Severe disruption of the cytoskeleton and immunologically relevant surface molecules in a human macrophageal cell line in microgravity—Results of an in vitro experiment on board of the Shenzhou-8 space mission

Author:

Paulsen Katrin,Tauber Svantje,Goelz Nadine,Simmet Dana Michaela,Engeli Stephanie,Birlem Maria,Dumrese Claudia,Karer Anissja,Hunziker Sandra,Biskup Josefine,Konopasek Shalimar,Suh Durie,Hürlimann Eva,Signer Christoph,Wang Anna,Sang Chen,Grote Karl-Heinrich,Zhuang Fengyuan,Ullrich Oliver

Funder

German Aerospace Center (DLR) and the China Manned Space Engineering Office (CMSEO)

DLR

Publisher

Elsevier BV

Subject

Aerospace Engineering

Reference62 articles.

1. JP Could spaceflight-associated immune system weakening preclude the expansion of human presence beyond Earth's orbit?;Guéguinou;J. Leukoc. Biol.,2009

2. Signal transduction in cells of the immune system in microgravity;Ullrich;Cell Commun. Signal,2008

3. Gravitational force-triggered stress in cells of the immune system;Ullrich,2011

4. Clinical aspects of crew health;Hawkins,1975

5. Reactivity of lymphoid blood cells in the crew of Soiuz-6, Soiuz-7 and Soiuz-8 spacecraft before and after flight;Konstantinova;Kosm. Biol. Med.,1973

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