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Published on: November 17, 2018
Kidney as modulator and target of "good/bad" HDL
Jianyong Zhong1,2, Haichun Yang1,2, Valentina Kon3
1Departments of Pediatrics, Vanderbilt University Medical Center, 1161 21st Avenue South, C-4204 Medical Center North, Nashville, TN, 37232-2584, USA.
Insights
High-density lipoproteins (HDL) are crucial for cardiovascular health, but dysfunctional HDL can harm kidneys. This review explores HDL metabolism in the kidneys and its impact on kidney disease progression.
Area of Science:
- Cardiovascular Science
- Nephrology
- Lipid Metabolism
Background:
- High-density lipoproteins (HDL) were considered "good" cholesterol due to their inverse relationship with atherosclerotic cardiovascular disease (CVD).
- Pharmacologic increases in HDL cholesterol (HDL-C) failed to yield expected clinical benefits, leading to the concept of dysfunctional HDL.
- HDL functionality extends beyond cholesterol efflux, encompassing antioxidant, anti-inflammatory, and vascular protective effects critical for kidney health.
Purpose of the Study:
- To review the kidney's role in HDL metabolism, focusing on apolipoprotein AI (apoAI).
- To explore how kidney function impacts HDL levels, composition, and functionality.
- To elucidate the mechanisms by which normal and dysfunctional HDL affect kidney damage.
Main Methods:
- Literature review of studies on HDL metabolism and kidney function.
- Analysis of the role of apolipoprotein AI (apoAI) in HDL functionality.
- Examination of the impact of HDL on renal cells and lymphatics.
Main Results:
- The kidneys play a significant role in HDL metabolism, influencing HDL levels, composition, and functionality.
- Normal apoAI/HDL in glomerular filtrate promotes beneficial effects like lymphangiogenesis and fluid resorption.
- Dysfunctional apoAI/HDL activates detrimental pathways in renal tubular cells and lymphatics, leading to fluid accumulation and progressive kidney damage.
Conclusions:
- HDL-C levels do not accurately reflect HDL function or its impact on health.
- Kidney-specific HDL metabolism and functionality are critical determinants of kidney health.
- Dysfunctional HDL contributes to kidney disease progression through specific cellular and lymphatic pathways.
Abstract:
The strong inverse relationship between low levels of high-density lipoproteins (HDLs) and atherosclerotic cardiovascular disease (CVD) led to the designation of HDL as the "good" cholesterol. The atheroprotection is thought to reflect HDL's capacity to efflux cholesterol from macrophages, followed by interaction with other lipoproteins in the plasma, processing by the liver and excretion into bile. However, pharmacologic increases in HDL-C levels have not led to expected clinical benefits, giving rise to the concept of dysfunctional HDL, in which increases in serum HDL-C are not beneficial due to lost or altered HDL functions and transition to "bad" HDL. It is now understood that the cholesterol in HDL, measured by HDL-C, is neither a marker nor the mediator of HDL function, including cholesterol efflux capacity. It is also understood that besides cholesterol efflux, HDL functionality encompasses many other potentially beneficial functions, including antioxidant, anti-inflammatory, antithrombotic, anti-apoptotic, and vascular protective effects that may be critical protective pathways for various cells, including those in the kidney parenchyma. This review highlights advances in our understanding of the role kidneys play in HDL metabolism, including the effects on levels, composition, and functionality of HDL particles, particularly the main HDL protein, apolipoprotein AI (apoAI). We suggest that normal apoAI/HDL in the glomerular filtrate provides beneficial effects, including lymphangiogenesis, that promote resorption of renal interstitial fluid and biological particles. In contrast, dysfunctional apoAI/HDL activates detrimental pathways in tubular epithelial cells and lymphatics that lead to interstitial accumulation of fluid and harmful particles that promote progressive kidney damage.
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