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Published on: June 8, 2022
HDL abnormalities in nephrotic syndrome and chronic kidney disease
1Division of Nephrology and Hypertension, UCI Medical Centre, 101 The City Drive, Orange, California 92868, USA.
Insights
High-density lipoprotein (HDL) dysfunction in chronic kidney disease (CKD) and nephrotic syndrome worsens cardiovascular risk. Current therapies for these lipid abnormalities remain ineffective, highlighting a critical unmet need.
Area of Science:
- Cardiovascular Medicine
- Nephrology
- Lipid Metabolism
Background:
- Normal high-density lipoprotein (HDL) function is crucial for cardiovascular protection via reverse cholesterol transport and anti-inflammatory/antioxident properties.
- Patients with nephrotic range proteinuria or chronic kidney disease (CKD) exhibit significant alterations in HDL metabolism, structure, and function.
- These HDL abnormalities contribute to cardiovascular complications like atherosclerosis and glomerulosclerosis.
Purpose of the Study:
- To review normal HDL metabolism.
- To discuss the characteristics, mechanisms, and consequences of HDL abnormalities in nephrotic syndrome and advanced CKD.
Main Methods:
- Literature review focusing on HDL metabolism and its alterations in kidney disease.
Main Results:
- HDL function is impaired in CKD and nephrotic syndrome, exacerbating cardiovascular risk.
- Factors influencing lipid disorders in kidney disease include proteinuria, renal insufficiency, diet, medications, genetic factors, and renal replacement therapies.
- Despite understanding the mechanisms, effective treatments for dysregulated HDL are lacking.
Conclusions:
- HDL dysfunction is a significant contributor to morbidity and mortality in kidney disease patients.
- Further research is needed to develop safe and effective therapeutic strategies targeting HDL metabolism in this population.
Abstract:
Normal HDL activity confers cardiovascular and overall protection by mediating reverse cholesterol transport and through its potent anti-inflammatory, antioxidant, and antithrombotic functions. Serum lipid profile, as well as various aspects of HDL metabolism, structure, and function can be profoundly altered in patients with nephrotic range proteinuria or chronic kidney disease (CKD). These abnormalities can, in turn, contribute to the progression of cardiovascular complications and various other comorbidities, such as foam cell formation, atherosclerosis, and/or glomerulosclerosis, in affected patients. The presence and severity of proteinuria and renal insufficiency, as well as dietary and drug regimens, pre-existing genetic disorders of lipid metabolism, and renal replacement therapies (including haemodialysis, peritoneal dialysis, and renal transplantation) determine the natural history of lipid disorders in patients with kidney disease. Despite the adverse effects associated with dysregulated reverse cholesterol transport and advances in our understanding of the underlying mechanisms, safe and effective therapeutic interventions are currently lacking. This Review provides an overview of HDL metabolism under normal conditions, and discusses the features, mechanisms, and consequences of HDL abnormalities in patients with nephrotic syndrome or advanced CKD.
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