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New approaches for detecting thresholds of human nephrotoxicity using cadmium as an example
P W Mueller1, R G Price, W F Finn
1Center for Disease Control and Prevention, Atlanta, GA 30341, USA.
Abstract:
Damage to the kidneys is one of the primary toxic actions of metals. Nephrotoxic substances not only cause renal disease directly, but they can also destroy renal reserve capacity, potentially placing those people with additional risk factors, such as diabetes, hypertension, cardiovascular disease, and genetic predispositions, at greater risk. To detect nephrotoxicity in people at a stage where intervention can be effective, sensitive methods are needed. One of the major advantages of using sensitive biomarkers of renal damage is that people who may be particularly susceptible to renal damage can be identified early, at a reversible stage of damage, and the progression to end-stage renal disease may be halted or delayed. Various categories of tests can be used to detect effects of nephrotoxic substances on the kidney. Through the use of biomarkers of damage to various parts of the nephron, U.S. and European studies have both shown a similar pattern of damage among men occupationally exposed to cadmium. These studies indicate various thresholds of renal effects, which researchers suggest represent a cascade of progressively severe damage to the kidney. Research into new biomarkers of damage caused by exposure to nephrotoxic substances centers around mechanisms of cell death, including necrosis and apoptosis; mechanisms of cell growth, regeneration, and proliferation, including factors that control cell cycle, influence gene expression, and modulate nucleic acid synthesis; and genetic factors that increase susceptibility to renal disease. Examples of types of candidate biomarkers include cytokines, lipid mediators, growth factors, transcription factors and protooncogenes, extracellular matrix components (collagen, glycoproteins, and proteoglycans), and cell adhesion molecules. Research into new categories of biomarkers may provide additional insights into the mechanisms of damage caused by nephrotoxins.
Insights
Sensitive biomarkers are crucial for detecting early kidney damage from toxic metals, especially in at-risk individuals. Early detection allows for timely intervention, potentially halting or delaying the progression to severe renal disease.
Area of Science:
- Toxicology
- Nephrology
- Biomarker Discovery
Background:
- Kidney damage from toxic metals is a significant health concern.
- Nephrotoxic substances can exacerbate existing conditions like diabetes and hypertension.
- Early detection of renal damage is vital for effective intervention.
Purpose of the Study:
- To highlight the need for sensitive methods to detect nephrotoxicity.
- To discuss the advantages of using biomarkers for early identification of susceptible individuals.
- To explore current research into novel biomarkers for renal damage.
Main Methods:
- Review of studies on occupational exposure to cadmium.
- Analysis of biomarker patterns indicating kidney damage.
- Investigation into cellular mechanisms of nephrotoxicity (necrosis, apoptosis, regeneration).
Main Results:
- Studies show consistent patterns of kidney damage in cadmium-exposed individuals.
- Identified thresholds suggest a cascade of progressively severe renal damage.
- Candidate biomarkers include cytokines, growth factors, and cell adhesion molecules.
Conclusions:
- Sensitive biomarkers are essential for identifying and managing nephrotoxicity at reversible stages.
- Understanding mechanisms of cell death and growth aids biomarker development.
- Further research into novel biomarkers will enhance understanding of nephrotoxin-induced damage.
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