zemskov_v.m.

Research

Mathematical Modeling for the Development of a Multilevel ;Electronic Physician Assistant and Simplified Assignment of Corrective Therapy to Immunocompromised Patients

Article February 15, 2021

The development of a multilevel "electronic doctor's assistant" for identifying immunologically compromised persons and the choice of optimal differentiated immunotherapy for pyo-inflammatory and other diseases is outlined.

Global Role of Low Molecular Weight Nucleic Acids in Biological Systems

Article April 22, 2020

Some considerations and reports are made regarding personal scientific developments carried out by author V.M. Zemskov in partnership with colleagues team and my close colleague prof. Zemskov A.M. for many years, specifically, 50 years. This is a problem, to which almost entire life has been devoted. It relates to a completely new global consistent pattern that we managed to stumble upon in those distant years, and that is implemented in any biological systems - whether it’s a higher or a lower organism, a human being, or various microbial and cellular populations. Realized by low molecular weight RNA or oligonucleotides of RNA.

Controversial Issues of Clinical Immunology. Modern Concepts about the Pathogenesis of Infections

Article December 14, 2019

It is postulated that a suppressed or stimulated state of immune reactivity plays an important role in the induction of an infection process, which triggers the activation of microbiota pathogens. Infection-driven destruction of cells of a macroorganism promotes the release of endogenous low molecular weight nucleic acids, mostly RNA, which, within the first hours/days, are responsible for the stimulation of replication and toxin formation by microflora with subsequent disease exacerbation, and as a result, in a few days, cause an increase in antigenicity, immunogenicity, antibiotic susceptibility of pathogens, and activation of nonspecific and specific resistance of the body, with the resulting immune activation. Concurrently with these processes, the intensification of free-radical lipid and protein oxidation is observed, with the formation of immunosuppressive compounds which are neutralized by enzymatic and nonenzymatic factors of the antioxidant system. Thus, in infection processes homeostasis is achieved by means of a sequential cascade of microbial, immune, and metabolic mechanisms which induce, stimulate, and inhibit the responsiveness of the body.