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Dive into the research topics where Stefan Ewert is active.

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Featured researches published by Stefan Ewert.


Journal of Molecular Biology | 2003

Biophysical properties of human antibody variable domains.

Stefan Ewert; Thomas Huber; Annemarie Honegger; Andreas Plückthun

There are great demands on the stability, expression yield and resistance to aggregation of antibody fragments. To untangle intrinsic domain effects from domain interactions, we present first a systematic evaluation of the isolated human immunoglobulin variable heavy (V(H)) and light (V(L)) germline family consensus domains and then a systematic series of V(H)-V(L) combinations in the scFv format. The constructs were evaluated in terms of their expression behavior, oligomeric state in solution and denaturant-induced unfolding equilibria under non-reducing conditions. The seven V(H) and seven V(L) domains represent the consensus sequences of the major human germline subclasses, derived from the Human Combinatorial Antibody Library (HuCAL). The isolated V(H) and V(L) domains with the highest thermodynamic stability and yield of soluble protein were V(H)3 and V(kappa)3, respectively. Similar measurements on all domain combinations in scFv fragments allowed the scFv fragments to be classified according to thermodynamic stability and in vivo folding yield. The scFv fragments containing the variable domain combinations H3kappa3, H1bkappa3, H5kappa3 and H3kappa1 show superior properties concerning yield and stability. Domain interactions diminish the intrinsic differences of the domains. ScFv fragments containing V(lambda) domains show high levels of stability, even though V(lambda) domains are surprisingly unstable by themselves. This is due to a strong interaction with the V(H) domain and depends on the amino acid sequence of the CDR-L3. On the basis of these analyses and model structures, we suggest possibilities for further improvement of the biophysical properties of individual frameworks and give recommendations for library design.


Methods | 2004

Stability improvement of antibodies for extracellular and intracellular applications: CDR grafting to stable frameworks and structure-based framework engineering

Stefan Ewert; Annemarie Honegger; Andreas Plückthun


Biochemistry | 2002

Biophysical Properties of Camelid VHH Domains Compared to Those of Human VH3 Domains

Stefan Ewert; Christian Cambillau; Katja Conrath; Andreas Plückthun


Biochemistry | 2003

Structure-Based Improvement of the Biophysical Properties of Immunoglobulin VH Domains with a Generalizable Approach†

Stefan Ewert; and Annemarie Honegger; Andreas Plückthun


Archive | 2009

Stable and soluble antibodies inhibiting TNFα

Stefan Ewert; Alcide Barberis; David Urech; Adrian Auf Der Maur; Peter Lichtlen


Archive | 2003

Immunoglobulin frameworks which demonstrate enhanced stability in the intracellular environment and methods of identifying same

Kathrin Tissot; Stefan Ewert; Adrian Auf Der Maur; Alcide Barberis; Dorminik Escher


Archive | 2002

Modification of human variable domains

Stefan Ewert; Thomas Huber; Annemarie Honegger; Andreas Plückthun


Archive | 2008

HUMANIZED ANTIBODIES AGAINST THE BETA-AMYLOID PEPTIDE

Stefan Ewert; Adrian Auf Der Maur; Susann Cattepoel; Roger M. Nitsch


Archive | 2008

Anticorps humanises contre le peptide beta-amyloide

Stefan Ewert; Der Maur Adrian Auf; Susann Cattepoel; Roger M. Nitsch


Archive | 2008

HUMANIZED ANTIBODY TO β-AMYLOID PEPTIDE

Stefan Ewert; エーヴェルト シュテファン; Der Maur Adrian Auf; アオフ デル マオル エイドリアン; Susann Cattepoel; キャッテポエル スーザン; Nitsch Roger; ニッシュ ロジャー

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