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E Effenberger

Publications and source records attributed to E Effenberger.

13 recordsLinked to original sources

The antipsoriatic activity of IL-10 is rather caused by effects on peripheral blood cells than by a direct effect on human keratinocytes.

IL-10 is a promising candidate for the treatment of cutaneous disorders. Antipsoriatic efficacy of systemic IL-10 treatment has been already demonstrated. This includes histomorphological changes in the epidermis, suggesting effects on keratinocytes. However, less is known about direct effects of IL-10 on this cell population, although effects are likely since IL-10 receptor expression on keratinocytes has been demonstrated recently. Therefore we analysed the effects of IL-10 on keratinocytes in vitro, using concentrations of human recombinant IL-10 corresponding to those detectable in plasma during therapy. Proliferation, cytokine formation (IL-6, IL-8, IL-1ra), and expression of surface molecules (MHC class I and II, costimulatory molecules CD80 and CD86, CD29, CD54, CD95) were measured in stimulated and unstimulated cells. Although stimulation influenced the expression levels of certain surface markers, no or only slight effects of IL-10 were found. In contrast considerable inhibitory effects of IL-10 on surface molecule expression and cytokine secretion by peripheral blood human monocytes were observed. Our results suggest that the antipsoriatic activity of IL-10 is rather caused by modulatory effects on circulating immune cells, which subsequently might infiltrate the skin, than by direct effects on human keratinocytes. Considering the remarkable antipsoriatic activity of IL-10 and the observation that IL-10 seem to act on peripheral blood mononuclear cells but not on keratinocytes provide further evidence that circulating immune cells play a key role in the pathology of psoriasis. Finally, our results argue against the value of IL-10 therapy in dermatoses strictly limited to keratinocyte involvement.

Antigens, CD↗

NovoSeven in immune tolerance therapy.

The development of inhibitors in haemophilia patients is one of the most serious challenges to effective treatment. The effect of factor (F) concentrate and treatment regimen on titre levels was studied in nine patients with haemophilia A or B and inhibitors. Patients with haemophilia A were subdivided into those treated with recombinant activated factor VII (rFVIIa) on demand or those treated prophylactically with activated prothrombin complex concentrate (aPCC) and rFVIIa. A third group comprised haemophilia B patients receiving rFVIIa prophylaxis and on-demand aPCC or rFVIIa. On-demand therapy with rFVIIa proved to be effective and safe treatment for acute bleeding episodes in haemophilic patients. In group 1, inhibitor titres decreased markedly 0.5-21 months prior to immune tolerance therapy (ITT) and remained low for a further 1-19 months. However, use of rFVIIa instead of aPCC as prophylactic treatment in group 2 patients undergoing ITT failed to show favourable results for rFVIIa. This may be due to the short half-life of rFVIIa (2.3-2.9 h). The data presented suggest that exclusive use of rFVIIa in acute bleeding episodes prior to commencing ITT is an effective method of decreasing inhibitor titre, thereby optimizing conditions for ITT.

Adolescent↗

A simple and rapid method for detecting and separating T lymphocytes by rosetting with autologous erythrocytes.

Counting and separation of auto-rosette-forming lymphocytes is a critical procedure since autologous rosettes are very unstable. It was demonstrated that human serum albumin efficiently stabilizes autologous rosettes, and makes it possible to distinguish at least three T-cell subsets by their different affinities for autologous erythrocytes. About 1% of T-cells have a high affinity for autologous erythrocytes and about 30% intermediate affinity. With a careful procedure, it is possible to detect a further subpopulation with very low affinity for erythrocytes. The sum of these three subsets was about 75% of the T-cells in the peripheral blood.

Cell Separation↗

[Air pollution].

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Air Pollution↗