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A Quantitative Detection Method for MicroRNAs in the Kidney of an Ischemic Kidney Injury Mouse Model
Published on: September 11, 2020
[Circulating microRNAs as potential biomarkers of chronic kidney disease]
K A Aitbaev1, I T Murkamilov2,3, V V Fomin4
1Scientific and Research Institute of Molecular Biology and Medicine.
Insights
Early diagnosis of chronic kidney disease (CKD) is crucial. MicroRNAs in blood or urine show promise as novel biomarkers for detecting kidney dysfunction sooner than current methods.
Area of Science:
- Nephrology
- Molecular Biology
- Biochemistry
Context:
- Chronic kidney disease (CKD) diagnosis is often delayed, missing early intervention opportunities.
- Current methods like creatinine clearance detect damage only after significant renal parenchyma loss (40-50%).
- There's a critical need for sensitive and specific biomarkers for early CKD detection.
Purpose:
- To review recent experimental and clinical studies on microRNAs as biomarkers for early CKD diagnosis and monitoring.
- To explore the role of microRNAs in kidney physiology and pathophysiology.
- To highlight the potential of microRNA expression profiles in biological fluids for detecting renal dysfunction.
Summary:
- MicroRNAs, a class of gene expression regulators, are implicated in kidney disease.
- Their expression patterns in blood and urine, potentially via exosomes, can reflect cellular changes in the kidneys.
- Altered microRNA levels are proposed as novel indicators for diagnosing and tracking CKD progression.
Impact:
- Enables earlier detection of CKD, potentially slowing disease progression and cardiovascular complications.
- Offers a new diagnostic avenue beyond traditional markers, improving patient outcomes.
- Advances the understanding of kidney pathophysiology and the role of microRNAs in renal diseases.
Abstract:
Chronic kidney disease (CKD) is a supra - nosological term that reflects the progressive nature of chronic kidney diseases, which are based on the mechanisms of nephrosclerosis. Diagnosis of CKD at the earliest stages is of great importance, because it allows, by using therapeutic agents, to slow the progression of renal dysfunction and the development of cardiovascular complications. However, the currently available methods for diagnosing renal function impairment, including the determination of endogenous creatinine clearance, can detect renal dysfunction too late, when around 40-50% of the renal parenchyma is already reversibly or irreversibly damaged. In this regard, there is an active search for new, more sensitive and specific biomarkers for early diagnosis of CKD. Recent studies in cellular and animal models of CKD have demonstrated the important role of microRNA, a new class of posttranscriptional regulators of gene expression, in physiology and pathophysiology of kidneys. In particular, it has been shown that their expression profile in blood or urine can reflect changes in cells involved in a particular pathological process, since these cells can secrete a specific population of microRNAs, for example, through secretion of microRNA-containing exosomes. This gave grounds for considering increased or decreased expression of individual microRNAs in renal tissue or biological fluids (including urine) as new biomarkers for the diagnosis and monitoring of CKD. This review presents the results of recent experimental and clinical studies on these issues.
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Chronic Kidney Disease I: Introduction
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