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Lipid Toxicity in the Cardiovascular-Kidney-Metabolic Syndrome (CKMS)
John A D'Elia1, Larry A Weinrauch1
1Kidney and Hypertension Section, E P Joslin Research Laboratory, Joslin Diabetes Center, Department of Medicine, Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, MA 02215, USA.
Abstract:
Recent studies of Cardiovascular-Kidney-Metabolic Syndrome (CKMS) indicate that elevated concentrations of derivatives of phospholipids (ceramide, sphingosine), oxidized LDL, and lipoproteins (a, b) are toxic to kidney and heart function. Energy production for renal proximal tubule resorption of critical fuels and electrolytes is required for homeostasis. Cardiac energy for ventricular contraction/relaxation is preferentially supplied by long chain fatty acids. Metabolism of long chain fatty acids is accomplished within the cardiomyocyte cytoplasm and mitochondria by means of the glycolytic, tricarboxylic acid, and electron transport cycles. Toxic lipids and excessive lipid concentrations may inhibit cardiac function. Cardiac contraction requires calcium movement from the sarcoplasmic reticulum from a high to a low concentration at relatively low energy cost. Cardiac relaxation involves calcium return to the sarcoplasmic reticulum from a lower to a higher concentration and requires more energy consumption. Diastolic cardiac dysfunction occurs when cardiomyocyte energy conversion is inadequate. Diastolic dysfunction from diminished ATP availability occurs in the presence of inadequate blood pressure, glycemia, or lipid control and may lead to heart failure. Similar disruption of renal proximal tubular resorption of fuels/electrolytes has been found to be associated with phospholipid (sphingolipid) accumulation. Elevated concentrations of tissue oxidized low-density lipoprotein cholesterols are associated with loss of filtration efficiency at the level of the renal glomerular podocyte. Macroscopically excessive deposits of epicardial and intra-nephric adipose are associated with vascular pathology, fibrosis, and inhibition of essential functions in both heart and kidney. Chronic triglyceride accumulation is associated with fibrosis of the liver, cardiac and renal structures. Successful liver, kidney, or cardiac allograft of these vital organs does not eliminate the risk of lipid toxicity. Lipid lowering therapy may assist in protecting vital organ function before and after allograft transplantation.
Insights
Cardiovascular-Kidney-Metabolic Syndrome (CKMS) involves toxic lipid accumulation harming heart and kidney function. Lipid-lowering therapies may protect vital organs, even after transplantation.
Area of Science:
- Cardiovascular Medicine
- Nephrology
- Metabolic Disorders
Background:
- Cardiovascular-Kidney-Metabolic Syndrome (CKMS) is linked to elevated toxic lipids like ceramides, sphingolipids, and oxidized LDL.
- These lipids impair kidney and heart energy metabolism, crucial for homeostasis and cardiac function.
- Diastolic dysfunction and reduced renal filtration efficiency are associated with lipid accumulation.
Purpose of the Study:
- To elucidate the detrimental effects of specific lipid derivatives on cardiovascular and renal health.
- To highlight the role of lipid metabolism in cardiac energy production and renal tubular function.
- To underscore the potential benefits of lipid-lowering therapies in managing CKMS and protecting organ transplants.
Main Methods:
- Review of recent studies on lipid profiles in CKMS patients.
- Analysis of the impact of specific lipids on cellular energy metabolism in cardiac and renal tissues.
- Examination of the association between lipid deposition and organ dysfunction, including fibrosis and vascular pathology.
Main Results:
- Elevated ceramides, sphingolipids, oxidized LDL, and lipoproteins are toxic to kidney and heart.
- Impaired cardiac energy metabolism, particularly ATP availability, leads to diastolic dysfunction and heart failure.
- Lipid accumulation in renal tubules disrupts fuel/electrolyte resorption, and in glomeruli impairs filtration.
- Excessive adipose deposits and triglyceride accumulation contribute to vascular pathology and fibrosis in heart and kidneys.
Conclusions:
- Lipid toxicity significantly impacts cardiovascular and kidney function in CKMS.
- Maintaining optimal lipid control is essential for preventing organ damage and dysfunction.
- Lipid-lowering interventions show promise in preserving vital organ function pre- and post-transplantation.
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