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Medical-biological Research of the Pathogenesis of COVID-19 Disease Caused by SARS-CoV-2

Medical-biological Research of the Pathogenesis of Disease Caused by SARS-CoV-2

Status
UNKNOWN
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT04611841
Acronym
COV2020
Enrollment
250
Registered
2020-11-02
Start date
2020-07-21
Completion date
2022-12-31
Last updated
2020-11-02

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Covid19

Keywords

Metavirome, SARS-CoV-2, Pathogenesis, Oxidative stress, Peptides

Brief summary

Сonducting in-depth medical and biological studies of the pathogenesis of the disease caused by the SARS-CoV-2 in Moscow, the Moscow region and some other regions of the Russian Federation.

Detailed description

To date, none of the methods used to test for coronavirus infection provide reliable information about the status of an individual's infection. Common tests based on PCR, carried out on the basis of samples taken from the human respiratory tract, give a positive answer in far from all cases. Antibody tests may not record the initial stages of the disease, or may not reveal residual immunity in those who have been ill, while giving cross-reactions to other common coronaviruses. A comprehensive assessment of the biological parameters of the virus and the parameters of the immune response to infection is required. In this regard, we propose an integrated approach, including the use of PCR testing technology, analysis of the immune response in the form of antibodies of all major classes (IgG, IgA), determination of inflammation markers, C-reactive protein, detailed blood test, ferritin and troponin. In addition, an analysis of the genetic diversity of strains of the pathogen COVID-19 circulating among various groups of the population of the Russian Federation will be carried out. To collect and analyze data, it is planned to enter information into a special electronic system and analyze the collected data with a wide range of informative methods that allow layer by layer to compare and collect a complete picture of what is happening. Objectives of the study: 1. Identifying the percentage of infected in the population in Moscow, the Moscow region and some other regions where the epidemic situation in connection with SARS-CoV-2 remains tense; 2. Study of genetic diversity (including metavirome) and dynamics of structural variability of the causative agent of coronavirus infection in the studied regions; 3. Studying the features of the formation and tension of immunity in patients who have undergone coronavirus infection of varying severity; 4. Clarification of the mechanisms of occurrence and development of coronavirus infection. In the study of biological samples obtained from research participants, methods of proteomics, peptidomics, next generation sequencing (NGS), physicochemical methods of analysis will be used.

Interventions

None listed

Sponsors

Burnasyan Federal Medical Biophysical Center
CollaboratorOTHER_GOV
Federal Research Clinical Center of Federal Medical & Biological Agency, Russia
CollaboratorOTHER_GOV
Moscow city hospital named after S.I. Spasokukotskiy
CollaboratorUNKNOWN
Federal State Public Scientific Institution, Scientific Center for Family Health and Human Reproduction Problems
CollaboratorOTHER
Federal State Budgetary Healthcare Institution, Hospital RAS
CollaboratorUNKNOWN
Federal Research and Clinical Center of Physical-Chemical Medicine
Lead SponsorOTHER

Study design

Observational model
COHORT
Time perspective
CROSS_SECTIONAL

Eligibility

Sex/Gender
ALL
Age
18 Years to 75 Years
Healthy volunteers
No

Inclusion criteria

* Age over 18 and under 75 years old * COVID-19 diagnosis confirmed by PCR test * Written consent to participate in the study

Exclusion criteria

* Unwillingness or inability to give written informed consent to participate in the study * A serious condition with a threat to life or contraindications that prevent the collection of biomaterial * Oncological diseases outside the stage of remission

Design outcomes

Primary

MeasureTime frameDescription
Determination of antibody binding of patients diagnosed with COVID-19 to proteins of the SARS-CoV-2 virusThrough samples collection end, an average of 2 yearsVisualization of antibody binding to linear and volumetric sequences SARS-CoV-2 proteins of the virus in 200 samples of blood plasma by the methods Western blot and enzyme-linked immunosorbent assay. It is necessary to identify the epitopes of the SARS-CoV-2 virus recognized by the human immune system and to analyze the individual response of different patients to coronavirus infection. Sample collection time points: Point 1 - on the day of admission if there is a positive test for RNA virus or on the day of receipt of confirmation of the presence of the virus in an already hospitalized patient; Point 6 - an acute condition, regardless of the day of observation; Point 7 - statement, regardless of the day of observation.
Determination of the presence of peptides of the SARS-CoV-2 virus in the plasma of patients diagnosed with COVID-19Through samples collection end, an average of 2 yearsDetermination of the presence of peptides of the SARS-CoV-2 virus in 100 samples of blood plasma, confirmed by mass spectrometry. It is necessary to identify the correlation between the severity of the coronavirus infection and the presence of viral peptides in the patient's blood Sample collection time points: Point 1 - on the day of admission if there is a positive test for RNA virus or on the day of receipt of confirmation of the presence of the virus in an already hospitalized patient; Point 6 - an acute condition, regardless of the day of observation; Point 7 - statement, regardless of the day of observation.
Determination of the degree of oxidative damage to lipids (lipid peroxidation) in the blood plasma of patients infected with coronavirusThrough samples collection end, an average of 2 yearsThe content of lipid peroxidation products in blood plasma, expressed in μg / ml of plasma. Analysis 200 samples of blood plasma by spectrophotometric and spectrofluorimetric methods. To demonstrate a statistically significant difference from the control group of patients not infected with coronavirus. Sample collection time points: Point 1 - on the day of admission if there is a positive test for RNA virus or on the day of receipt of confirmation of the presence of the virus in an already hospitalized patient; Point 6 - an acute condition, regardless of the day of observation; Point 7 - statement, regardless of the day of observation.
Revealing the degree of protein damage in the blood plasma of patients infected with coronavirusThrough samples collection end, an average of 2 yearsThe content of average weight molecules in blood plasma, expressed in μg / ml of plasma. Analysis 200 samples of blood plasma by spectrophotometric method. To demonstrate a statistically significant difference from the control group of patients not infected with coronavirus. Sample collection time points: Point 1 - on the day of admission if there is a positive test for RNA virus or on the day of receipt of confirmation of the presence of the virus in an already hospitalized patient; Point 6 - an acute condition, regardless of the day of observation; Point 7 - statement, regardless of the day of observation.
Measurement of iron (Fe3+) content in blood plasma of patients infected with coronavirusThrough samples collection end, an average of 2 yearsThe content of iron ions (Fe3+) in units of optical density per 1 ml of plasma. Analysis 200 samples of blood plasma by spectrophotometric method. To demonstrate a statistically significant difference from the control group of patients not infected with coronavirus. Sample collection time points: Point 1 - on the day of admission if there is a positive test for RNA virus or on the day of receipt of confirmation of the presence of the virus in an already hospitalized patient; Point 6 - an acute condition, regardless of the day of observation; Point 7 - statement, regardless of the day of observation.
Metagenomic analysis of viral and bacterial respiratory flora of selected samplesThrough samples collection end, an average of 2 years500 metagenomes for comparative bioinformatics analysis of viral and bacterial flora in patients with COVID-19 of varying severity. Sample collection time points: Point 1 - on the day of admission if there is a positive test for RNA virus or on the day of receipt of confirmation of the presence of the virus in an already hospitalized patient; Point 6 - an acute condition, regardless of the day of observation; Point 7 - statement, regardless of the day of observation.
Analysis of the genetic variability of the SARS-CoV-2 virus, including the heterogeneity of the viral population in one patientThrough samples collection end, an average of 2 yearsBioinformatic analysis of the 500 viral genomes for comparison genetic characteristics of different strains SARS-CoV-2. Sample collection time points: Point 1 - on the day of admission if there is a positive test for RNA virus or on the day of receipt of confirmation of the presence of the virus in an already hospitalized patient; Point 6 - an acute condition, regardless of the day of observation; Point 7 - statement, regardless of the day of observation.

Countries

Russia

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026