Monoclonal antibody therapeutics as potential interferences on protein electrophoresis and immunofixation
-
Maria Alice V. Willrich
, Paula M. Ladwig
Abstract
Background: The use of therapeutic recombinant monoclonal antibodies (mAbs) has triggered concerns of mis-diagnosis of a plasma cell dyscrasia in treated patients. The purpose of this study is to determine if infliximab (INF), adalimumab (ADA), eculizumab (ECU), vedolizumab (VEDO), and rituximab (RITU) are detected as monoclonal proteins by serum protein electrophoresis (SPEP) and immunofixation electrophoresis (IFE).
Methods: Pooled normal sera were spiked with various concentrations (ranging from trough to peak) of INF, ADA, ECU, VEDO and RITU. The peak concentration for VEDO and RITU was also added to samples with known monoclonal gammopathies. All samples were analyzed by SPEP (Helena Laboratories) and IFE (Sebia); sera containing peak concentrations of mAbs were reflexed to electrospray-time-of-flight mass spectrometry (AbSciex Triple TOF 5600) for the intact light chain monoclonal immunoglobulin rapid accurate mass measurement (miRAMM).
Results: For all mAbs tested, no quantifiable M-spikes were observed by SPEP at any concentration analyzed. Small γ fraction abnormalities were noted on SPEP for VEDO at 300 μg/mL and RITU at 400 μg/mL, with identification of small IgG κ proteins on IFE. Using miRAMM for peak samples, therapeutic mAbs light chain accurate masses were identified above the polyclonal background and were distinct from endogenous monoclonal gammopathies.
Conclusions: MAbs should not be easily confounded with plasma cell dyscrasias in patients undergoing therapy except when a SPEP and IFE are performed within a couple of days from infusion (peak). In ambiguous cases the use of the miRAMM technology could precisely identify the therapeutic mAb distinct from any endogenous monoclonal protein.
References
1. Chan AC, Carter PJ. Therapeutic antibodies for autoimmunity and inflammation. Nat Rev Immunol 2010;10:301–16.10.1038/nri2761Search in Google Scholar
2. Wang W, Wang EQ, Balthasar JP. Monoclonal antibody pharmacokinetics and pharmacodynamics. Clin Pharmacol Therap 2008;84:548–58.10.1038/clpt.2008.170Search in Google Scholar
3. McCudden CR, Voorhees PM, Hainsworth SA, Whinna HC, Chapman JF, Hammett-Stabler CA, et al. Interference of monoclonal antibody therapies with serum protein electrophoresis tests. Clin Chem 2010;56:1897–9.10.1373/clinchem.2010.152116Search in Google Scholar
4. Genzen JR, Kawaguchi KR, Furman RR. Detection of a monoclonal antibody therapy (ofatumumab) by serum protein and immunofixation electrophoresis. Br J Haematol 2011;155:123–5.10.1111/j.1365-2141.2011.08644.xSearch in Google Scholar
5. Willrich MA, Murray DL, Barnidge DR, Ladwig PM, Snyder MR. Quantitation of infliximab using clonotypic peptides and selective reaction monitoring by LC-MS/MS. Int Immunopharmacol 2015;28:513–20.10.1016/j.intimp.2015.07.007Search in Google Scholar
6. Katrangi W, Ladwig PM, Barnidge DR, Mills JR, Dasari S, Murray DL, et al. A-260 vedolizumab quantitation in serum using SRM and micro LC-ESI-Q-TOF mass spectrometry. Clin Chem 2015;61:10S.Search in Google Scholar
7. Pittock SJ, Lennon VA, McKeon A, Mandrekar J, Weinshenker BG, Lucchinetti CF, et al. Eculizumab in AQP4-IgG-positive relapsing neuromyelitis optica spectrum disorders: an open-label pilot study. Lancet Neurol 2013;12:554–62.10.1016/S1474-4422(13)70076-0Search in Google Scholar
8. Katzmann JA, Kyle RA, Benson J, Larson DR, Snyder MR, Lust JA, et al. Screening panels for detection of monoclonal gammopathies. Clin Chem 2009;55:1517–22.10.1373/clinchem.2009.126664Search in Google Scholar PubMed PubMed Central
9. Barnidge DR, Dasari S, Botz CM, Murray DH, Snyder MR, Katzmann JA, et al. Using mass spectrometry to monitor monoclonal immunoglobulins in patients with a monoclonal gammopathy. J Proteome Res 2014;13:1419–27.10.1021/pr400985kSearch in Google Scholar PubMed
10. Mills JR, Barnidge DR, Murray DL. Detecting monoclonal immunoglobulins in human serum using mass spectrometry. Methods 2015;81:56–65.10.1016/j.ymeth.2015.04.020Search in Google Scholar PubMed
11. Barnidge DR, Dasari S, Ramirez-Alvarado M, Fontan A, Willrich MA, Tschumper RC, et al. Phenotyping polyclonal kappa and lambda light chain molecular mass distributions in patient serum using mass spectrometry. J Proteome Res 2014;13: 5198–205.10.1021/pr5005967Search in Google Scholar PubMed
12. Ruinemans-Koerts J, Verkroost C, Schmidt-Hieltjes Y, Wiegers C, Curvers J, Thelen M, et al. Interference of therapeutic monoclonal immunoglobulins in the investigation of M-proteins. Clin Chem Lab Med 2014;52:e235–7.10.1515/cclm-2013-0898Search in Google Scholar PubMed
©2016 by De Gruyter
Articles in the same Issue
- Frontmatter
- Editorial
- Protein electrophoresis and serum free light chains in the diagnosis and monitoring of plasma cell disorders: laboratory testing and current controversies
- Laboratory Testing as Recommended by the Guidelines and the International Myeloma Working Group
- Laboratory testing requirements for diagnosis and follow-up of multiple myeloma and related plasma cell dyscrasias
- Free light chain testing for the diagnosis, monitoring and prognostication of AL amyloidosis
- Laboratory testing in monoclonal gammopathy of renal significance (MGRS)
- The impact of renal function on the clinical performance of FLC measurement in AL amyloidosis
- Serum and Urine Protein Electrophoresis and Immunofixation Testing
- Challenges of measuring monoclonal proteins in serum
- Screening immunofixation should replace protein electrophoresis as the initial investigation of monoclonal gammopathy: Point
- Should routine laboratories stop doing screening serum protein electrophoresis and replace it with screening immune-fixation electrophoresis? No quick fixes: Counterpoint
- Moving towards harmonized reporting of serum and urine protein electrophoresis
- Multiple qualitative and quantitative methods for free light chain analysis are necessary as first line tests for AL amyloidosis
- Use of isoelectric focusing to discriminate transient oligoclonal bands from monoclonal protein in treated myeloma
- New patterns of relapse in multiple myeloma: a case of “light chain escape” in which FLC predicted relapse earlier than urine and serum immunofixation
- Serum Free Light Chain Methods and Controversies
- Analytical issues of serum free light chain assays and the relative performance of polyclonal and monoclonal based reagents
- Measurement of free light chains with assays based on monoclonal antibodies
- Measurement of free light chains – pros and cons of current methods
- Is accuracy of serum free light chain measurement achievable?
- Performance goals for immunoglobulins and serum free light chain measurements in plasma cell dyscrasias can be based on biological variation
- A patient with AL amyloidosis with negative free light chain results
- Strengths and weaknesses of methods for identifying monoclonal free light chains of Ig: examples from two cases with renal disease
- Comparison of Freelite™ and N Latex serum free light chain assays in subjects with end stage kidney disease on haemodialysis
- New Laboratory Assays and Challenges
- Quantification of β-region IgA monoclonal proteins – should we include immunochemical Hevylite® measurements? Point
- Quantification of β region IgA paraproteins – should we include immunochemical “heavy/light chain” measurements? Counterpoint
- Free light chains and heavy/light chains in monitoring POEMS patients
- Monitoring free light chains in serum using mass spectrometry
- Monoclonal antibody therapeutics as potential interferences on protein electrophoresis and immunofixation
- Monitoring multiple myeloma patients treated with daratumumab: teasing out monoclonal antibody interference
- Interference of daratumumab in monitoring multiple myeloma patients using serum immunofixation electrophoresis can be abrogated using the daratumumab IFE reflex assay (DIRA)
- Letter to the Editor
- Discrepancy between FLC assays: only a problem of quantification?
Articles in the same Issue
- Frontmatter
- Editorial
- Protein electrophoresis and serum free light chains in the diagnosis and monitoring of plasma cell disorders: laboratory testing and current controversies
- Laboratory Testing as Recommended by the Guidelines and the International Myeloma Working Group
- Laboratory testing requirements for diagnosis and follow-up of multiple myeloma and related plasma cell dyscrasias
- Free light chain testing for the diagnosis, monitoring and prognostication of AL amyloidosis
- Laboratory testing in monoclonal gammopathy of renal significance (MGRS)
- The impact of renal function on the clinical performance of FLC measurement in AL amyloidosis
- Serum and Urine Protein Electrophoresis and Immunofixation Testing
- Challenges of measuring monoclonal proteins in serum
- Screening immunofixation should replace protein electrophoresis as the initial investigation of monoclonal gammopathy: Point
- Should routine laboratories stop doing screening serum protein electrophoresis and replace it with screening immune-fixation electrophoresis? No quick fixes: Counterpoint
- Moving towards harmonized reporting of serum and urine protein electrophoresis
- Multiple qualitative and quantitative methods for free light chain analysis are necessary as first line tests for AL amyloidosis
- Use of isoelectric focusing to discriminate transient oligoclonal bands from monoclonal protein in treated myeloma
- New patterns of relapse in multiple myeloma: a case of “light chain escape” in which FLC predicted relapse earlier than urine and serum immunofixation
- Serum Free Light Chain Methods and Controversies
- Analytical issues of serum free light chain assays and the relative performance of polyclonal and monoclonal based reagents
- Measurement of free light chains with assays based on monoclonal antibodies
- Measurement of free light chains – pros and cons of current methods
- Is accuracy of serum free light chain measurement achievable?
- Performance goals for immunoglobulins and serum free light chain measurements in plasma cell dyscrasias can be based on biological variation
- A patient with AL amyloidosis with negative free light chain results
- Strengths and weaknesses of methods for identifying monoclonal free light chains of Ig: examples from two cases with renal disease
- Comparison of Freelite™ and N Latex serum free light chain assays in subjects with end stage kidney disease on haemodialysis
- New Laboratory Assays and Challenges
- Quantification of β-region IgA monoclonal proteins – should we include immunochemical Hevylite® measurements? Point
- Quantification of β region IgA paraproteins – should we include immunochemical “heavy/light chain” measurements? Counterpoint
- Free light chains and heavy/light chains in monitoring POEMS patients
- Monitoring free light chains in serum using mass spectrometry
- Monoclonal antibody therapeutics as potential interferences on protein electrophoresis and immunofixation
- Monitoring multiple myeloma patients treated with daratumumab: teasing out monoclonal antibody interference
- Interference of daratumumab in monitoring multiple myeloma patients using serum immunofixation electrophoresis can be abrogated using the daratumumab IFE reflex assay (DIRA)
- Letter to the Editor
- Discrepancy between FLC assays: only a problem of quantification?