中国科学院青岛生物能源与过程研究所 您所在的位置:网站首页 青岛崂山区邮编266101 中国科学院青岛生物能源与过程研究所

中国科学院青岛生物能源与过程研究所

2022-03-26 11:58| 来源: 网络整理| 查看: 265

  1. “Non-immunospecific association of immunoglobulin G with chromatin during elution from protein A inflates host contamination, aggregate content, and antibody loss”, GAGNON P., NIAN R., YANG Y.S., YANG Q., LIM C.L., Journal of Chromatography A, 2015, 1408, 151. 

  2. “Transient conformation of immunoglobulin G by protein A affinity chromatography”, GAGNON P., NIAN R., LEONG D., HOI A., Journal of Chromatography A, 2015, 1395, 136. 

  3. “Void exclusion of antibodies by grafted-ligand porous particle anion exchangers”, NIAN R., CHUAH C., LEE J., GAN H.T., LATIFF S., LEE W.Y., VAGENENDE V., YANG Y.S., GAGNON P., Journal of Chromatography A,2013,1282: 127. 

  4. “Chromatographic biopanning for the selection of peptides with high specificity to Pb2+ from phage displayed peptide library”, NIAN R., KIM D.S., NGUYEN T., TAN L., KIM C.W., YOO I.K., CHOE W.S., Journal of Chromatography A,2010,1217: 5940. 

  5. “Synergistic coordination of polyethylene glycol with ClpB/DnaKJE bichaperone for refolding of heat-denatured malate dehydrogenase”, NIAN R., KIM D.S., TAN L., KIM C.W., CHOE W.S., Biotechnology Progress, 2009, 25: 1078. 

  6. “Molecular chaperones enhanced IMAC refolding of gloshedobin, a thrombin-like enzyme from snake venom”,  NIAN R., TAN L., YOO I.K., CHOE W.S., Journal of Chromatography A, 2008,1214: 47. 

  7. “Folding-like-refolding of heat-denatured MDH using unpurified ClpB and DnaKJE”, NIAN R., TAN L., CHOE W.S., Biochemical Engineering Journal, 2008, 40, 35. 

  8. “Effective reduction of truncated expression of gloshedobin in Escherichia coli using molecular chaperone ClpB”. NIAN R., TAN L., CHOE W.S., Chemical Engineering Science, 2008, 63, 2875. 

  9. “Polyethyleneimine-mediated chemical extraction of cytoplasmic His-tagged inclusion body proteins from E. coli”, NIAN R., TAN L., CHOE W.S., Biotechnology Progress, 2008, 24, 417. 

  10. “Recent advances in biomolecular process intensification”, CHOE W.S., NIAN R., LAI W.B., Chemical Engineering Science, 2006, 61, 886. 



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