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Negative interference in cardiac troponin I immunoassays from a frequently occurring serum and plasma component
Susann Eriksson1, Miia Junikka, Päivi Laitinen
1Department of Biotechnology, University of Turku, Tykistökatu 6A, FIN-20520 Turku, Finland. susann.eriksson@utu.fi
Insights
Interfering substances in blood samples can cause inaccurate cardiac troponin I (cTnI) measurements. An improved assay using N- and C-terminal antibodies helps resolve these interferences for better cardiac injury diagnosis.
Area of Science:
- Biochemistry
- Clinical Chemistry
- Immunology
Background:
- Cardiac troponin I (cTnI) is a critical biomarker for detecting cardiac injury.
- Immunoassays, including cTnI assays, are prone to interference from various substances.
- This study investigates interfering substances affecting cTnI measurements in healthy volunteers and acute coronary syndrome (ACS) patients.
Purpose of the Study:
- To evaluate the impact of interfering substances on cTnI measurements.
- To assess the recovery of cTnI in spiked samples from healthy and ACS patient populations.
- To develop and validate an improved cTnI assay to overcome common interferences.
Main Methods:
- Cardiac troponin (ternary complex or cTnI from serum) was added to samples from healthy volunteers and ACS patients.
- cTnI levels were measured using a two-site sandwich time-resolved immunofluorometric assay with central epitope antibodies.
- An experimental assay was developed incorporating antibodies targeting N-terminal and C-terminal epitopes, alongside central ones, and compared with commercial assays (AxSYM, ACS:180).
Main Results:
- Recoveries of cTnI in the original assay ranged from 1-167% in both healthy and ACS samples.
- Supplementing the assay with N- and C-terminal antibodies improved cTnI recovery.
- In 2 of 16 ACS patients, the original assay showed normal cTnI, while the enhanced assay revealed up to 10-fold higher concentrations, indicating significant interference in commercial assays.
Conclusions:
- An unidentified component in blood interferes with central epitope-directed cTnI immunoassays, leading to falsely low results.
- The experimental assay, utilizing antibodies against N-, mid-, and C-terminal epitopes, demonstrates a promising approach to resolve these interferences.
- This enhanced assay strategy is crucial for accurate diagnosis of cardiac injury, particularly in ACS patients.
Background:
Cardiac troponin I (cTnI) is a sensitive marker of cardiac injury, but cTnI assays, like other immunoassays, are susceptible to interferences. We evaluated the presence of interfering substances by measuring the recovery of cTnI added to samples from volunteers and from patients with acute coronary syndromes (ACS).
Methods:
We added a ternary complex of human cardiac troponin (30-500 microg/L) or cTnI from serum to samples from healthy volunteers and ACS patients. We measured cTnI with a two-site sandwich time-resolved immunofluorometric assay using two antibodies against epitopes in the central stable part of cTnI. We also analyzed 108 heparin-plasma samples from 16 ACS patients with this assay, with an assay based on four antibodies, and with two commercial cTnI assays, AxSYM and ACS:180.
Results:
In samples from both healthy persons and ACS patients, recoveries for our assay were 1-167% (range). Recoveries were increased by addition of an antibody with an epitope in the N-terminal region of cTnI to the solid phase and an antibody with an epitope in the C-terminal region as a second detection antibody. In 2 of 16 patients with ACS, normal cTnI concentrations found when measured with the original assay demonstrated clinically abnormal (up to 10-fold higher) results with the additional N- and C-terminal antibodies in the early phase of infarction. Both commercial cTnI assays also demonstrated clinically misleading, falsely low cTnI concentrations.
Conclusions:
Some yet unidentified, variable component, present in the blood from healthy volunteers and ACS patients, interferes with the binding of antibodies against epitopes in the central part of cTnI used in two commercial assays. Our approach to supplement the mid-fragment cTnI antibodies with antibodies in the N- and C-terminal parts of the molecule in an experimental assay represents a step in resolving this interferent.
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