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MultiScreenHTS filter plates have been specifically developed for compatibility with the solvents needed for combinatorial chemistry bead cleavage steps.

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Caractéristiques

Guide d'achat

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Plaques de filtration MultiScreenHTS avec membrane Durapore en PVDF hydrophileSupprimer le tri & les filtres Show Filter
RéférenceDescriptionMatériau du dispositifDimension de poresStérilitéConditionnement
MSHVN4510MultiScreenHTS-HV, 0,45 µm, transparent, non stérile Styrène 0.45 µm Non stérile 10
MSHVN4550MultiScreenHTS-HV, 0,45 µm, transparent, non stérile Styrène 0.45 µm Non stérile 50
MSHVS4510MultiScreenHTSHV, 0,45 µm, transparent, stérile Styrène 0.45 µm Stérile 10
MSDVN6510MultiScreenHTS-DV, 0,65 µm, transparent, non stérile Styrène 0.65 µm Non stérile 10
MSDVN6550MultiScreenHTS-DV, 0,65 µm, transparent, non stérile Styrène 0.65 µm Non stérile 50
MSDVN6B50MultiScreenHTS-DV, 0,65 µm, opaque, non stérile Barex®/TiO<sub>2</sub> 0.65 µm Non stérile 50
MSBVN1210MultiScreenHTSBV, 1,2 µm, transparent, non stérile Styrène 1.2 µm Non stérile 10
MSBVN1250MultiScreenHTS-BV, 1,2 µm, transparent, non stérile Styrène 1.2 µm Non stérile 50
MSBVS1210MultiScreenHTS-BV, 1,2 µm, transparent, stérile Styrène 1.2 µm Stérile 10

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Plaques de filtration MultiScreen Solvinert avec membrane en PTFE hydrophileSupprimer le tri & les filtres Show Filter
RéférenceDescriptionMatériau du dispositifDimension de poresConditionnement
MSRLN0410MultiScreen Solvinert, PTFE hydrophile, 0,45 µm, transparent, non stérile Copolymère de polyoléfine 0.45 µm 10
MSRLN0450MultiScreen Solvinert, PTFE hydrophile, 0,45 µm, transparent, non stérile Copolymère de polyoléfine 0.45 µm 50
MDRLN0410MultiScreen Solvinert Deep Well, PTFE hydrophile, 0,45 µm, transparent, non stérile Copolymère de polyoléfine 0.45 µm 10

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AccessoriesSupprimer le tri & les filtres Show Filter
RéférenceDescriptionConditionnement
MSVMHTS00Support de filtration sous vide MultiScreenHTS 1
MSVMHTS0DCadre pour plaque MultiScreen Deep Well 1
MACF09604Joint d'alignement pour centrifugation MultiScreen, bleu, solutions aqueuses 4
WP6111560Pompe à vide/pression résistante aux solvants, 115 V/60 Hz 1
WP6122050Pompe à vide/pression résistante aux solvants, 220 V/50 Hz 1
WP6110060Pompe à vide/pression résistante aux solvants, 100 V/50–60 Hz 1
MATAHCL00Film adhésif pour sceller les plaques MultiScreen, transparent, non stérile 100
MACL09625Chargeur de colonnes MultiScreen, 25 µl, noir, aluminium, non stérile 1
MACL09645Chargeur de colonnes MultiScreen, 45 µl, noir, aluminium, non stérile 1
MACL09680Chargeur de colonnes MultiScreen, 80 µl, noir, aluminium, non stérile 1
MACL09600Chargeur de colonnes MultiScreen, 100 µl, noir, aluminium, non stérile 1
MACL0SC03Racloir pour chargeur de colonnes MultiScreen 3
MSCPNPS00Plaque de récupération 96 puits, transparente, non stérile 100
MSCPNUV40Plaque de récupération 96 puits pour l'analyse UV, non stérile 40
MSCPNPP00Plaque de récupération 96 puits à fond en V 100

Les chargeurs de colonnes servent à charger les résines de chromatographie pour la séparation sur colonnes.

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Documentation

Références bibliographiques

Aperçu de la référence bibliographiqueApplication
Kinetics and isotype profile of antibody responses in rhesus macaques induced following vaccination with HPV 6, 11, 16 and 18 L1-virus-like particles formulated with or without Merck aluminum adjuvant
Wanda Ruiz, William McClements, Kathrin Jansen, and Mark esser
Journal of Immune Based Therapies and Vaccines 2005, 3:2  2004

Bead-based Assays
Use of ADME screening to conserve resources in drug discovery and development
Weiss, A. and Joseph Machamer
American Biotechnology Laboratory, January 2004: 16-17  2004

Screening for pharma gold: Researchers are using membrane technologies for high-throughput ADME analysis
Lynch, John,Modern Drug Discovery, January 2004: 27-28
Modern Drug Discovery, January 2004: 27-28  2004

Scintillation proximity assay of inositol phosphates in cell extracts: High-throughput measurement of G-protein-coupled receptor activation
Philip E. Brandish, Lorraine A. Hill, Wei Zheng and Edward M. Scolnick
Analytical Biochemistry 313 (2): 311-318  2003

Bead-based Assays
Functional roles of conserved transmembrane prolines in the human VPAC1 receptor.
Sanne Moller Knudsen, Jeppe Wegener Tams and Jan Fahrenkrug; Journal of Biochemical and Biophysical Methods 40 (3): 113-117
Journal of Biochemical and Biophysical Methods 40 (3): 113-117  2001

Bead-based Assays
A high-throughput assay for rat liver Golgi and Saccharomyces cerevisiae-expressed murine CMP-N-acetylneuraminic acid transport proteins
Tiralongo J; Abo S; Danylec B; Gerardy Schahn R; vonItzstein M
Analytical Biochemistry 2000 , v285, n1, p21-32  1999

Bead-based Assays
Designing new metal affinity peptides by random mutagenesis of a natural metal-binding site.
Markus M. Enzelberger, Stefan Minning and Rolf D. Schmid
Journal of Chromatography A 898 (1): 83-94  1999

Bead-based Assays
Quantification of telomerase activity by direct scintillation counting.
Sonja Kazmer, Keh-Ming Pan and Lyubomir Vassilev
Journal of Biochemical and Biophysical Methods 40 (3): 113-117  1998

Bead-based Assays
Microplate Chromatography Assay for Acety1-CoA: Lysoplatelet-Activating Factor Acetyltransferase1
Kume, K., Waga, I., Shimizu, T.
Analytical Biochemistry 246:, 118-122  1997

Bead-based Assays
Evaluation of Islet Cell Antigen (ICA)512/IA-2 Autoantibody Radioassays Using Overlapping ICA512/IA-2 Constructs
Kawaski, E., Yu, L., Gianani, R., Verge, C.F., Babu, S., Bonifacio, E., Eisenbarth, G.S.
Journal of Clinical Endocrinology & Metabolism 82:2, 375-380  1997

Bead-based Assays

FAQ

QuestionRéponse
What is the well depth and maximum volume capacity of a MultiScreen plate?The well depth of a 96 well MultiScreen plate is 1.245 cm. The well depth for a 384 well MultiScreen plate is 1.2 cm. The maximum working volume of a 96 well plate is 300 ul. The maximum working volume for a 384 well plate is 100 ul.