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Published on: October 26, 2020
Heterogeneous afferent arteriolopathy: a key concept for understanding blood pressure-dependent renal damage
Kentaro Kohagura1, Ryo Zamami2, Nanako Oshiro3,2
1Dialysis Unit, University of the Ryukyus Hospital, Okinawa, Japan. kohagura@med.u-ryukyu.ac.jp.
Insights
Understanding afferent arteriolopathy is key to managing blood pressure-dependent kidney damage in chronic kidney disease (CKD). This review explores how vascular changes impact kidney function and treatment strategies.
Area of Science:
- Nephrology
- Cardiovascular Medicine
- Pathology
Background:
- Nephrosclerosis, characterized by arteriosclerosis and arteriolosclerosis, is linked to aging and hypertension.
- While not always causing renal decline, these vascular changes are common in chronic kidney disease (CKD).
- Understanding kidney damage progression is more critical than diagnosing nephrosclerosis itself.
Purpose of the Study:
- To explore the role of afferent arteriolopathy in blood pressure-dependent renal damage.
- To elucidate the interaction between systemic blood pressure and heterogeneous afferent arteriolopathy.
- To inform optimized therapeutic strategies for mitigating renal decline in CKD.
Main Methods:
- This is a comprehensive review of existing literature.
- Analysis of pathological features of nephrosclerosis, including afferent arteriolopathy.
- Examination of clinical trial data on antihypertensive therapies in CKD.
Main Results:
- Afferent arteriolopathy, including hyalinosis and medial/intimal thickening, disrupts renal autoregulation.
- Vascular lesions lead to glomerular hypertension and ischemia, driving nephron-level damage.
- Heterogeneous afferent arteriolopathy (dilated and narrowed types) influences BP-dependent damage.
- Combination therapy with renin-angiotensin system inhibitors (RASis) and sodium-glucose transporter 2 inhibitors (SGLT2is) shows superior efficacy over RASis alone.
Conclusions:
- Optimizing antihypertensive therapy targeting glomerular hypertension or ischemia is crucial.
- Sodium-glucose transporter 2 inhibitors (SGLT2is) may offer superior benefits by addressing both glomerular hypertension and ischemia.
- A thorough understanding of afferent arteriolopathy is pivotal for effective CKD management and slowing renal decline.
Abstract:
Hypertension, aging, and other factors are associated with arteriosclerosis and arteriolosclerosis, primary morphological features of nephrosclerosis. Although such pathological changes are not invariably linked with renal decline but are prevalent across chronic kidney disease (CKD), understanding kidney damage progression is more pragmatic than precisely diagnosing nephrosclerosis itself. Hyalinosis and medial thickening of the afferent arteriole, along with intimal thickening of small arteries, can disrupt the autoregulatory system, jeopardizing glomerular perfusion pressure given systemic blood pressure (BP) fluctuations. Consequently, such vascular lesions cause glomerular damage by inducing glomerular hypertension and ischemia at the single nephron level. Thus, the interaction between systemic BP and afferent arteriolopathy markedly influences BP-dependent renal damage progression in nephrosclerosis. Both dilated and narrowed types of afferent arteriolopathy coexist throughout the kidney, with varying proportions among patients. Therefore, optimizing antihypertensive therapy to target either glomerular hypertension or ischemia is imperative. In recent years, clinical trials have indicated that combining renin-angiotensin system inhibitors (RASis) and sodium-glucose transporter 2 inhibitors (SGLT2is) is superior to using RASis alone in slowing renal function decline, despite comparable reductions in albuminuria. The superior efficacy of SGLT2is may arise from their beneficial effects on both glomerular hypertension and renal ischemia. A comprehensive understanding of the interaction between systemic BP and heterogeneous afferent arteriolopathy is pivotal for optimizing therapy and mitigating renal decline in patients with CKD of any etiology. Therefore, in this comprehensive review, we explore the role of afferent arteriolopathy in BP-dependent renal damage.
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