Particle packed mixed‐mode chromatographic stationary phase for the separation of peptide in liquid chromatography

A particle‐based stationary phase has been prepared for the separation of five synthetic peptides and a mixture containing tryptic digest of cytochrome C in liquid chromatography. Particles originating from silica monolith were differentially sedimented to obtain 1–2 μm particles. A stationary phase...

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Veröffentlicht in:Journal of separation science 2021-04, Vol.44 (7), p.1430-1439
Hauptverfasser: Ali, Faiz, Cheong, Won Jo, Rafique, Aamra, AlOthman, Zeid A., sadia, Maria, Muhammad, Mian
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Sprache:eng
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Zusammenfassung:A particle‐based stationary phase has been prepared for the separation of five synthetic peptides and a mixture containing tryptic digest of cytochrome C in liquid chromatography. Particles originating from silica monolith were differentially sedimented to obtain 1–2 μm particles. A stationary phase was achieved by the coating of poly(styrene‐methacrylic acid‐N‐phenylacrylamide) copolymer onto the particles via reversible addition‐fragmentation chain transfer polymerization reaction. Stainless steel column (30 cm long and 1 mm internal diameter) was packed with stationary phase. Very high separation efficiency (ca. 351 000 plates/m) was achieved for five commercial peptides with a percent relative standard deviation of less than 1%. Protocol for the synthesis and modification of silica monolith particles has been well optimized with a good reproducibility both in particle and pore size. The column resolved about 21 peptide components from a mixture containing tryptic digest of cytochrome C, under the elution conditions of acetonitrile/15 mM ammonium format (65/35 v/v%) with a flow rate of 28 μL/min.
ISSN:1615-9306
1615-9314
DOI:10.1002/jssc.202100001