Chromatographic and Mass Spectrometry Approaches to Supporting Biologics Development
Posters | 2022 | ShimadzuInstrumentation
Biotherapeutics such as monoclonal antibodies and antibody–drug conjugates play an increasingly vital role in treating chronic and life-threatening diseases. Precise characterization of these complex molecules is critical to ensure structural consistency, safety, and efficacy across development, manufacturing, and quality-control stages.
This work reviews chromatographic and mass-spectrometry workflows that support biologics development. It highlights novel UHPLC, LC-MS/MS, QTOF, and MALDI-TOF platforms, along with dedicated informatics, to address challenges in impurity profiling, glycan analysis, peptide mapping, and drug-to-antibody ratio assessment.
The study employs multiple analytical approaches:
Implementation of the bioinert UHPLC system yielded stable peak shapes and reproducible ATP symmetry and area over multiple injections, demonstrating mitigation of analyte–surface interactions. QTOF analyses provided high-accuracy deconvoluted spectra for NIST reference antibodies and therapeutic mAbs such as Trastuzumab and Bevacizumab. The triple-quad platform enabled sensitive MRM quantification and rapid drug-to-antibody ratio (DAR) determinations. MALDI-TOF workflows facilitated glycan profiling, revealing characteristic N-linked glycoforms on the Fc region, and enabled peptide mapping for complementarity-determining region (CDR) verification.
The integrated suite of techniques supports critical quality attributes monitoring across bioprocess development, formulation optimization, and final product release. Key advantages include high throughput, minimal sample consumption, robust quantitation at low concentrations, and comprehensive structural elucidation from intact proteins to peptide fragments.
Emerging directions include coupling high-resolution MS with advanced informatics and machine-learning algorithms for automated interpretation of complex datasets; further reduction of flow rates for enhanced sensitivity; and expansion of multiplexed assays for simultaneous assessment of multiple critical quality attributes.
The combination of bioinert chromatography, sensitive mass spectrometry, and tailored data processing delivers a powerful toolkit for biotherapeutics characterization. These innovations streamline development and QC workflows, ensuring consistent product quality and accelerating timelines for new biologics.
MALDI, HPLC, LC/TOF, LC/HRMS, LC/MS, LC/MS/MS, LC/QQQ
IndustriesPharma & Biopharma
ManufacturerShimadzu
Summary
Importance of the topic
Biotherapeutics such as monoclonal antibodies and antibody–drug conjugates play an increasingly vital role in treating chronic and life-threatening diseases. Precise characterization of these complex molecules is critical to ensure structural consistency, safety, and efficacy across development, manufacturing, and quality-control stages.
Aims and overview
This work reviews chromatographic and mass-spectrometry workflows that support biologics development. It highlights novel UHPLC, LC-MS/MS, QTOF, and MALDI-TOF platforms, along with dedicated informatics, to address challenges in impurity profiling, glycan analysis, peptide mapping, and drug-to-antibody ratio assessment.
Methodology and instrumentation
The study employs multiple analytical approaches:
- UHPLC with an entirely inert flow path (Nexera XS inert) to prevent adsorption and metal interactions.
- High-resolution QTOF mass spectrometry (LCMS-9030) with Micro-ESI interface for microflow analyses of model antibodies.
- Triple-quadrupole LC-MS/MS (LCMS-8060NX) featuring rapid polarity switching and enhanced ion focusing for trace quantitation.
- MALDI-TOF (MALDI-8030) for rapid intact mass and subunit analyses in dual-polarity mode.
- Data processing using LabSolutions, Protein Metrics, Skyline, and MALDI Solutions software for chromatographic and spectral deconvolution.
Main results and discussion
Implementation of the bioinert UHPLC system yielded stable peak shapes and reproducible ATP symmetry and area over multiple injections, demonstrating mitigation of analyte–surface interactions. QTOF analyses provided high-accuracy deconvoluted spectra for NIST reference antibodies and therapeutic mAbs such as Trastuzumab and Bevacizumab. The triple-quad platform enabled sensitive MRM quantification and rapid drug-to-antibody ratio (DAR) determinations. MALDI-TOF workflows facilitated glycan profiling, revealing characteristic N-linked glycoforms on the Fc region, and enabled peptide mapping for complementarity-determining region (CDR) verification.
Benefits and practical applications
The integrated suite of techniques supports critical quality attributes monitoring across bioprocess development, formulation optimization, and final product release. Key advantages include high throughput, minimal sample consumption, robust quantitation at low concentrations, and comprehensive structural elucidation from intact proteins to peptide fragments.
Future trends and possibilities
Emerging directions include coupling high-resolution MS with advanced informatics and machine-learning algorithms for automated interpretation of complex datasets; further reduction of flow rates for enhanced sensitivity; and expansion of multiplexed assays for simultaneous assessment of multiple critical quality attributes.
Conclusion
The combination of bioinert chromatography, sensitive mass spectrometry, and tailored data processing delivers a powerful toolkit for biotherapeutics characterization. These innovations streamline development and QC workflows, ensuring consistent product quality and accelerating timelines for new biologics.
Content was automatically generated from an orignal PDF document using AI and may contain inaccuracies.
Similar PDF
Analytical Solutions from Cell Culture to Biologics Development and Quality Control
2022|Shimadzu|Posters
Analytical Solutions from Cell Culture to Biologics Development and Quality Control Mridul Mandal; Brian Domanski1; Stephen Kurzyniec1; Stephen Swartz1 1Shimadzu Scientific Instruments, Columbia, MD Overview • • • Biopharmaceuticals such as monoclonal antibodies (mAbs) and antibody drug conjugates (ADCs) have…
Key words
culture, culturecell, cellundifferentiated, undifferentiatedmabs, mabscharacterization, characterizationantibodies, antibodiescharacterize, characterizemab, mabmonoclonal, monoclonalantibody, antibodywetted, wettedinert, inertbiologics, biologicsproperties, propertiespeptide
Qualitative Characterization and Quantitative Assessment of Monoclonal Antibodies Using Protein Metrics and nSMOLcoupled with the Shimadzu LCMS-9030 QTOF
2019|Shimadzu|Posters
Qualitative Characterization and Quantitative Assessment of Monoclonal Antibodies Using Protein Metrics and nSMOL coupled with the Shimadzu LCMS-9030 QTOF Vikki Johnson, Stephen Kurzyneic Shimadzu Scientific Instruments, Inc., Carlsbad, CA 800-477-1227 1. Introduction In this poster, we use the new LC-MS…
Key words
nsmol, nsmolmab, mabnist, nistselectively, selectivelyproteolysis, proteolysisintact, intactspectrum, spectrumfab, fabquantitation, quantitationdeconvoluted, deconvolutedprotein, proteinantibodies, antibodiesserum, serumintertek, intertekmonoclonal
N-Linked Glycans Analysis of Monoclonal Antibodies, Biosimilars, and Glycoproteins with High Resolution Mass Spectrometry and Fluorescence Detection using Restek’s Raptor Polar X Column and Protein Metrics’ Software Suite
2020|Shimadzu|Applications
No. SSI-LCMS-116 Liquid Chromatography Mass Spectrometry No. LCMS-116 N-Linked Glycans Analysis of Monoclonal Antibodies, Biosimilars, and Glycoproteins with High Resolution Mass Spectrometry and Fluorescence Detection using Restek’s Raptor Polar X Column and Protein Metrics’ Software Suite ■ Introduction Therapeutic antibodies…
Key words
asn, asnglycans, glycansglycan, glycanavastin, avastindetached, detachedmannose, mannoseraptor, raptorlinked, linkedglcnac, glcnacrestek, restekrnaseb, rnasebreleased, releasedmetrics, metricspolar, polarfluorescence
Guide to Biopharmaceutical Solutions —From Cell Line Optimization to Pharmacokinetics—
2021|Shimadzu|Brochures and specifications
C10G-E089 Guide to Biopharmaceutical Solutions —From Cell Line Optimization to Pharmacokinetics— Solutions Designed for Biopharmaceutical Workflows Optimization DNA/RNA Analysis P. 8–9 P. 4–7 Analysis of Metal Elements in Culture Solutions P. 12–13 Colony Picking Analysis of Chemical Components in Culture…
Key words
culture, cultureindex, indexpharmacokinetics, pharmacokineticscell, cellmouse, mousecharacterization, characterizationothers, otherspurification, purificationcontrol, controlquality, qualityoptimization, optimizationmeasurement, measurementanalysis, analysisprinciple, principleoperating