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Immunology
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March 24, 2011
Stromal cells directly mediate the re-establishment of the lymph node compartments after transplantation by CXCR5 or CCL19/21 signalling
Manuela Buettner, Ulrike Bode
Physiological Genomics
|
September 12, 2013
Mapping colitis susceptibility in mouse models: distal chromosome 3 contains major loci related to Cdcs1
Manuela Buettner, André Bleich
Frontiers in Immunology
|
September 23, 2016
Development and Function of Secondary and Tertiary Lymphoid Organs in the Small Intestine and the Colon
Manuela Buettner, Matthias Lochner
Clinical & Developmental Immunology
|
July 1, 2011
Lymph node transplantation and its immunological significance in animal models
Manuela Buettner, Ulrike Bode
European Journal of Immunology
|
January 20, 2011
Lymph node stromal cells strongly influence immune response suppression
Manuela Buettner, Reinhard Pabst, Ulrike Bode
Trends in Immunology
|
December 9, 2009
Stromal cell heterogeneity in lymphoid organs
Manuela Buettner, Reinhard Pabst, Ulrike Bode
ALTEX
|
January 12, 2019
Alternative methods to replace or reduce animal models in biomedical research
Florenza Lüder Ripoli, Manuela Buettner, André Bleich
Inflammatory Bowel Diseases
|
July 13, 2015
A Multihit Model: Colitis Lessons from the Interleukin-10-deficient Mouse
Lydia M Keubler, Manuela Buettner, Christine Häger, et al.
Immunity, Inflammation and Disease
|
December 16, 2014
VEGF-C improves regeneration and lymphatic reconnection of transplanted autologous lymph node fragments: An animal model for secondary lymphedema treatment
Lia Schindewolffs, Gerhard Breves, Manuela Buettner, et al.
Immunology
|
November 20, 2009
Mesenteric lymph nodes are not required for an intestinal immunoglobulin A response to oral cholera toxin
Anika Hahn, Nadja Thiessen, Reinhard Pabst, et al.
Page
of 5
Search research articles
Search
Showing results (1-10 of 47) with videos related to
Sort By:
Page
of 5
Immunology
|
March 24, 2011
Stromal cells directly mediate the re-establishment of the lymph node compartments after transplantation by CXCR5 or CCL19/21 signalling
Manuela Buettner, Ulrike Bode
Physiological Genomics
|
September 12, 2013
Mapping colitis susceptibility in mouse models: distal chromosome 3 contains major loci related to Cdcs1
Manuela Buettner, André Bleich
Frontiers in Immunology
|
September 23, 2016
Development and Function of Secondary and Tertiary Lymphoid Organs in the Small Intestine and the Colon
Manuela Buettner, Matthias Lochner
Clinical & Developmental Immunology
|
July 1, 2011
Lymph node transplantation and its immunological significance in animal models
Manuela Buettner, Ulrike Bode
European Journal of Immunology
|
January 20, 2011
Lymph node stromal cells strongly influence immune response suppression
Manuela Buettner, Reinhard Pabst, Ulrike Bode
Trends in Immunology
|
December 9, 2009
Stromal cell heterogeneity in lymphoid organs
Manuela Buettner, Reinhard Pabst, Ulrike Bode
ALTEX
|
January 12, 2019
Alternative methods to replace or reduce animal models in biomedical research
Florenza Lüder Ripoli, Manuela Buettner, André Bleich
Inflammatory Bowel Diseases
|
July 13, 2015
A Multihit Model: Colitis Lessons from the Interleukin-10-deficient Mouse
Lydia M Keubler, Manuela Buettner, Christine Häger, et al.
Immunity, Inflammation and Disease
|
December 16, 2014
VEGF-C improves regeneration and lymphatic reconnection of transplanted autologous lymph node fragments: An animal model for secondary lymphedema treatment
Lia Schindewolffs, Gerhard Breves, Manuela Buettner, et al.
Immunology
|
November 20, 2009
Mesenteric lymph nodes are not required for an intestinal immunoglobulin A response to oral cholera toxin
Anika Hahn, Nadja Thiessen, Reinhard Pabst, et al.
Page
of 5