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Dive into the research topics where Barbara Power is active.

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Featured researches published by Barbara Power.


PLOS ONE | 2012

The anti-cancer IgM monoclonal antibody PAT-SM6 binds with high avidity to the unfolded protein response regulator GRP78.

Zachary Rosenes; Terrence D. Mulhern; Danny M. Hatters; Leodevico L. Ilag; Barbara Power; Chris Hosking; Frank Hensel; Geoffrey J. Howlett; Yee-Foong Mok

The monoclonal IgM antibody PAT-SM6 derived from human tumours induces apoptosis in tumour cells and is considered a potential anti-cancer agent. A primary target for PAT-SM6 is the unfolded protein response regulator GRP78, over-expressed externally on the cell surface of tumour cells. Small angle X-ray scattering (SAXS) studies of human GRP78 showed a two-domain dumbbell-shaped monomer, while SAXS analysis of PAT-SM6 revealed a saucer-shaped structure accommodating five-fold symmetry, consistent with previous studies of related proteins. Sedimentation velocity analysis of GRP78 and PAT-SM6 mixtures indicated weak complex formation characterized by dissociation constants in the high micromolar concentration range. In contrast, enzyme-linked immunosorbant assays (ELISAs) showed strong and specific interactions between PAT-SM6 and immobilized GRP78. The apparent binding constant estimated from a PAT-SM6 saturation curve correlated strongly with the concentration of GRP78 used to coat the microtiter tray. Experiments using polyclonal antiGRP78 IgG antibodies or a monoclonal IgG derivative of PAT-SM6 did not show a similar dependence. Competition experiments with soluble GRP78 indicated more effective inhibition of PAT-SM6 binding at low GRP78 coating concentrations. These observations suggest an avidity-based binding mechanism that depends on the multi-point attachment of PAT-SM6 to GRP78 clustered on the surface of the tray. Analysis of ELISA data at high GRP78 coating concentrations yielded an apparent dissociation constant of approximately 4 nM. We propose that the biological action of PAT-SM6 in tumour cell apoptosis may depend on the multivalent nature of PAT-SM6 and the high avidity of its interaction with multiple GRP78 molecules clustered on the tumour cell surface.


Archive | 2009

Lm-antibodies, functional fragments, lm-1 target antigen, and methods for making and using same

Heinz Peter Vollmers; Stephanie Brändlein; Andreas Thalheimer; Leodevico L. Ilag; Barbara Power; Lishanthi Udabage; Frank Hensel; Frank Schoenen; Arndt-Rene Kelter; Christopher G. Hosking


Archive | 2010

Sam-6 variants, target and methods of use

Leodevico I. Ilag; Barbara Power; Lishanthi Udabage


Archive | 2009

Antibody combinations, and methods of making and using same

Heinz Peter Vollmers; Frank Hensel; Barbara Power; Leodevico L. Ilag; Arndt-Rene Kelter; Frank Schoenen; Hans-Konrad Mueller-Hermelink; Andreas Thalheimer; Lishanthi Udabage; Brändlein Stephanie Ute


Archive | 2012

PAT-LM1 epitopes and methods for using same

Arndt-Rene Kelter; Frank Hensel; Vic Ilag; Barbara Power; Christopher G. Hosking


Archive | 2012

Epitopes pat-lm1 et leurs procédés d'utilisation

Arndt-Rene Kelter; Frank Hensel; Vic Ilag; Barbara Power; Christopher G. Hosking


Archive | 2010

Variants de sam-6, cible et procédés d'utilisation correspondants

Leodevico I. Ilag; Barbara Power; Lishanthi Udabage


Archive | 2009

BARB4 TARGET, ANTIBODY DESIGNATED BARB4, BARB4 RELATED ANTIBODIES, AND METHODS OF MAKING AND USING SAME

Heinz Peter Vollmers; Stephanie Brändlein; Leodevico L. Ilag; Barbara Power; Frank Hensel


Archive | 2009

BARB4 TARGET WHICH COMPRISES TATA-BINDING PROTEIN-ASSOCIATED FACTOR 15, ANTIBODY DESIGNATED BARB4, BARB4 RELATED ANTIBODIES, AND METHODS OF MAKING AND USING SAME

Frank Hensel; Barbara Power; Leodevico L. Ilag; Ute Stephanie Brandlein; Heinz Peter Vollmers


Archive | 2009

Combinaisons d’anticorps et leurs procédés de fabrication et d’utilisation

Heinz Peter Vollmers; Frank Hensel; Barbara Power; Leodevico L. Ilag; Arndt-Rene Kelter; Frank Schoenen; Hans-Konrad Mueller-Hermelink; Andreas Thalheimer; Lishanthi Udabage; Brändlein Stephanie Ute

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