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Dive into the research topics where Margit Haahr Hansen is active.

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Featured researches published by Margit Haahr Hansen.


Journal of Virology | 2011

Capturing the Natural Diversity of the Human Antibody Response against Vaccinia Virus

Johan Lantto; Margit Haahr Hansen; Søren Kofoed Rasmussen; Lucilla Steinaa; Tine Rugh Poulsen; Jackie Duggan; Mike Dennis; Irene Naylor; Linda Easterbrook; Søren Bregenholt; John S. Haurum; Allan Jensen

ABSTRACT The eradication of smallpox (variola) and the subsequent cessation of routine vaccination have left modern society vulnerable to bioterrorism employing this devastating contagious disease. The existing, licensed vaccines based on live vaccinia virus (VACV) are contraindicated for a substantial number of people, and prophylactic vaccination of large populations is not reasonable when there is little risk of exposure. Consequently, there is an emerging need to develop efficient and safe therapeutics to be used shortly before or after exposure, either alone or in combination with vaccination. We have characterized the human antibody response to smallpox vaccine (VACV Lister) in immunized volunteers and isolated a large number of VACV-specific antibodies that recognize a variety of different VACV antigens. Using this broad antibody panel, we have generated a fully human, recombinant analogue to plasma-derived vaccinia immunoglobulin (VIG), which mirrors the diversity and specificity of the human antibody immune response and offers the advantage of unlimited supply and reproducible specificity and activity. The recombinant VIG was found to display a high specific binding activity toward VACV antigens, potent in vitro VACV neutralizing activity, and a highly protective efficacy against VACV challenge in the mouse tail lesion model when given either prophylactically or therapeutically. Altogether, the results suggest that this compound has the potential to be used as an effective postexposure prophylaxis or treatment of disease caused by orthopoxviruses.


International Archives of Allergy and Immunology | 2006

Allergen-Specific Polyclonal Antibodies Reduce Allergic Disease in a Mouse Model of Allergic Asthma

Ulrik Moerch; Margit Haahr Hansen; Nils Jakob Vest Hansen; Lone Kjær Rasmussen; Martin B. Oleksiewicz; Torben P. Frandsen; John S. Haurum; Søren Bregenholt

Background: Recombinant allergen-specific immunoglobulin G (IgG) antibody therapy can reduce allergic asthma symptoms by inhibiting the immunoglobulin E (IgE)-mediated allergic response. This study investigated the effect of intranasally administered allergen-specific monoclonal (mAb) and polyclonal (pAb) antibody on airway inflammation and hyperresponsiveness (AHR) in a mouse model of human asthma. Methods: Ovalbumin (OVA)-specific IgG2b antibodies were generated by phage display using spleens from OVA-immunized mice, and screening against OVA and finally expressed in CHO cells. Sensitized mice were treated intranasally with either a recombinant anti-OVA mAb (gc32) or a polyclonal preparation comprising seven selected antibodies (including gc32). Control mice received diluent only, OVA only, a control polymeric IgG or dexamethasone. Following challenge with nebulized OVA, investigators assessedairway inflammation by histology and cellular composition of the bronchoalveolar fluid, and methacholine-induced airway hyperresponsiveness (AHR). Serum levels of total and OVA-specific IgE were measured by ELISA. Results: Sensitized mice developed airway inflammation and AHR in response to OVA challenge. Intranasally administered OVA-specific murine polyclonal or monoclonal IgG2b antibodies both reduced OVA-induced lung inflammation. Polyclonal, but not anti-OVA mAb, also reduced AHR and eosinophil influx into the airway lumen. Both anti-OVA antibody preparations reduced levels of specific IgE with no effect on total IgE levels. Conclusions: Intranasal treatment with allergen-specific pAb reduces pulmonary inflammation and AHR in a mouse model of allergic asthma, but allergen-specific mAb reduces inflammation only. Allergen-specific recombinant pAb offers a potentially valuable therapeutic approach to the management of allergic asthma.


Journal of Molecular Biology | 2006

Isolation of Human Antibody Repertoires with Preservation of the Natural Heavy and Light Chain Pairing

Per-Johan Meijer; Peter S. Andersen; Margit Haahr Hansen; Lucilla Steinaa; Allan Jensen; Johan Lantto; Martin B. Oleksiewicz; Kaja Tengbjerg; Tine Rugh Poulsen; Vincent W. Coljee; Søren Bregenholt; John S. Haurum; Lars Soegaard Nielsen


Journal of the American Chemical Society | 2009

A Yoctoliter-Scale DNA Reactor for Small-Molecule Evolution

Margit Haahr Hansen; Peter Blakskjær; Lars Kolster Petersen; Tara Heitner Hansen; Jonas Westergaard Højfeldt; Kurt V. Gothelf; Nils Jakob Vest Hansen


Archive | 2004

Method for linking sequences of interest

Martin B. Oleksiewicz; Lars Soegaard Nielsen; Peter S. Andersen; Margit Haahr Hansen


Archive | 2006

Anti-orthopoxvirus recombinant polyclonal antibody

Allan Jensen; Johan Lantto; Margit Haahr Hansen; Lone Kjær Rasmussen; Søren Kofoed Rasmussen; Lucilla Steinaa


Archive | 2005

Structural nucleic acid guided chemical synthesis

Nils Jakob Vest Hansen; Peter Blakskjær; Margit Haahr Hansen; Lars Kolster Petersen; Tara Renee Heitner


Archive | 2006

Rekombinanter polyklonaler Anti-Orthopoxvirus-Antikörper

Johan Lantto; Søren Kofoed Rasmussen; Allan Jensen; Lucilla Steinaa; Lone Kjær Rasmussen; Margit Haahr Hansen


Keystone Symposia on Viral Immunity: From Basic Mechanisms to Vaccines | 2006

A fully human recombinant polyclonal anti-vaccinia virus antibody

Allan Jensen; Johan Lantto; Margit Haahr Hansen; Søren Koefoed Rasmussen; Lone Kjær Rasmussen; Lucilla Steinaa; Tine Rugh Poulsen; Finn C. Wiberg; Irene Naylor; Linda Easterbrook; Kevin Bewley; Mike Dennis; Jackie Duggan; Vincent W. Coljee; Søren Bregenholt; John S. Haurum


Archive | 2005

Strukturelle nukleinsäure-geführte chemische synthese Structural nucleic acid guided chemical synthesis

Nils Jakob Vest Hansen; Peter Blakskjar; Margit Haahr Hansen; Lars Kolster Petersen; Tara Renee Heitner

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Lucilla Steinaa

International Livestock Research Institute

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