood phagocytes. We found that 24 h after a single erythemal dose of UVB radiation two phagocyte functions, adhesion and phagocytosis, were reduced by 50%. This functional suppression was accompanied by a significant decrease in the expression of complement receptors (CR1 and CR3) and IgG Fc receptors (FcRII and FcRIII). The greatest reduction (47%) was observed in CR3, which is important for both adhesion and phagocytosis. A kinetic analysis showed that both CR1 and CR3 levels started to decrease 15 min after the UVB exposure, reaching the lowest levels at 4.5- and 24-h time points, respectively. The down-modulation of CRs after whole-body UVB exposure was not due to a defective receptor synthesis or translocation from internal stores to plasma membrane because the maximal CR levels in stimulated cells were not affected by UVB. No change in the serum soluble ICAM-1 was detected after UVB, which rules out CD1 1b epitope masking by sICAM-1. UVB did not release low-receptor-density myeloid progenitor cells from storage pools into circulation. Interleukin 10, a mediator of UVB-induced immunosuppression, was unable to modulate CR expression in vitro. When seven suberythemal whole-body UVB exposures were given repeatedly within 2 weeks, a significant decrease in CR expression was seen, which was greatest after three irradiations. Our data suggest that an exposure to UVB has systemic effects in humans which, possibly due to the down-modulation of preexisting cell-surface receptors, suppress some important functions of circulating phagocytic cells.

Adult↗

Urocanic acid suppresses the activation of human neutrophils in vitro.

Exposure to ultraviolet (UV) light impairs the function of inflammatory cells. Urocanic acid (UCA) in an stratum corneum has been suggested as a mediator in the immunosuppression of lymphoid cells detected after irradiation with UVB (UV wavelengths 280-320 nm). In this study, we examined the effects of the two UCA isomers, trans and cis UCA on human polymorphonuclear leukocytes, neutrophils. It was found that treatment of cells with either trans of cis UCA isomers inhibited the opsonized zymosan-induced respiratory burst activity, measured with luminol-enhanced chemiluminescence assay. Both isomers were also able to partially block the up-regulation of complement receptors 1 (CR1; CD35) and 3 (CR3; CD11b/ CD18) in N-formyl-methionyl-leucyl-phenylalanine (FMLP)-stimulated neutrophils. These results indicate that the isomerization of trans UCA to cis UCA is not essential for the action of UCA on neutrophils. Neither of the UCA isomers were found to induce cyclic AMP (cAMP) formation in 3-isobutyl-1-methylxanthine treated cells, suggesting that the activation of adenylate cyclase cAMP system is not involved in UCA provoked suppression of neutrophils. It is concluded that the function of UCA may be protective, to suppress the activation of human neutrophils in inflamed, sunburned epidermis.

Cyclic AMP↗

Effects of resins and activated charcoal on the absorption of digoxin, carbamazepine and frusemide.

1. The interference of resins and activated charcoal with the absorption of digoxin, carbamazepine and frusemide was studied. 2. In a cross-over study consisting of four phases, single doses of colestipol hydrochloride (10 g), cholestyramine (8 g), activated charcoal (8 g) or water only were given to six healthy volunteers immediately after the simultaneous ingestion of digoxin (0.25 mg), carbamazepine (400 mg) and frusemide (40 mg). Plasma and urine concentrations of the test drugs and the urine volumes were determined up to 72 h. 3. The absorption of digoxin was not reduced by colestipol, moderately (30-40%, P less than 0.05) reduced by cholestyramine and greatly (96%) by charcoal. 4. The absorption of carbamazepine was not decreased by cholestyramine, slightly (10%) by colestipol and greatly (90%) by activated charcoal. 5. The absorption and the diuretic effect of frusemide were significantly diminished by all agents. The bioavailability was reduced by colestipol 80%, by cholestyramine 95% and by activated charcoal 99.5%. 6. The interference with the gastrointestinal absorption of most of the basic drugs by colestipol and cholestyramine seems to be minimal. On the other hand, the resins may seriously impair the absorption of certain acidic drugs, for example frusemide.

Adult↗