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H J Wedner

Publications and source records attributed to H J Wedner.

80 records · Page 5Linked to original sources

Two novel stimuli of cyclic adenosine 3',5'-monophosphate (cAMP) in human lymphocytes.

Polystyrene latex particles (PLP) and zymosan particles (ZP), two commonly employed phagocytic stimuli, were noted to bind to purified human peripheral blood lymphocytes. This interaction was not accompained by ingestion but did lead to a marked increase in intracellular cyclic AMP. The cAMP response to PLP was proportional to the particle cell ratio which, in turn, correlated with the number of membrane-associated particles. After the addition of PLP to lymphocytes, the cAMP response occurred within 2 min, peaked between 4 and 15 min, and returned to baseline by 30 to 60 min. The cAMP response to ZP was similar in onset and duration to that seen with PLP but was less marked (2- to 4-fold vs 25- to 50-fold) and more variable in magnitude. This is probably a reflection of the smaller number of cells interacting with ZP. At high PLP to cell ratios almost all of the lymphocytes bound PLP but only 10 to 28% of the mixed lymphocyte population bound ZP. Two lines of evidence established conclusively that the cAMP response was taking place in the lymphocytes themselves rather than in contaminating cells. 1) When lymphocytes were purified additionally by filtration through a nylon wool column (99 to 100% lymphocytes), they were found to undergo a similar cAMP response to PLP. Since the nylon filtration procedure also removes almost all of the B cells, this further indicates that T cells are capable of undergoing the response. 2) Immunofluorescence studies with anti-cAMP antibody revealed an increase in intralymphocytic cAMP which was primarily adjacent to the site of PLP or ZP attachment. The likely explanation of this data is that PLP and ZP perturb the lymphocyte surface leading to regional activation of membrane-bound adenylate cyclase and subsequent cAMP accumulation. Although the physiologic significance of these observations remains to be determined, the results: 1) provide histologic confirmation for the concept of cAMP compartmentablization, 2) clarify conflicting results regarding the localization of cAMP accumulation during the phagocytosis of PLP by mixed leukocyte populations, and 3) suggest that this experimental system may allow an analysis of the mechanism by which perturbations of the lymphocyte surface modulate cAMP.

Binding Sites↗

Cyclic GMP and lectin-induced lymphocyte activation.

Purified human peripheral lymphocytes incubated with the mitogenic plant lectins phytohemagglutinin and concanavalin A were examined for alterations in intracellular cGMP and cAMP under a variety of experimental conditions and using multiple techniques for the isolation and purification of cGMP and cAMP before assay of the cyclic nucleotides by radioimmunoassay. In contrast to work reported by others, we have been unable to demonstrate consistent increases in cGMP under any of the experimental conditions used and with any of the various purification schemes. In these same experiments exogenous cGMP added to the lymphocytes could be measured, and the immunoreactive material was destroyed by cyclic nucleotide phosphodiesterase, indicating that our inability to measure increases in cGMP was not caused by our inability to measure cGMP. Under identical experimental conditions, small but consistent and statistically significant increases in cAMP were noted. In addition, other parameters of lymphocyte activation, 45Ca uptake (an early parameter), and incorporation of 3H thymidine into DNA were unimpaired. These data call to question the concept of cGMP as the second messenger in lectin-stimulated human peripheral lymphocytes.

2',3'-Cyclic-Nucleotide Phosphodiesterases↗

Adenosine 3',5'-monophosphate is localized in cerebellar neurons: immunofluorescence evidence.

Adenosine 3',5'-monophosphate is localized in specific cerebellar neurons, as shown by fluorescence immunocytochemistry with a specific rabbit immunoglobulin. Positive staining is exhibited by Purkinje neurons and granule cells. The increase in concentration of cyclic adenosine monophosphate in the cerebellum, which is known to follow decapitation, is represented by greatly increased fluorescence of Purkinje neurons only. These immunofluorescence data provide the first evidence for localization of cyclic adenosine monophosphate in specific neurons and may permit further exploration into the role of this cyclic nucleotide in neuronal function.

Animals↗

Ritualistic use of the holly Ilex guayusa by Amazonian Jívaro Indians.

In Amazonian Peru and Ecuador leaf decoctions of the rainforest holly Ilex guayusa with high caffeine concentrations are used as a morning stimulant. After daily ingestion, ritualistic vomiting by male Achuar Indians, better known as Jívaros, reduces excessive caffeine intake, so that blood levels of caffeine and biotransformed dimethylxanthines do not cause undesirable CNS and other effects. Emesis is learned and apparently not due to emetic compounds.

Caffeine↗

Studies on the stimulation of cAMP metabolism by heparin solutions containing benzyl alcohol.

Heparin solutions containing benzyl alcohol as a preservative increase intracellular cAMP concentrations in human lymphocytes by as much as 5 fold. Similar changes but of a lesser magnitude were also observed in human polymorphonuclear leukocytes and platelets and rabbit alveolar macrophages. Further analysis demonstrated that benzyl alcohol used as a preservative was responsible for this finding and that heparin per se had no effect on cAMP metabolism. The cAMP response to benzyl alcohol was a time- and dose-dependent process. In human peripheral blood lymphocytes, cAMP levels increased in a linear fashion over a benzyl alcohol concentration range from 0.015-0.30% (v/v). The increased cAMP concentrations in lymphocytes as measured by radioimmunoassay were not due to formation of a cross-reacting adenosine-alcohol adduct since the immunoreactive material produced was destroyed by phosphodiesterase and co-migrated with 3H-cAMP in thin layer chromatographic studies. Concentrations of benzyl alcohol which affect cAMP metabolism are commonly present in biologic studies employing heparin solutions. In view of these findings certain previously described effects of heparin may need to be reinterpreted and in the future heparin solutions containing benzyl alcohol should not be used when studying biologic processes known to be influenced by alterations in cAMP metabolism.

Animals↗