PubMed Health⌕ Search

Biomedical subjects

A I Volkov

Publications and source records attributed to A I Volkov.

At least 19 recordsLinked to original sources

[Elimination of neurospecific proteins from CNS: pathogenetic and methodical aspects].

Appearance of neurospecific proteins (NSP) outside the brain plays a certain pathogenetic role in the development of autosensitization occurring in many kinds of CNS injuries and diseases. Analysis of modern views of cerebrospinal fluid (CSF) exchange allows us to suppose that NSP are eliminated from the brain tissue within CSF, moving from the subarachnoid space into cranial veins, and by lymphatic way, into deep cervical lymph nodes. Elevation of NSP level in CSF indicates an actual neudegenerative process. Serum levels of NSP are determined by the balance between the elimination of NSP from the brain, on the one hand, and their metabolism and the response of the immune system to the appearance of these autoantigenes in the blood stream, on the other. Basing on their own data on the dynamics of NSP (NSE, GFAR, and MBP) concentrations and the proportions of these proteins in CSF and serum (coefficient of elimination) in rats after ischemic, hypoxic, and autoimmune cerebral lesions, the authors offer an algorithm of pathogenetic evaluation, including, on the one part, a conclusion on the presence or absence of a neurodegenerative process, and, on the other, a conclusion on a normal or lowered rate of NSP elimination (metabolism). The results of such an analysis may have a clinical significance in terms of the development of a pathogenetic therapy, including, in every individual case, not only neuroprotectors, but also pharmaceuticals directed towards correction of the functional condition of the immune system.

Animals↗

Selective accumulation of monoclonal antibodies against neurospecific enolase in brain tissue of rats with middle cerebral artery occlusion.

Preparations of I(125)-labeled monoclonal antibodies against neurospecific enolase and mouse plasma IgG1 were injected intravenously to rats immediately after unilateral occlusion of the middle cerebral artery. Radioactivity of I(125)-labeled monoclonal antibodies against neurospecific enolase in the brain tissue progressively increased, reached a maximum by the 48th hour, and remained practically unchanged after 72 h. At the same time radioactivity of labeled IgG1 in the brain tissue and radioactivity of both preparations in the blood, liver, spleen, kidneys, heart, and lungs decreased over 72 h. Selective accumulation of I(125)-labeled monoclonal antibodies against neurospecific enolase was less significant in the brain tissue of the contralateral hemisphere and cerebellum not exposed to ischemia.

Animals↗

[The effect of a combined vitamin--antioxidants preparations on hemostasis in rats with experimental hyperperoxidation].

Experiments on a group of 308 rats showed that prooxidant (lead acetate) introduced per os with daily meals decreases the antioxidant potential (increases lipid peroxidation, LPO) and reduces tolerance with respect to thrombin (increases the level of intravascular blood coagulation markers). For the same treatment on the background of a vitamin - antioxidants preparations (complivit or selmevit), the level of changes was significantly decreased and the resistance to thrombin was increased. Selmevit (containing selenium) was more effective. It is concluded that complex vitamin--antioxidants preparations can be used for correcting hemostatic changes in cases of hyperoxidation.

Animals↗