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Biomedical subjects

M E Preobrazhenskaya

Publications and source records attributed to M E Preobrazhenskaya.

3 recordsLinked to original sources

Acidic alpha-D-mannosidase in phenotypically different leukemic lymphoid cells.

The activity of acid alpha-mannosidase in phenotypically characterized lymphoid cells, isolated from peripheral blood, spleen and lymph nodes of patients with various lymphoproliferative disorders has been studied. Cells with different immunophenotypes were shown to have different alpha-mannosidase activity levels. The lowest alpha-mannosidase activity was observed in cells phenotypically corresponding to early B cells obtained from B-CLL patients. The highest activity was determined in cells with phenotypes of activated, CD11c-expressing B cells from B-NHL and HCL patients. There were considerable differences in alpha-mannosidase activity between peripheral blood and spleen lymphoid cells of B-NHL patients with spleen damage. The data obtained may be used in classification, primary diagnosis and staging of hematopoietic malignancies.

Humans

Activity of some proteinases and glycosidases in human leukemic lymphoid cells at various stages of differentiation.

Activities of some glycosidases and proteinases in human leukemic lymphoid cells at various stages of differentiation have been compared. It was found that cells with different immunological phenotypes gave different enzymic spectra. Glycosidases and proteinases in lymphoid cell precursors had higher activity level than the enzymes in mature T- and B- cells. In cells of B- lineage, all activities were lower than in common precursor of lymphoid cells. In T-cells at the earlier stages of thymic differentiation, activities of all proteinases and most of glycosidases were higher than in common precursor cells whereas in mature T-helpers and T-suppressors the activities were markedly lower. Most of hydrolases in mature T-cells were twice more active than the enzymes in mature B-cells. The opposite-directional changes in activities of some hydrolases at the earlier stages of differentiation of lymphoid cells along B- or T- cells pathways are suggested.

Antigens, Differentiation

Studies on some biologically active dextrans.

The relationship between the structures of six native dextrans and their effects on nonspecific resistance to infection (n.s.r.i.) in mice and also anticomplementary activity has been studied. The data obtained showed that the n.s.r.i. activity of dextrans generally increased with increase of extent of branching, but no direct correlation between these two factors was found. Data on exodextranase-catalyzed hydrolysis of dextrans suggest that the length of the outer chains may be important for the n.s.r.i. activity of the dextrans. Dextrans characterized by a significant extent of branching were anticomplementary, but no relationship between extent of branching and anticomplementary activity was observed.

Animals