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1.
Anal Bioanal Chem ; 413(20): 4989-5001, 2021 Aug.
Artículo en Inglés | MEDLINE | ID: mdl-34231000

RESUMEN

Antibody drug conjugates (ADCs) represent a rapidly growing modality for the treatment of numerous oncology indications. The complexity of analytical characterization method development is increased due to the potential for synthetic intermediates and process-related impurities. In addition, the cytotoxicity of such materials provides an additional challenge with regard to handling products and/or sharing materials with analytical collaborators and/or vendors for technology development. Herein, we have utilized a site-specific chemoenzymatic glycoconjugation strategy for preparing ADC mimetics composed of the NIST monoclonal antibody (NISTmAb) conjugated to non-cytotoxic payloads representing both small molecules and peptides. The materials were exhaustively characterized with high-resolution mass spectrometry-based approaches to demonstrate the utility of each analytical method for confirming the conjugation fidelity as well as deep characterization of low-abundance synthetic intermediates and impurities arising from payload raw material heterogeneity. These materials therefore represent a widely available test metric to develop novel ADC analytical methods as well as a platform to discuss best practices for extensive characterization.


Asunto(s)
Anticuerpos Monoclonales/química , Inmunoconjugados , Polisacáridos/química , Cromatografía Liquida , Neoplasias/terapia , Mapeo Peptídico , Espectrometría de Masas en Tándem
2.
Anal Bioanal Chem ; 410(8): 2111-2126, 2018 Mar.
Artículo en Inglés | MEDLINE | ID: mdl-29411091

RESUMEN

Peptide mapping is a component of the analytical toolbox used within the biopharmaceutical industry to aid in the identity confirmation of a protein therapeutic and to monitor degradative events such as oxidation or deamidation. These methods offer the advantage of providing site-specific information regarding post-translational and chemical modifications that may arise during production, processing or storage. A number of such variations may also be induced by the sample preparation methods themselves which may confound the ability to accurately evaluate the true modification levels. One important focus when developing a peptide mapping method should therefore be the use of sample preparation conditions that will minimize the degree of artificial modifications induced. Unfortunately, the conditions that are amenable to effective reduction, alkylation and digestion are often the same conditions that promote unwanted modifications. Here we describe the optimization of a tryptic digestion protocol used for peptide mapping of the NISTmAb IgG1κ which addresses the challenge of balancing maximum digestion efficiency with minimum artificial modifications. The parameters on which we focused include buffer concentration, digestion time and temperature, as well as the source and type of trypsin (recombinant vs. pancreatic; bovine vs porcine) used. Using the optimized protocol we generated a peptide map of the NISTmAb which allowed us to confirm its identity at the level of primary structure. Graphical abstract Peptide map of the NISTmAb RM 8671 monoclonal antibody. Tryptic digestion was performed using an optimized protocol and followed by LC-UV-MS analysis. The trace represents the total ion chromatogram. Each peak was mapped to peptides identified using mass spectrometry data.


Asunto(s)
Anticuerpos Monoclonales Humanizados/química , Anticuerpos Monoclonales/química , Inmunoglobulina G/química , Mapeo Peptídico/métodos , Péptidos/análisis , Animales , Bovinos , Cromatografía Liquida/métodos , Cromatografía Liquida/normas , Humanos , Ratones , Modelos Moleculares , Mapeo Peptídico/normas , Estándares de Referencia , Porcinos , Espectrometría de Masas en Tándem/métodos , Espectrometría de Masas en Tándem/normas , Tripsina/química
3.
Anal Bioanal Chem ; 410(8): 2127-2139, 2018 Mar.
Artículo en Inglés | MEDLINE | ID: mdl-29411089

RESUMEN

The NISTmAb Reference Material (RM) 8671 is intended to be an industry standard monoclonal antibody for pre-competitive harmonization of best practices and designing next generation characterization technologies for identity, quality, and stability testing. It must therefore embody the quality and characteristics of a typical biopharmaceutical product and be available long-term in a stable format with consistent product quality attributes. A stratified sampling and analysis plan using a series of qualified analytical and biophysical methods is described that assures RM 8671 meets these criteria. Results for the first three lots of RM 8671 highlight the consistency of material attributes with respect to size, charge, and identity. RM 8671 was verified to be homogeneous both within and between vialing lots, demonstrating the robustness of the lifecycle management plan. It was analyzed in concert with the in-house primary sample 8670 (PS 8670) to provide a historical link to this seminal material. RM 8671 was verified to be fit for its intended purpose as a technology innovation tool, external system suitability control, and cross-industry harmonization platform. Graphical abstract The NISTmAb Reference Material (RM) 8671 is intended to be an industry standard monoclonal antibody for pre-competitive harmonization of best practices and designing next generation characterization technologies for identity, quality, and stability testing.


Asunto(s)
Anticuerpos Monoclonales/química , Inmunoglobulina G/química , Animales , Biosimilares Farmacéuticos/química , Cromatografía en Gel/métodos , Cromatografía en Gel/normas , Estabilidad de Medicamentos , Dispersión Dinámica de Luz/métodos , Dispersión Dinámica de Luz/normas , Electroforesis Capilar/métodos , Electroforesis Capilar/normas , Humanos , Microscopía/métodos , Microscopía/normas , Modelos Moleculares , Mapeo Peptídico/métodos , Mapeo Peptídico/normas , Estabilidad Proteica , Control de Calidad , Estándares de Referencia , Espectrofotometría Ultravioleta/métodos , Espectrofotometría Ultravioleta/normas , Espectrometría de Masas en Tándem/métodos , Espectrometría de Masas en Tándem/normas
4.
Front Mol Biosci ; 9: 876780, 2022.
Artículo en Inglés | MEDLINE | ID: mdl-35601836

RESUMEN

Biopharmaceuticals such as monoclonal antibodies are required to be rigorously characterized using a wide range of analytical methods. Various material properties must be characterized and well controlled to assure that clinically relevant features and critical quality attributes are maintained. A thorough understanding of analytical method performance metrics, particularly emerging methods designed to address measurement gaps, is required to assure methods are appropriate for their intended use in assuring drug safety, stability, and functional activity. To this end, a series of interlaboratory studies have been conducted using NISTmAb, a biopharmaceutical-representative and publicly available monoclonal antibody test material, to report on state-of-the-art method performance, harmonize best practices, and inform on potential gaps in the analytical measurement infrastructure. Reported here is a summary of the study designs, results, and future perspectives revealed from these interlaboratory studies which focused on primary structure, post-translational modifications, and higher order structure measurements currently employed during biopharmaceutical development.

5.
J Am Soc Mass Spectrom ; 33(9): 1659-1677, 2022 Sep 07.
Artículo en Inglés | MEDLINE | ID: mdl-36018776

RESUMEN

The multi-attribute method (MAM) was conceived as a single assay to potentially replace multiple single-attribute assays that have long been used in process development and quality control (QC) for protein therapeutics. MAM is rooted in traditional peptide mapping methods; it leverages mass spectrometry (MS) detection for confident identification and quantitation of many types of protein attributes that may be targeted for monitoring. While MAM has been widely explored across the industry, it has yet to gain a strong foothold within QC laboratories as a replacement method for established orthogonal platforms. Members of the MAM consortium recently undertook an interlaboratory study to evaluate the industry-wide status of MAM. Here we present the results of this study as they pertain to the targeted attribute analytics component of MAM, including investigation into the sources of variability between laboratories and comparison of MAM data to orthogonal methods. These results are made available with an eye toward aiding the community in further optimizing the method to enable its more frequent use in the QC environment.


Asunto(s)
Benchmarking , Proteínas , Espectrometría de Masas/métodos , Mapeo Peptídico/métodos , Control de Calidad
6.
J Am Soc Mass Spectrom ; 32(4): 913-928, 2021 Apr 07.
Artículo en Inglés | MEDLINE | ID: mdl-33710905

RESUMEN

The Multi-Attribute Method (MAM) Consortium was initially formed as a venue to harmonize best practices, share experiences, and generate innovative methodologies to facilitate widespread integration of the MAM platform, which is an emerging ultra-high-performance liquid chromatography-mass spectrometry application. Successful implementation of MAM as a purity-indicating assay requires new peak detection (NPD) of potential process- and/or product-related impurities. The NPD interlaboratory study described herein was carried out by the MAM Consortium to report on the industry-wide performance of NPD using predigested samples of the NISTmAb Reference Material 8671. Results from 28 participating laboratories show that the NPD parameters being utilized across the industry are representative of high-resolution MS performance capabilities. Certain elements of NPD, including common sources of variability in the number of new peaks detected, that are critical to the performance of the purity function of MAM were identified in this study and are reported here as a means to further refine the methodology and accelerate adoption into manufacturer-specific protein therapeutic product life cycles.

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