Ultrastructural Characteristics of Mitochondria in Cardiomyocytes in Heart Failure
NCT ID: NCT05770349
Last Updated: 2025-09-19
Study Results
The study team has not published outcome measurements, participant flow, or safety data for this trial yet. Check back later for updates.
Basic Information
Get a concise snapshot of the trial, including recruitment status, study phase, enrollment targets, and key timeline milestones.
RECRUITING
45 participants
OBSERVATIONAL
2023-03-31
2027-02-28
Brief Summary
Review the sponsor-provided synopsis that highlights what the study is about and why it is being conducted.
At the same time, the topic of the influence of mitochondrial dysfunction on the prognosis and clinical course of CHF remains debatable today. Direct study of the structural and functional features of mitochondria in human cardiomyocytes is an extremely difficult task, and therefore, such studies are carried out extremely rarely and on very limited cohorts. In the planned study, due to the long time of the study material recruitment, the ultrastructure of mitochondria in a large cohort of patients, ranging from 45 to 60 people, will be studied.
The aim of this study is to study the association of mitochondrial dysfunction with the clinical course and outcomes of CHF of ischemic etiology, as well as to assess the degree of compliance of indirect criteria of mitochondrial dysfunction with direct ultrastructural characteristics of mitochondria in cardiomyocytes.
This single-center prospective cohort study will involve 45-60 patients. The patients will have biopsy samples taken from the right auricle, as well as blood collection and preservation and its derivatives. Electron microscopy of myocardial samples will be performed to assess the ultrastructure of mitochondria of cardiomyocytes. The results of a direct study of mitochondria will be compared with indirect signs of mitochondrial dysfunction: the registration of the phenomenon of increased leaching of radiopharmaceuticals from the myocardium, an increase in the number of copies of mitochondrial DNA and the concentration of cytochrome C in the blood, the affiliation of mitochondrial DNA to haplogroup K. The results obtained in each of the research tasks will have high scientific significance and publication potential.
Related Clinical Trials
Explore similar clinical trials based on study characteristics and research focus.
Relationship Between Abnormalities of Desmin Cytoskeleton, Mitochondrial Activity and Expression of Ubiquitin in Aspect of Pathogenesis of Heart Failure and Prognosis
NCT00819442
Congestive Heart Failure Surgical Treatmment With Autologous Stem Cell Therapy
NCT00480961
Cardiac Mitochondrial Function in Explanted Human Hearts
NCT04500938
Cardiac Transplant Metabolomics With and Without Rejection
NCT05772442
Myeloid-Derived Supressor Cells in Cardiac Surgery Patients
NCT02902939
Detailed Description
Dive into the extended narrative that explains the scientific background, objectives, and procedures in greater depth.
At the same time, the topic of the influence of mitochondrial dysfunction on the prognosis and clinical course of CHF remains debatable today. Direct study of the structural and functional features of mitochondria in human cardiomyocytes is an extremely difficult task, and therefore, such studies are carried out extremely rarely and on very limited cohorts. In the planned study, due to the long time of the study material recruitment, the ultrastructure of mitochondria in a large cohort of patients, ranging from 45 to 60 people, will be studied.
The aim of this study is to study the association of mitochondrial dysfunction with the clinical course and outcomes of CHF of ischemic etiology, as well as to assess the degree of compliance of indirect criteria of mitochondrial dysfunction with direct ultrastructural characteristics of mitochondria in cardiomyocytes.
This single-center prospective cohort study will involve 45-60 patients. The patients will have biopsy samples taken from the right auricle, as well as blood collection and preservation and its derivatives. Electron microscopy of myocardial samples will be performed to assess the ultrastructure of mitochondria of cardiomyocytes. The results of a direct study of mitochondria will be compared with indirect signs of mitochondrial dysfunction: the registration of the phenomenon of increased leaching of radiopharmaceuticals from the myocardium, an increase in the number of copies of mitochondrial DNA and the concentration of cytochrome C in the blood, the affiliation of mitochondrial DNA to haplogroup K. The results obtained in each of the research tasks will have high scientific significance and publication potential.
The results of the study will be obtained by solving the following tasks:
1. To investigate the clinical and prognostic significance of mitochondrial dysfunction, confirmed by direct and indirect methods of investigation, in patients with CHF with stenosing atherosclerosis of the coronary arteries who underwent surgical myocardial revascularization in the prospective cohort study;
2. To study ultrastructural characteristics of mitochondria of cardiomyocytes from the auricle of the right atrium using a transmission electron microscope JEM-1400 (JEOL, Japan) in patients with CHF with reduced or mildly reduced left ventricular ejection fraction (HFrEF, HFmrEF) and stenosing atherosclerosis of the coronary arteries;
3. To evaluate the features of the mitochondrial genome, in particular, to determine whether the mitochondrial DNA belongs to haplogroup K, which may be associated with impaired adaptation to hypoxia due to the negative effect of guanine replacement on adenine at position 9055 (G9055A) \[Strauss K.A. et al. Severity of cardiomyopathy associated with adenine nucleotide translocator-1 deficiency correlates with mtDNA haplogroup. Proc Natl Acad Sci U S A. 2013 Feb 26;110(9):3453-8. doi: 10.1073/pnas.1300690110\] and its relation to the prognosis of the disease and the ultrastructure of mitochondria according to electron microscopy;
4. To study the association of the number of copies of mitochondrial DNA in blood plasma with ultrastructural signs of mitochondrial dysfunction in CMC;
5. To evaluate the content of the biochemical marker of mitochondrial damage - cytochrome C in the blood serum of patients with CHF and to identify the correlation of its concentration with the severity of structural and functional changes in mitochondria;
6. To assess the significance of the phenomenon of enhanced leaching of the radiopharmaceutical Tc99-MIBI from the myocardium and to determine the degree of correlation of the rate of leaching of Tc99-MIBI with the ultrastructural state of mitochondria, as well as with the clinical course and prognosis of CHF;
7. Calculate statistical parameters (sensitivity, specificity, degree of concordance) for each of the indirect signs of mitochondrial dysfunction and their totality in the diagnosis of mitochondrial ultrastructure disorders according to electron microscopy data and prediction of the clinical course and outcomes of CHF in patients undergoing surgical myocardial revascularization.
Thus, it is planned to prove for the first time in the world the association of direct ultrastructural signs of mitochondrial dysfunction with the clinical course and outcomes of CHF in patients who underwent surgical myocardial revascularization. For the first time in the world, the degree of compliance of available indirect signs of mitochondrial dysfunction with the true ultrastructural state of mitochondria will be presented, with the inclusion of 45-60 patients in the study. Based on the results of the study, a parameter or a set of parameters will be proposed that will be most associated with the clinical course of the disease and the outcome in patients with CHF of ischemic etiology.
The results obtained will have high world-class scientific significance and importance, both for fundamental medical science and for the practical implementation of the results.
Conditions
See the medical conditions and disease areas that this research is targeting or investigating.
Study Design
Understand how the trial is structured, including allocation methods, masking strategies, primary purpose, and other design elements.
COHORT
PROSPECTIVE
Interventions
Learn about the drugs, procedures, or behavioral strategies being tested and how they are applied within this trial.
coronary artery bypass grafting
Coronary artery bypass grafting
Eligibility Criteria
Check the participation requirements, including inclusion and exclusion rules, age limits, and whether healthy volunteers are accepted.
Inclusion Criteria
2. Obstructive multivessel coronary atherosclerosis as an indication for cardiac surgical correction of coronary blood flow (coronary bypass surgery)
3. Signed informed consent to participate in the study, separate consents for biomaterial sampling and genetic research
Exclusion Criteria
2. Additional cardiac surgery other than coronary bypass surgery (valves, aneurysm)
3. Oncological diseases in the active stage;
4. The presence of implanted devices (EX, AICD, CT);
5. Severe renal dysfunction (GFR \<30 ml/min/1.73 m2);
6. Infiltrative heart diseases (sarcoidosis, amyloidosis, accumulation diseases);
7. Autoimmune diseases;
8. Acute infectious and exacerbations of chronic somatic diseases
9. Type 1 or type 2 diabetes mellitus
10. Contraindications to myocardial scintigraphy, cardiopulmonary stress test
11. Impossibility of prescribing optimal drug therapy after cardiac surgery
18 Years
ALL
No
Sponsors
Meet the organizations funding or collaborating on the study and learn about their roles.
Russian Science Foundation
OTHER
Tomsk National Research Medical Center of the Russian Academy of Sciences
OTHER
Responsible Party
Identify the individual or organization who holds primary responsibility for the study information submitted to regulators.
Elena A. Kuzheleva
Senior Researcher
Principal Investigators
Learn about the lead researchers overseeing the trial and their institutional affiliations.
Alla A Garganeeva, Ph.D.
Role: PRINCIPAL_INVESTIGATOR
Cardiology Research Institute, Tomsk National Research Medical Center, Russian Academy of Sciences
Locations
Explore where the study is taking place and check the recruitment status at each participating site.
Tomsk National Research Medical Center, Russian Academy of Sciences
Tomsk, , Russia
Countries
Review the countries where the study has at least one active or historical site.
Central Contacts
Reach out to these primary contacts for questions about participation or study logistics.
Facility Contacts
Find local site contact details for specific facilities participating in the trial.
References
Explore related publications, articles, or registry entries linked to this study.
Garganeeva AA, Kuzheleva EA, Tukish OV, Vitt KN, Kondratiev MY, Syromyatnikova EE, Andreev SL, Arsenieva YA, Korepanov VA, Afanasiev SA. Acute Decompensated Heart Failure: Structural and Functional Changes in Mitochondria. Kardiologiia. 2024 Dec 24;64(12):12-18. doi: 10.18087/cardio.2024.12.n2737. English, Russian.
Other Identifiers
Review additional registry numbers or institutional identifiers associated with this trial.
23-75-00009
Identifier Type: -
Identifier Source: org_study_id
More Related Trials
Additional clinical trials that may be relevant based on similarity analysis.