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Biomedical subjects

Andrzej Czlonkowski

Publications and source records attributed to Andrzej Czlonkowski.

3 recordsLinked to original sources

High dose of intravenously given glucocorticosteroids decrease IL-8 production by monocytes in multiple sclerosis patients treated during relapse.

The aim of our study was to determine whether high doses of intravenous methylprednisolone have significant impact on immune parameters during the multiple sclerosis (MS) exacerbations. Peripheral blood of 32 MS patients was evaluated, using two-color flow cytometry before glucocorticosteroids and after 7 days from starting therapy. Significant increase of B cells, decrease of NK cells and monocytes producing IL-8 were observed after treatment. IL-8 is one of the cytokines responsible for blood-brain-barrier disruption and migration of immune cells to the central nervous system; in this aspect, explaining glucocorticosteroid effects during MS exacerbations.

Adult↗

Tryptase levels in patients after acute coronary syndromes: the potential new marker of an unstable plaque?

BACKGROUND: Mast cells (MCs) are multifunctional immune cells that produce a number of vasoactive or thromboactive mediators. Elevated numbers of human heart MCs are observed in the shoulder regions of coronary atherosclerotic plaques, suggesting that they play a role in plaque rupture. Cardiac MC degranulation after myocardial ischemia has been documented in animal models. Cardiac MCs are highly profibrinolytic cells and release tryptase, their specific protease, after ischemic events. HYPOTHESIS: Mast cell activation and release of tryptase may differentiate among patients with acute coronary syndromes (ACS), potentially determining the clinical course of ACS. Tryptase levels may indirectly reflect the fibrinolytic status of patients. METHODS: Mast cell activation after ACS was estimated in 10 controls and 52 patients by measuring the serum levels of tryptase in the acute phase, at 2 weeks, and at 3 months after the ACS episode. Total tryptase levels were determined by using the UniCAP system and analyzed with respect to the patients' clinical types of ACS on admission (ACS with persistent ST-segment elevation on electrocardiogram or with ST-segment depression). RESULTS: Significant differences in serum tryptase levels between the groups were found, with higher serum tryptase concentrations in the ST-segment depression group in the acute phase, and at follow-up. CONCLUSIONS: Serum tryptase concentration differences among patients with distinct types of ACS may indicate a more important role of human heart MCs in ACS with ST-segment depression pathogenesis. To our knowledge, this is the first report indicating that serum tryptase levels may differentiate patients with distinct types of ACS.

Adult↗

Post intoxicative therapeutic immunization with myelin oligodendrocyte glycoproteine (MOG 35-55) suppresses spontaneous regeneration of dopaminergic neurons injured with 1-methyl-4 phenyl-1,2,3,6-tetrahydropiridine (MPTP).

The pathological process of neurodegeneration is accompanied by an inflammatory reaction that is believed to contribute to the pathogenesis of neurodegenerative diseases. The aim of our study was to evaluate the influence of autoimmune reaction induced by post-traumatic vaccination with myelin self-antigen on spontaneous regeneration of dopaminergic neurons, injured with MPTP. C57BL mice were intoxicated with 40 mg/kg MPTP and seven days later immunized with MOG 35-55 peptide in CFA. On the 7th day following intoxication, the MPTP treated mice showed decrease of the dopamine level by 63% as compared to the control mice. However, starting from the 14th day following intoxication, a spectacular increase of dopamine content was observed. Immunization with MOG resulted in a statistically significant reduction of the increase in striatum as compared to non-immunized animals, and was lower by 23%, 17% and 15% on days 14, 28 and 50, respectively. Our results show suppressive influence of autoimmune reaction induced after injury on regeneration of dopamine cells intoxicated with MPTP.

Animals↗