2013 - 2013 |
Bioanalysis 2009 Rizzi A |
2014 - 2024 |
DNA migration mechanism analyses for applications in capillary and microchip electrophoresis Forster RE, Hert DG, Chiesl TN, Fredlake CP, Barron AE |
2025 - 2031 |
Nanostructured pillars based on vertically aligned carbon nanotubes as the stationary phase in micro-CEC Wu RG, Yang CS, Wang PC, Tseng FG |
2032 - 2061 |
Protein attachment onto silica surfaces - a survey of molecular fundamentals, resulting effects and novel preventive strategies in CE Stutz H |
2062 - 2075 |
Current separation and detection methods in microdialysis the drive towards sensitivity and speed Guihen E, O'Connor WT |
2076 - 2089 |
Introducing the CPL/MUW proteome database: Interpretation of human liver and liver cancer proteome profiles by referring to isolated primary cells Wimmer H, Gundacker NC, Griss J, Haudek VJ, Stattner S, Mohr T, Zwickl H, Paulitschke V, Baron DM, Trittner W, Kubicek M, Bayer E, Slany A, Gerner C |
2090 - 2099 |
Scaling of nucleic acid assays on microelectrophoresis array devices: High-dynamic range multi-gene readout from less than ten transcripts Ueberfeld J, Ehrlich DJ |
2100 - 2109 |
CE of dsDNA in low-molecular-weight polyethylene oxide solutions Pereira F, Hassard S, Hassard J, Demello A |
2110 - 2116 |
Rapid recovery of DNA from agarose gel slices by coupling electroelution with monolithic SPE Yu SB, Yang SX, Zhou P, Zhou K, Wang J, Chen XD |
2117 - 2122 |
Size-based protein separations by microchip electrophoresis using an acid-labile surfactant as a replacement for SDS Root BE, Zhang B, Barron AE |
2123 - 2128 |
Mimicking virus attachment to host cells employing liposomes: Analysis by chip electrophoresis Weiss VU, Bilek G, Pickl-Herk A, Blaas D, Kenndler E |
2129 - 2133 |
Fabrication of a microfluidic enzyme reactor utilizing magnetic beads Liu XJ, Lo RC, Gomez FA |
2134 - 2141 |
Separation of similar yeast strains by IEF techniques Horka M, Ruzicka F, Hola V, Slais K |
2142 - 2150 |
Characterization and identification of proteases secreted by Aspergillus fumigatus using free flow electrophoresis and MS Neustadt M, Costina V, Kupfahl C, Buchheidt D, Eckerskorn C, Neumaier M, Findeisen P |
2151 - 2158 |
Separation of acidic and basic proteins by CE with CTAB additive and its applications in peptide and protein profiling Liu Q, Yang YM, Huang Y, Pan CF, Nie Z, Yao SZ |
2159 - 2167 |
Complete sequencing of GABA(A) receptor subunit beta 3 by a rapid technique following in-gel digestion of the protein Kang SU, Lubec G |
2168 - 2181 |
Detection of autoantibodies against cyclophilin A and triosephosphate isomerase in sera from breast cancer patients by proteomic analysis Tamesa MS, Kuramitsu Y, Fujimoto M, Maeda N, Nagashima Y, Tanaka T, Yamamoto S, Oka M, Nakamura K |
2182 - 2192 |
Upregulation of glycolytic enzymes in proteins secreted from human colon cancer cells with 5-fluorouracil resistance Shin YK, Yoo BC, Hong YS, Chang HJ, Jung KH, Jeong SY, Park JG |
2193 - 2206 |
Proteomic signature of reversine-treated murine fibroblasts by 2-D difference gel electrophoresis and MS: Possible associations with cell signalling networks Fania C, Anastasia L, Vasso M, Papini N, Capitanio D, Venerando B, Gelfi C |
2207 - 2214 |
A proteomic workflow for discovery of serum carrier protein-bound biomarker candidates of alcohol abuse using LC-MS/MS Lai XY, Liangpunsakul S, Crabb DW, Ringham HN, Witzmann FA |
2215 - 2226 |
The identification of phosphoglycerate kinase-1 and histone H4 autoantibodies in pancreatic cancer patient serum using a natural protein microarray Patwa TH, Li C, Poisson LM, Kim HY, Pal M, Ghosh D, Simeone DM, Lubman DM |
2227 - 2233 |
Development of a 2-D apoB peptide profile to detect conformational changes associated with apoB-containing lipoproteins Manocha M, Malinowski P, Li K, Macri J |
2234 - 2237 |
Mixed-substrate (glycerol tributyrate and fibrin) zymography for simultaneous detection of lipolytic and proteolytic enzymes on a single gel Choi NS, Choi JH, Kim BH, Han YJ, Kim JS, Lee SG, Song JJ |
2238 - 2244 |
Simple method for determination of cocaine and main metabolites in urine by CE coupled to MS da Costa JL, Tonin FG, Zanolli LA, Chasin AAD, Tavares MFM |
2245 - 2254 |
Chiral analysis of anti-acquired immunodeficiency syndrome drug, 9-(R)-[2-(phosphonomethoxy)propyl]adenine (tenofovir), and related antiviral acyclic nucleoside phosphonates by CE using beta-CD as chiral selector Solinova V, Kasicka V, Sazelova P, Holy A |