LC AND LC-MS CHEMISTRY CONSUMABLES FOR BIOSEPARATIONS
Others | 2022 | WatersInstrumentation
High-resolution liquid chromatography and LC-MS play a critical role in modern bioseparations, enabling detailed characterization of peptides, proteins, oligonucleotides, amino acids, and complex glycans. Reliable consumables and tailored column chemistries ensure reproducible results, facilitate regulatory compliance, and support research, quality control, and biopharmaceutical development.
The primary aim of the original document is to present a comprehensive portfolio of Waters Corporation’s LC and LC-MS consumables for bioseparations. It categorizes columns, reagents, and standards by application area—peptide analysis, protein analysis, amino acid analysis, oligonucleotide analysis, and glycan/glycoprotein analysis—while highlighting attributes of dependability, flexibility, and performance.
Consumables are designed for use with HPLC, UHPLC, and UPLC platforms, including Arc HPLC systems, ACQUITY UPLC, and ACQUITY Premier. Key features include controlled particle sizes (sub-2 µm to ≥3.5 µm), column inner diameters ranging from 2.1 mm to 4.6 mm, and tailored stationary phases (C18, C4, BEH, CSH, HSS, Amide, Phenyl, Ion-Exchange, HIC, SEC). Typical operating pressures span from ambient to <15,000 psi.
• Peptide Workflows: Reversed-phase C18 and HSS T3 phases in 100–300 Å pore sizes support high resolution.
• Protein Characterization: Dedicated SEC and ion-exchange columns enable size and charge variant analysis of mAbs and biologics.
• Amino Acid Analysis: AccQ•Tag Ultra derivatization chemistry provides robust pre-column labeling and separation.
• Oligonucleotide Separation: BEH C18 and high-resolution ion-exchange phases deliver accurate profiling of synthetic and natural oligos.
• Glycan Profiling: Hydrophilic interaction and mixed-mode phases combined with RapiFluor-MS labeling kits facilitate detailed glycan mapping.
Reliable consumables optimize method transfer between labs and instruments, reduce development time, and improve sensitivity and throughput. Standardized reagents and peptide/protein digestion kits ensure consistent sample preparation. The broad product range addresses applications from bioprocess monitoring to quality control of therapeutic proteins.
Advances in column materials and microfluidic integration are expected to push the limits of speed and resolution further. Emerging multimodal stationary phases and enhanced labeling chemistries will support deeper structural analysis of complex biomolecules. Automation and AI-driven method optimization promise to streamline bioseparation workflows.
Waters’ consumable portfolio provides a versatile toolkit for modern bioseparations, pairing robust column chemistries with standardized reagents and high-performance LC/UHPLC platforms. These resources enable reliable, high-throughput analyses essential to research, development, and quality control in the life sciences.
Waters Corporation. LC and LC-MS Chemistry Consumables for Bioseparations. January 2022. Document 720004232EN MS-PDF.
Consumables, LC columns
IndustriesProteomics , Clinical Research
ManufacturerWaters
Summary
Importance of the Topic
High-resolution liquid chromatography and LC-MS play a critical role in modern bioseparations, enabling detailed characterization of peptides, proteins, oligonucleotides, amino acids, and complex glycans. Reliable consumables and tailored column chemistries ensure reproducible results, facilitate regulatory compliance, and support research, quality control, and biopharmaceutical development.
Objectives and Overview
The primary aim of the original document is to present a comprehensive portfolio of Waters Corporation’s LC and LC-MS consumables for bioseparations. It categorizes columns, reagents, and standards by application area—peptide analysis, protein analysis, amino acid analysis, oligonucleotide analysis, and glycan/glycoprotein analysis—while highlighting attributes of dependability, flexibility, and performance.
Methodology and Instrumentation
Consumables are designed for use with HPLC, UHPLC, and UPLC platforms, including Arc HPLC systems, ACQUITY UPLC, and ACQUITY Premier. Key features include controlled particle sizes (sub-2 µm to ≥3.5 µm), column inner diameters ranging from 2.1 mm to 4.6 mm, and tailored stationary phases (C18, C4, BEH, CSH, HSS, Amide, Phenyl, Ion-Exchange, HIC, SEC). Typical operating pressures span from ambient to <15,000 psi.
Key Results and Discussion
• Peptide Workflows: Reversed-phase C18 and HSS T3 phases in 100–300 Å pore sizes support high resolution.
• Protein Characterization: Dedicated SEC and ion-exchange columns enable size and charge variant analysis of mAbs and biologics.
• Amino Acid Analysis: AccQ•Tag Ultra derivatization chemistry provides robust pre-column labeling and separation.
• Oligonucleotide Separation: BEH C18 and high-resolution ion-exchange phases deliver accurate profiling of synthetic and natural oligos.
• Glycan Profiling: Hydrophilic interaction and mixed-mode phases combined with RapiFluor-MS labeling kits facilitate detailed glycan mapping.
Benefits and Practical Applications
Reliable consumables optimize method transfer between labs and instruments, reduce development time, and improve sensitivity and throughput. Standardized reagents and peptide/protein digestion kits ensure consistent sample preparation. The broad product range addresses applications from bioprocess monitoring to quality control of therapeutic proteins.
Future Trends and Opportunities
Advances in column materials and microfluidic integration are expected to push the limits of speed and resolution further. Emerging multimodal stationary phases and enhanced labeling chemistries will support deeper structural analysis of complex biomolecules. Automation and AI-driven method optimization promise to streamline bioseparation workflows.
Conclusion
Waters’ consumable portfolio provides a versatile toolkit for modern bioseparations, pairing robust column chemistries with standardized reagents and high-performance LC/UHPLC platforms. These resources enable reliable, high-throughput analyses essential to research, development, and quality control in the life sciences.
References
Waters Corporation. LC and LC-MS Chemistry Consumables for Bioseparations. January 2022. Document 720004232EN MS-PDF.
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