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Le cluster capillary - electrophoresis

Terms

20capillary
32electrophoresis
25gel

Associations

Freq.WeightAssociation
200.791capillary - electrophoresis
160.566electrophoresis - gel

Documents par ordre de pertinence
002C90 (2006) Rong Chen [République populaire de Chine] ; Xuefang Luo ; Xin Di ; Ying Li ; Yuqing Sun ; Yuzhu HuSingle-based resolution for oligodeoxynucleotides and their phosphorothioate modifications by replaceable capillary gel electrophoresis.
003978 (1998) L. Dedionisio [États-Unis] ; A M Raible ; S M GryaznovThe detection of oligonucleotide N3'-->P5' phosphoramidate/RNA duplexes with capillary gel electrophoresis.
004023 (1995) G J Bruin [Suisse] ; K O Börnsen ; D. Hüsken ; E. Gassmann ; H M Widmer ; A. PaulusStability measurements of antisense oligonucleotides by capillary gel electrophoresis.
004A75 (1990) Aran Paulus [Suisse] ; Ernst Gassmann ; Matthew J. Field [États-Unis]Calibration of polyacrylamide gel columns for the separation of oligonucleotides by capillary electrophoresis
000563 (2019) Matthew P. Sullivan [Nouvelle-Zélande] ; Stuart J. Morrow [Nouvelle-Zélande] ; David C. Goldstone [Nouvelle-Zélande] ; Christian G. Hartinger [Nouvelle-Zélande]Gel electrophoresis in combination with laser ablation-inductively coupled plasma mass spectrometry to quantify the interaction of cisplatin with human serum albumin.
001024 (2016) Xueru Zhang [États-Unis] ; Linda B. Mcgown [États-Unis]Sequence-based separation of single-stranded DNA at high salt concentrations in capillary zone electrophoresis.
001248 (2016) Sadia Paracha [États-Unis] ; Christa Hestekin [États-Unis]Field amplified sample stacking of amyloid beta (1-42) oligomers using capillary electrophoresis.
001F12 (2013) Xueru Zhang [États-Unis] ; Linda B. McgownSequence-based separation of single-stranded DNA using nucleotides in capillary electrophoresis: focus on phosphate.
002210 (2012) Carol L. Ladner [Canada] ; David S. WishartResolution-enhanced native acidic gel electrophoresis: a method for resolving, sizing, and quantifying prion protein oligomers.
002457 (2011) Yingying Dong [États-Unis] ; Linda B. McgownIncorporation of guanosine gels into sieving matrices for length- and sequence-based separation of DNA in capillary electrophoresis.
002616 (2010) Chao Wang [République populaire de Chine] ; Tao Li ; Zhixin Wang ; Feng Feng ; Hailin WangQuantitative study of stereospecific binding of monoclonal antibody to anti-benzo(a)pyrene diol epoxide-N(2)-dG adducts by capillary electrophoresis immunoassay.
002B10 (2008) Cristina Giovannoli [Italie] ; Claudio Baggiani [Italie] ; Laura Anfossi [Italie] ; Gianfranco Giraudi [Italie]Aptamers and molecularly imprinted polymers as artificial biomimetic receptors in affinity capillary electrophoresis and electrochromatography
002B20 (2007) Qian Li [République populaire de Chine] ; Rong Chen ; Yuqing Sun ; Yuzhu Hu[Separation of phosphodiester oligodeoxynucleotides and phosphorothioate antisense oligodeoxynucleotides by capillary zone electrophoresis at low pH].
003020 (2005) An V. Willems ; Dieter L. Deforce ; Carlos H. Van Peteghem [Belgique] ; Jan F. Van Bocxlaer [Belgique]Analysis of nucleic acid constituents by on‐line capillary electrophoresis‐mass spectrometry
003293 (2003) Niels H. H. Heegaard [Danemark]Applications of affinity interactions in capillary electrophoresis
003539 (2001) Nancy C. Stellwagen [États-Unis] ; Soffia Magnusdottir [Italie] ; Cecilia Gelfi [Italie] ; Pier Giorgio Righetti [États-Unis]Measuring the translational diffusion coefficients of small DNA molecules by capillary electrophoresis
003790 (1999) S H Chen [Taïwan] ; R T TzengPolymer solution-filled column for the analysis of antisense phosphorothioates by capillary electrophoresis.
003799 (1999) Christine Lawrence ; Esthel Ronco ; Sylvie Dubrou ; Roland Leclercq [France] ; Charles Nauciel ; Peggy Matsiota-BernardMolecular typing of Legionella pneumophila serogroup 1 isolates from patients and the nosocomial environment by arbitrarily primed PCR and pulsed-field gel electrophoresis.
003963 (1999) Avinash L. Lagu [États-Unis]Applications of capillary electrophoresis in biotechnology
003C10 (1997) M. Perego [Italie] ; C. Gelfi ; A V Stoyanov ; P G RighettiSeparation of oligonucleotides of identical size, but different base composition, by free zone capillary electrophoresis in strongly acidic, isoelectric buffers.
003D95 (1997) Barbara A. Siles [États-Unis] ; Zeena E. Nackerdien [États-Unis] ; G. Bruce Collier [États-Unis]Analysis of DNA fragmentation using a dynamic size-sieving polymer solution in capillary electrophoresis
004272 (1994) A M River N Rojas [Cuba] ; L. L Pez-Cánovas ; J. Herrera-Isidr N ; L. Ruiz-Esquivel ; D. Higginson-Clarke ; M. Noa Blanco ; F. Valdés-AcostaMolecular weight and kinetic parameters of DNA undergoing pulsed field gel electrophoresis.
004302 (1994) Z. Zhao [États-Unis] ; A. Malik ; M L Lee ; G D WattA capillary electrophoresis method for studying apo, holo, recombinant, and subunit dissociated ferritins.
004384 (1994) Alberto Severini [Canada] ; A. Richard Morgan [Canada] ; Dorothy R. Tovell [Canada] ; D. Lorne J. Tyrrell [Canada]Study of the Structure of Replicative Intermediates of HSV-1 DNA by Pulsed-Field Gel Electrophoresis
004434 (1994) X. Zhang [Australie] ; S. Efstathiou [Australie] ; A. Simmons [Australie]Identification of Novel Herpes Simplex Virus Replicative Intermediates by Field Inversion Gel Electrophoresis: Implications for Viral DNA Amplification Strategies
004481 (1994) A. A. Paladini [États-Unis] ; G. Weber [États-Unis] ; L. Erijman [États-Unis]Analysis of Dissociation and Unfolding of Oligomeric Proteins Using a Flat Bed Gel Electrophoresis at High Pressure
004612 (1993) Rodney E. Harrington [États-Unis]Studies of DNA bending and flexibility using gel electrophoresis
004672 (1993) David A. Garber [États-Unis] ; Stephen M. Beverley [États-Unis] ; Donald M. Coen [États-Unis]Demonstration of Circularization of Herpes Simplex Virus DNA Following infection Using Pulsed Field Gel Electrophoresis
004889 (1991) P G Righetti [Italie] ; C. Ettori ; M. ChiariAnalysis of acrylamido-buffers for isoelectric focusing by capillary zone electrophoresis.
004D14 (1987) P. Borst [Pays-Bas] ; A. M. Van Der Bliek [Pays-Bas] ; T. Van Der Velde-Koerts [Pays-Bas] ; E. Hes [Pays-Bas]Structure of amplified DNA, analyzed by pulsed field gradient gel electrophoresis
004D18 (1987) Philip Serwer [États-Unis]Gel electrophoresis with discontinuous rotation of the gel: An alternative to gel electrophoresis with changing direction of the electrical field
004D65 (1986) A. Vance Vorndam [États-Unis] ; Joanne Kerschner [États-Unis]Purification of small oligonucleotides by polyacrylamide gel electrophoresis and transfer to diethylaminoethyl paper
002546 (2011) V. A. Moshnikov [Russie] ; I. E. Gracheva [Russie] ; M. G. An Hkov [Russie]Investigation of sol-gel derived nanomaterials with a hierarchical structure
002A47 (2008) Alla Yu. Rubina [Russie] ; Alexander Kolchinsky [États-Unis] ; Alexander A. Makarov [Russie] ; Alexander S. Zasedatelev [Russie]Why 3‐D? Gel‐based microarrays in proteomics
002B58 (2007) William S. Case [États-Unis] ; Keren D. Glinert ; Sam Labarge ; Linda B. McgownGuanosine gel for sequence-dependent separation of polymorphic ssDNA.
003121 (2004) Helen PilcherStarting to gel
003214 (2003) Alan W. Taylor [États-Unis] ; Elizabeth Barofsky ; James A. Kennedy ; Max L. DeinzerHop (Humulus lupulus L.) proanthocyanidins characterized by mass spectrometry, acid catalysis, and gel permeation chromatography.
003413 (2002) Alexander Kolchinsky [États-Unis] ; Andrei Mirzabekov [Russie]Analysis of SNPs and other genomic variations using gel‐based chips
003C28 (1997) N C Stellwagen [États-Unis]DNA mobility anomalies are determined primarily by polyacrylamide gel concentration, not gel pore size.
004616 (1993) A. Litzen [Allemagne] ; J. K. Walter [Allemagne] ; H. Krischollek [Allemagne] ; K. G. Wahlund [Allemagne]Separation and Quantitation of Monoclonal Antibody Aggregates by Asymmetrical Flow Field-Flow Fractionation and Comparison to Gel Permeation Chromatography
004991 (1990) R G Shea [États-Unis] ; P. Ng ; N. BischofbergerThermal denaturation profiles and gel mobility shift analysis of oligodeoxynucleotide triplexes.

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