Evaluation of the Regeneration Capacity of Satellite Cells From the Quadriceps Compared to That of the Diaphragm
NCT ID: NCT05194631
Last Updated: 2024-12-06
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.
COMPLETED
NA
12 participants
INTERVENTIONAL
2022-02-18
2024-05-30
Brief Summary
Review the sponsor-provided synopsis that highlights what the study is about and why it is being conducted.
Thus our main objective of thus study is to compare in the same patient the regenerative capacity of the muscular fiber of the quadriceps to that of the diaphragm in order to set up an in vitro model allowing to test in humans future pharmacological treatment devoted to limit the incidence of VIDD.
In this study will be recruited patients treated surgically for a benign or malignant tumor of the liver requiring surgical excision in contact with the diaphragm and who have agreed to participate in the BOTAN study. The resection to be complete (R0) must pass within the diaphragmatic muscle allowing us to obtain without any constraint for the patient, diaphragmatic tissue.
The provision of 10 samples will enable us to produce the cell cultures needed to achieve the study objectives. In order to take into account subjects who leave the study without meeting the primary endpoint, we plan to include up to 15 subjects.
During this surgery, for the purposes of the present study, the investigators will perform a quadriceps biopsy. Quadriceps biopsies are widely used in biomedical research and no deleterious effects have been described. The surgical team is fully qualified for this type of sampling and all experiments necessary to compare regenerative capacity of quadriceps and diaphragmatic muscular fiber use laboratory techniques perfectly mastered by our research team.
For each patients, this study will be performed over two visits. The first, during a consultation will allow the inclusion of the patient, as well as the collection of clinical data and a second during the scheduled surgical intervention where quadriceps biopsy will be realised. The expected duration of inclusions will be one year.
No immediate individual benefit is expected for the patient. This study aims to improve, in the future, therapies that reduce the incidence of diaphragmatic dysfunction induced by mechanical ventilation. In fact, diaphragmatic dysfunction induced by ventilation is observed in at least 50% of patients in intensive care; this dysfunction has been implicated in the significant lengthening of the hospital stay, the difficulties in weaning from mechanical ventilation and in the increased risk of co-morbidity and mortality. The validation of the first in vitro model in humans of this dysfunction, from quadriceps biopsy, will allow us to pre-select antioxidant molecules and the most effective concentrations to use for a future therapeutic trial aimed at limiting the deleterious effects of mechanical ventilation on the diaphragm in humans.
Detailed Description
Dive into the extended narrative that explains the scientific background, objectives, and procedures in greater depth.
In animal models, antioxidant molecules showed a beneficial effect to limit this pathology, highlighting the importance of oxidative stress in the pathophysiology of DDIV. Among the different molecules tested, SS-31, which is a chelator of free radicals specific to the mitochondria, has shown its effectiveness in preventing VIDD in an animal model. However, physiopathological data in Human are still needed to propose this molecule in a therapeutic trial. Indeed, the maintenance of muscle mass and therefore tissue regeneration depends on the ability of muscle stem cells (MuSC) or satellite cells to activate and differentiate. Muscular homeostasis depends also on the capacity of these cells to activate quiescence genes in order to maintain a pool of quiescent cells which keep capacity for self-renewal. In the context of a pathological microenvironment favoring excessive activation of satellite cells, such as during mechanical ventilation, the investigators can postulate that this will lead to a loss of the pool of quiescent cells, thus inducing a loss of homeostasis of the muscle tissue responsible for long-term atrophy. Recent studies on mice, have shown a higher potential for these diaphragmatic quiescent cells to be activated and participating in the renewal of damaged muscle fibers in comparison to peripheral muscles. This specificity of early activation of diaphragmatic satellite cells could weaken them against a pathological microenvironment induced by mechanical ventilation, altering their regenerative capacity. But no data currently exists in humans.
The investigators therefore want, in this study, to assess the diaphragm specificity of the physiopathological mechanisms involved in VIDD, by a comparative study in the same subject of the biological function of satellite stem cells originating from the quadriceps muscle and the diaphragm. This study is complementary to the BOTAN project validated by the IRB of Montpellier (IRB Accreditation number: 198711), on 24/11/2021 under number 2021\_IRB-MTP\_08-37, allowing the collection of diaphragmatic satellite cells from the care. In fact, in subjects included in the BOTAN study, the investigators will perform, during the same surgical intervention, allowing access to a diaphragmatic biopsy, a biopsy of the quadriceps in order to evaluate in parallel the regenerative capacities of the stem cells of the quadriceps, compared to that of the diaphragm in the same patient.
Our hypothesis is that the mechanical and oxidative stress imposed by mechanical ventilation will lead to impaired activation of satellite cells, depletion of the pool of quiescent satellite cells. The consequence will be an inability of muscular tissue regeneration and ultimately atrophy associated diaphragm contractile dysfunction. Thus by comparing the biological function of satellite cells and their regenerative capacities coming from diaphragm and quadriceps of the same patient, the investigators will be able to answer the question of whether diaphragmatic stem cells are more active in their renewal compared to those of the quadriceps and therefore more likely susceptible to lose their pool of quiescent cells, at the basis of muscle atrophy and VIDD.
This work would allow us in the future to identify new therapeutic targets aimed at limiting the early activation of satellite cells at rest, harmful for the maintenance of a pool of quiescent satellite cells during mechanical ventilation, in order to limit the impact of the VIDD.
Moreover, the BOTAN study will allow us to propose a in vitro model of VIDD from cultures of human diaphragmatic stem cells, which will be subjected to mechanical stress similar to those encountered in ventilated patients. Thanks to the present study, which will allow us to assess the specificity of early activation of the quadriceps satellite cells compared to that of the diaphragm in the same individual, the investigators will also be able to validate a in vitro tool allowing the screening of bioactive molecules of interest to limit VIDD, without the need for a diaphragm biopsy but only a quadriceps biopsy, which is much more simple and less invasive. Thus, this study is the first study in humans to propose this type of comparative evaluation, which will make it possible to propose new minimally invasive tools in the evaluation and optimization of pharmacological treatments to limit the impact of VIDD.
Conditions
See the medical conditions and disease areas that this research is targeting or investigating.
Keywords
Explore important study keywords that can help with search, categorization, and topic discovery.
Study Design
Understand how the trial is structured, including allocation methods, masking strategies, primary purpose, and other design elements.
NA
SINGLE_GROUP
BASIC_SCIENCE
NONE
Study Groups
Review each arm or cohort in the study, along with the interventions and objectives associated with them.
Regeneration Capacity of Satellite Cells
In vitro Regeneration Capacity of Satellite Cells from the Quadriceps Compared to That of the Diaphragm isolated From one patient
Quadriceps microbiopsy using a Tru-Cut biopsy needle
During surgery for a benign or malignant tumor of the liver a quadriceps microbiopsy will be performed. A 1 cm incision of the skin and fat planes will be made using a scalpel until contact with the quadriceps aponeurosis. The biopsy needle will be inserted superficially into the muscular part allowing, through a suction system, a micro biopsy of the quadriceps of approximately 25 mg.
Interventions
Learn about the drugs, procedures, or behavioral strategies being tested and how they are applied within this trial.
Quadriceps microbiopsy using a Tru-Cut biopsy needle
During surgery for a benign or malignant tumor of the liver a quadriceps microbiopsy will be performed. A 1 cm incision of the skin and fat planes will be made using a scalpel until contact with the quadriceps aponeurosis. The biopsy needle will be inserted superficially into the muscular part allowing, through a suction system, a micro biopsy of the quadriceps of approximately 25 mg.
Eligibility Criteria
Check the participation requirements, including inclusion and exclusion rules, age limits, and whether healthy volunteers are accepted.
Inclusion Criteria
* patient treated by the digestive surgery department of Montpellier University Hospital for a benign or malignant tumor of the liver requiring surgical excision in contact with the diaphragm who agreed to participate in the BOTAN study (Approval Number assigned by the IRB of Montpellier : 2021\_IRB-MTP\_08-37)
* patient clinically stable at the time of the study, ie not requiring any treatment
Exclusion Criteria
* Pregnant or breastfeeding woman.
* Patients with a body mass index \> 30
* Patients with any criteria that may in themselves impair respiratory muscle function such as chronic obstructive pulmonary disease, heart failure, systemic infection, neuromuscular pathology, psychiatric pathology or metabolic disorder.
* Patients with coagulopathy or thrombocytopenia.
30 Years
80 Years
ALL
No
Sponsors
Meet the organizations funding or collaborating on the study and learn about their roles.
University Hospital, Montpellier
OTHER
Responsible Party
Identify the individual or organization who holds primary responsibility for the study information submitted to regulators.
Locations
Explore where the study is taking place and check the recruitment status at each participating site.
University Hospital
Montpellier, , France
Countries
Review the countries where the study has at least one active or historical site.
Other Identifiers
Review additional registry numbers or institutional identifiers associated with this trial.
RECHMPL21_0384
Identifier Type: -
Identifier Source: org_study_id