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Clinical, Morphometric and Biochemical Effects on Adiposopathy Associated With the Use of GLP-1RA in CKD

NCT07309094 · Cardenal Herrera University
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Official title
Clinical, Morphometric and Biochemical Effects on Adiposopathy Associated With the Use of GLP-1 Receptor Agonists in Chronic Kidney Disease
About this study
Chronic kidney disease (CKD) is defined as an irreversible abnormality of kidney structure and/or function lasting for more than three months. CKD is a major global health burden, affecting over 10% of the worldwide population and representing a leading cause of morbidity and mortality. Its progression to end-stage kidney disease (ESKD) drastically increases cardiovascular risk and is associated with a five-year survival rate of only approximately 50%. The principal risk factors for CKD-hypertension, obesity and type 2 diabetes (T2DM) in particular-are intrinsically linked through the dysfunction of fat/adipose tissue (AT), also known as adiposopathy. Adiposopathy is a key driver of cardiorenal risk in CKD. Evidence from bioimpedance, imaging techniques (CT, MRI), and molecular biology studies confirm that alterations in adipose tissue-including its quantity, distribution (e.g., perirenal, epicardial), radiodensity, and the secretion of pro-inflammatory adipokines-are powerful triggers of cardiorenal damage and mortality in these patients. This understanding frames obesity, T2DM, cardiovascular diseases (CVDs), and CKD as different manifestations of a shared spectrum, now termed adiposity-based chronic disease (ABCD), necessitating an "adipocentric" therapeutic approach. One hallmark feature of adiposopathy is the reprogramming and increase in size of certain region-specific adipose tissue. Perivisceral adipose tissue plays a pivotal role in adiposity-based chronic diseases as it releases adipokines and cytokines that not only contribute to the systemic pro-inflammatory and oxidative stress processes but may also influence the function of the organs surrounded by this tissue. GLP-1RA stimulates the receptor for glucagon-like peptide-1 (GLP-1), an incretin-like hormone released in the large intestine that reduces serum glucose concentrations by stimulating the glucose-dependent release of insulin, inhibiting the hypersecretion of glucagon (except in hypoglycemia periods) and promoting satiety. GLP-1RA reduced the incidence of cardiovascular death in patients with T2DM compared with placebo and decreased the incidence of major kidney events, also reducing the progression of kidney dysfunction and the risk of death. In animals, the observed morphological changes generated by GLP-1RA could be underlined by potential actions on adipose tissue remodeling, as these drugs upregulated the expression of AT-browning related genes in perivisceral white adipose tissue from murine models, although the transcriptomic effects from GLP-1RA on the adiposopathy process are still unknown.
Eligibility criteria
Inclusion Criteria: * \> or = 18 years of age * diagnosed with CKD in stages G1, G2, G3a, G3b, and G4, not candidate for dialysis * had uncontrolled T2DM, CVDs and/or obesity * willing to participate in the study and sign informed consent Exclusion Criteria: * Age \<18 years * pregnancy * CKD in stage G5 or G4 candidate for dialysis * neuropsychiatric diseases preventing the patient from understanding the benefits/risks associated with the project * refusal to participate and/or consent revocation were considered as exclusion criteria
Study design
Enrollment target: 250 participants
Age groups: adult, older_adult
Timeline
Starts: 2023-09-15
Estimated completion: 2028-12-31
Last updated: 2025-12-30
Interventions
Drug: GLP-1 receptor agonistDrug: SGLT2 inhibitorDrug: TirzepatideDrug: Other drugs
Primary outcomes
  • Ultrasonography change in perirenal adipose tissue thickness (16 months)
  • Change in estimated glomerular filtration rate (16 months)
Sponsor
Cardenal Herrera University · other
Contacts & investigators
ContactAna Checa-Ros, MD, PhD · contact · ana.checaros@uchceu.es · +34 961369000
ContactLuis D'Marco, MD, PhD · contact · luis.dmarcogascon@uchceu.es · +34 961369000
InvestigatorLuis D'Marco, MD, PhD · principal_investigator, Cardenal Herrera University
InvestigatorAna Checa-Ros, MD, PhD · principal_investigator, Cardenal Herrera University
All locations (1)
Vithas Valencia ConsueloRecruiting
Valencia, Valencia, Spain
Clinical, Morphometric and Biochemical Effects on Adiposopathy Associated With the Use of GLP-1RA in CKD · TrialPath