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Quantification of liver iron overload disease with laser ablation inductively coupled plasma mass spectrometry
Philipp Kim1, Sabine Weiskirchen1, Ricarda Uerlings1
1Institute of Molecular Pathobiochemistry, Experimental Gene Therapy and Clinical Chemistry (IFMPEGKC), RWTH University Hospital Aachen, Pauwelsstr 30, D-52074, Aachen, Germany.
Insights
New laser ablation ICP-MS protocols enable precise hepatic metal bio-imaging for diagnosing iron overload. This method aids in understanding metal imbalances and staging hereditary hemochromatosis.
Area of Science:
- Biochemistry
- Genetics
- Medical Diagnostics
Background:
- Hereditary hemochromatosis is a common Caucasian genetic disorder causing excess iron stores.
- Accurate hepatic iron quantification is crucial due to incomplete genotype penetrance.
- Current diagnostic methods include histology, chemical analysis, and imaging.
Purpose of the Study:
- To establish novel laser ablation inductively coupled plasma mass spectrometry (LA-ICP-MS) protocols for hepatic metal bio-imaging.
- To evaluate the utility of these protocols in diagnosing iron overload.
Main Methods:
- Development of new LA-ICP-MS protocols for hepatic metal bio-imaging.
- Application of LA-ICP-MS for simultaneous measurement of iron and other metals/metalloids in liver tissue.
Main Results:
- The developed LA-ICP-MS protocols enable sensitive and spatially resolved iron measurements.
- Simultaneous determination of multiple metals and metalloids is achievable with high quantification ability.
- These protocols are a significant asset in diagnosing iron overload.
Conclusions:
- LA-ICP-MS provides powerful, sensitive, and spatially resolved analysis for solid samples.
- This technique offers unique insights into metal imbalances associated with iron overload.
- LA-ICP-MS is a valuable addition to routine diagnosis of iron overload and hepatic metal dysregulation.
Background:
Hereditary hemochromatosis is the most frequent, identified, genetic disorder in Caucasians affecting about 1 in 1000 people of Northern European ancestry, where the associated genetic defect (homozygosity for the p.Cys282Tyr polymorphism in the HFE gene) has a prevalence of approximately 1:200. The disorder is characterized by excess iron stores in the body. Due to the incomplete disease penetrance of disease-associated genotype, genetic testing and accurate quantification of hepatic iron content by histological grading of stainable iron, quantitative chemical determination of iron, or imaging procedures are important in the evaluation and staging of hereditary hemochromatosis.
Methods:
We here established novel laser ablation inductively coupled plasma mass spectrometry protocols for hepatic metal bio-imaging for diagnosis of iron overload.
Results:
We demonstrate that these protocols are a significant asset in the diagnosis of iron overload allowing iron measurements and simultaneous determination of various other metals and metalloids with high sensitivity, spatial resolution, and quantification ability.
Conclusions:
The simultaneous measurement of various metals and metalloids offers unique opportunities for deeper understanding of metal imbalances. Laser ablation inductively coupled plasma mass spectrometry (LA-ICP-MS) is a highly powerful and sensitive technique for the analysis of a variety of solid samples with high spatial resolution. We conclude that this method is an important add-on to routine diagnosis of iron overload and associated hepatic metal dysbalances resulting thereof.
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