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Featured researches published by Alexander Jacobi.


Blood | 2011

A novel Fc-engineered monoclonal antibody to CD37 with enhanced ADCC and high proapoptotic activity for treatment of B-cell malignancies

Karl-Heinz Heider; Kerstin Kiefer; Thorsten Zenz; Matthias Volden; Stephan Stilgenbauer; Elinborg Ostermann; Anke Baum; Herbert Lamche; Zaruhi Küpcü; Alexander Jacobi; Steffen Müller; Ulrich Hirt; Günther R. Adolf; Eric Borges

The tetraspanin CD37 is widely expressed in B-cell malignancies and represents an attractive target for immunotherapy with mAbs. We have chimerized a high-affinity mouse Ab to CD37 and engineered the CH2 domain for improved binding to human Fcγ receptors. The resulting mAb 37.1 showed high intrinsic proapoptotic activity on malignant B cells accompanied by homotypic aggregation. Furthermore, the Ab-mediated high Ab-dependent cell-mediated cytotoxicity (ADCC) on lymphoma and primary CLL cells. mAb 37.1 strongly depleted normal B cells as well as spiked B-lymphoma cells in blood samples from healthy donors as well as malignant B cells in blood from CLL patients. In all assays, mAb 37.1 was superior to rituximab in terms of potency and maximal cell lysis. A single dose of mAb CD37.1 administered to human CD37-transgenic mice resulted in a reversible, dose-dependent reduction of peripheral B cells. In a Ramos mouse model of human B-cell lymphoma, administration of mAb 37.1 strongly suppressed tumor growth. Finally, a surrogate Fc-engineered Ab to macaque CD37, with in vitro proapoptotic and ADCC activities very similar to those of mAb 37.1, induced dose-dependent, reversible B-cell depletion in cynomolgus monkeys. In conclusion, the remarkable preclinical pharmacodynamic and antitumor effects of mAb 37.1 warrant clinical development for B-cell malignancies.


Handbook of Therapeutic Antibodies | 2008

Production and Downstream Processing

Klaus Bergemann; Christian Eckermann; Patrick Garidel; Stefanos Grammatikos; Alexander Jacobi; Hitto Kaufmann; Ralph Kempken; Sandra Pisch‐Heberle


Handbook of Therapeutic Antibodies | 2014

22. Process Development and Manufacturing of Therapeutic Antibodies

Alexander Jacobi; Barbara Enenkel; Patrick Garidel; Christian Eckermann; Mathias Knappenberger; Ingo Presser; Hitto Kaufmann


Blood | 2010

Novel Fc-Engineered Antibodies to CD37 with Pro-Apoptotic and Enhanced ADCC Activity

Karl-Heinz Heider; Elinborg Ostermann; Herbert Lamche; Zaruhi Kuepcue; Alexander Jacobi; Renate Konopitzky; Ulrich Hirt; Volker Reichardt; Eric Borges


Archive | 2011

Inactivation of Proteases

Alexander Jacobi; Dorothee Ambrosius; Philine Dobberthien; Christian Eckermann; Franz Nothelfer


Archive | 2013

PROCESS FOR THE INACTIVATION OF PROTEASES IN A FLUID OBTAINED FROM A CELL CULTURE BY PH SHIFT

Alexander Jacobi; Dorothee Ambrosius; Philine Dobberthien; Christian Eckermann; Franz Nothelfer


Archive | 2011

Procédé d'inactivation de protéases dans un liquide obtenu d'une culture cellulaire par modification du ph

Alexander Jacobi; Dorothee Ambrosius; Philine Dobberthien; Christian Eckermann; Franz Nothelfer


Archive | 2011

Verfahren zur inaktivierung von proteasen in einer aus einer zellkultur gewonnen flüssigkeit durch ph änderung

Alexander Jacobi; Dorothee Ambrosius; Philine Dobberthien; Christian Eckermann; Franz Nothelfer


Archive | 2011

Method for inactivating proteases by ph change in a liquid obtained from a cell culture

Alexander Jacobi; Dorothee Ambrosius; Philine Dobberthien; Christian Eckermann; Franz Nothelfer


Archive | 2005

Liganden mit antikörperbindender affinität Ligands with antibody binding affinity

Ib Johannsen; Monica Ramos Gallego; Roice Michael; Franz Nothelfer; Dorothee Ambrosius; Alexander Jacobi

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