
This application note shows that a single column to be used for the analysis of a wide range of molecular sizes, from intact proteins and monoclonal antibodies to digested peptides.

This application note shows that a single column to be used for the analysis of a wide range of molecular sizes, from intact proteins and monoclonal antibodies to digested peptides.

This application note examines a group of UHPLC columns and their analytical conditions using synthesized miRNA samples.

Here, we introduce HPLC columns with wider pores designed to analyze the characterization of the first-dimensional structure of peptides in reverse phase condition.

This application note introduces the usefulness of wide pore columns, targeting large macromolecules.

Application of C18, 1.6 µm UHPLC columns in the analysis of insulin with strong and weak ion pairing agents to see how they increase the height of the insulin peak.

This application note covers high-resolution oligonucleotide analysis using a wide pore (WP) C18 1.6 µm UHPLC column.

This application note introduces application data obtained by using FlexFire SEC Columns that have adopted newly developed superior silica.

This application note examines a group of UHPLC columns and their analytical conditions using synthesized miRNA samples.

This application note shows that a single column to be used for the analysis of a wide range of molecular sizes, from intact proteins and monoclonal antibodies to digested peptides.

Here, we introduce HPLC columns with wider pores designed to analyze the characterization of the first-dimensional structure of peptides in reverse phase condition.

Application of C18, 1.6 µm UHPLC columns in the analysis of insulin with strong and weak ion pairing agents to see how they increase the height of the insulin peak.

This application note introduces the usefulness of wide pore columns, targeting large macromolecules.

This application note introduces application data obtained by using FlexFire SEC Columns that have adopted newly developed superior silica.

This application note covers high-resolution oligonucleotide analysis using a wide pore (WP) C18 1.6 µm UHPLC column.

This application note introduces application data obtained by using FlexFire SEC Columns that have adopted newly developed superior silica.

This application note covers high-resolution oligonucleotide analysis using a wide pore (WP) C18 1.6 µm UHPLC column.

This application note examines a group of UHPLC columns and their analytical conditions using synthesized miRNA samples.

Here, we introduce HPLC columns with wider pores designed to analyze the characterization of the first-dimensional structure of peptides in reverse phase condition.

This application note shows that a single column to be used for the analysis of a wide range of molecular sizes, from intact proteins and monoclonal antibodies to digested peptides.

Application of C18, 1.6 µm UHPLC columns in the analysis of insulin with strong and weak ion pairing agents to see how they increase the height of the insulin peak.

This application note introduces the usefulness of wide pore columns, targeting large macromolecules.

This application note introduces application data obtained by using FlexFire SEC Columns that have adopted newly developed superior silica.

This application note introduces some new application data obtained by using FlexFire SEC that is adopted by newly developed silica gel.

This application note covers high-resolution oligonucleotide analysis using FlexFire’s new Wide Pore (WP) C18 1.6 µm column.


This application note covers oligonucleotide analysis using FlexFire’s new Wide Pore (WP) C18 1.6 µm column.

We examined FlexFire columns and their analytical conditions using the synthesized miRNA samples. For this study, we applied inert UHPLC columns to prevent sample loss.

This application details how the FlexFire mAb-RP column allows for accurate analysis of a wide range of molecular sizes.

Synthesized 40-mer miRNA has been analyzed using both a conventional column and new types of UHPLC columns.

- UHPLC-MS method for antibody analysis - Large-size protein separation at high temp

Published: November 9th 2022 | Updated:

Published: November 9th 2022 | Updated:

Published: November 9th 2022 | Updated:

Published: June 1st 2019 | Updated:

Published: November 9th 2022 | Updated:

Published: November 9th 2022 | Updated: