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20 results on '"Peptide Mapping methods"'

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1. Distinct chemical degradation pathways of AAV1 and AAV8 under thermal stress conditions revealed by analytical anion exchange chromatography and LC-MS-based peptide mapping.

2. Evaluating the potential of hydrophilic interaction liquid chromatography for collagen peptide mapping analysis.

3. A Systematic Workflow for Fragmentation Identification of Therapeutic Antibodies by Liquid Chromatography-Mass Spectrometry.

4. An Integrated Strategy to Identify Tyrosine Sulfation from the Therapeutic Proteins.

5. A simplified non-reduced peptide mapping method with faster and efficient enzymatic digestion for characterization of native disulfide bonds in monoclonal and bispecific antibodies.

6. In-depth characterization of a cysteine-linked ADC disitamab vedotin by multiple LC-MS analysis methods and cutting-edge imaged capillary isoelectric focusing coupled with native mass spectrometry.

7. Controlled Translocation of Proteins through a Biological Nanopore for Single-Protein Fingerprint Identification.

8. Clean and Complete Protein Digestion with an Autolysis Resistant Trypsin for Peptide Mapping.

9. Filling the gaps in peptide maps with a platform assay for top-down characterization of purified protein samples.

10. Identification and Activity Study of an Impurity Band Observed in the nrSDS-PAGE of Aflibercept.

11. A combination of multiple LC-MS approaches for the comprehensive characterization of cysteine-linked ADCs.

12. An inert tracer: The binding site of a fluorescent dye on the antibody and its effects on Protein A chromatography.

13. Addressing common challenges of biotherapeutic protein peptide mapping using recombinant trypsin.

14. Stop-Codon Readthrough in Therapeutic Protein Candidates Expressed from Mammalian Cells.

15. Full-length single-molecule protein fingerprinting.

16. Qualification of a LC-HRMS platform method for biosimilar development using NISTmab as a model.

17. Stability and Biosimilarity Assessment of Bevacizumab Monoclonal Antibody; Orthogonal Testing Protocol Coupled With Peptide Mapping-Principal Component Analysis.

18. Establishment of Erythropoietin for physicochemical tests CRS batch 2.

19. Practical solutions for overcoming artificial disulfide scrambling in the non-reduced peptide mapping characterization of monoclonal antibodies.

20. Targeted CQA analytical control strategy for commercial antibody products: Replacing ion-exchange chromatography methods for charge heterogeneity with multi-attribute monitoring.

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