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Biomedical subjects

V P Saprykin

Publications and source records attributed to V P Saprykin.

10 recordsLinked to original sources

[Morphological variants of neutrophilic granulocytes in blood of practically normal humans].

Verification of presumed inertness of blood neutrophil granulocytes revealed their morphological heterogeneity in practically healthy donors. At light microscopic level it was expressed as a varying degree of cell cytoplasm granularity--58% of the cells were highly granular, 30% contained moderate amount of granules and 12% were completely devoid of granules. According to the ultrastructural analysis, neutrophils were subdivided into four groups: intact cells (60%), cells with slight (26%), moderate (12%) and severe (2%) changes. The criteria for this classification included changes in neutrophil shape and ultrastructure during its activation: formation of pseudo- and lobopodia, spatial redistribution of organelles, degranulation etc. Presence of neutrophils with the signs of activation in the circulation suggests that the neutrophil system normally is not inert, but is in a state of so-called working tone, thus providing high antibacterial resistance of the macroorganism exposed to natural bacterial environment.

Adult↗

[Blood neutrophilic leukocytes in patients with suppurative-septic diseases].

Neutrophil leucocytes of patients with sepsis, purulent inflammatory processes clinically close to sepsis and those of healthy persons were studied electron-microscopically. Leucocytes with degranulation due to the release of their content into the circulation were found in purulent-inflammatory diseases. Leucocytes with pronounced degranulation, areas with cytoplasma lysis and extracellular organelles (lipid droplets, primary and secondary granules with clear-cut membrane borders and content of granules without membrane borders) were observed in sepsis.

Acute Disease↗

[Ultrastructural characteristics in neutrophilic leukocytes in patients with sepsis].

Electron microscopic studies of neutrophilic leukocytes from patients with sepsis have revealed that substantial counts of these cells are prone to degradation just in the blood, the organelles of the degraded cells many of which may be identified are present in the blood plasma. The degradation of neutrophilic leukocytes in systemic circulation may be one of the morphological signs of sepsis.

Case-Control Studies↗

[Non-inflammatory form of neutrophil antibacterial response].

According to the Mechnikov theory inflammation is the only form of the protective-adaptive response of phagocytes and phagocytosis is its essence. High doses of Staphylococcus aureus (25 x 10(6) and 25 x 10(2) bacteria) in the absence of additional peritoneal damage do not produce the inflammation. The organism of the highest animals possess non-phlogogenic mechanisms of protection against bacteria when the phagocyte function is not the destruction of bacteria but their catching and transportation to the intestinal lumen.

Adaptation, Physiological↗

[Ultrastructural characteristics of nonphlogogenic and phlogogenic reaction of mono- and polynuclear phagocytes in their interaction with Staphylococcus aureus].

Antibacterial function of neutrophil leukocytes and peritoneal macrophages in their interaction with massive doses of Staphylococcus aureus (25 x 10(6) and 25 x 10(8) microorganisms) has been studied in the experiment in vivo. Two types of antibacterial reaction of phagocytes has been found, i.e. nonphlogogenic (physiological) and phlogogenic (inflammatory). nonphlogogenic type was characterized by marked antibacterial influence of phagocytes. phlogogenic reaction was accompanied by an increase of failure of phagocyte function, by their self-damage and break-up that leads to a decrease of their antibacterial activity followed by the inflammation.

Animals↗