Oliver Broom
Santaris Pharma a/s
3 Papers
Oliver Broom is an academic researcher from Santaris Pharma a/s. The author has contributed to research in topics: microRNA & Biology. The author has an hindex of 3, co-authored 3 publications.
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Papers
Regulation of acute graft-versus-host disease by microRNA-155
Parvathi Ranganathan,Catherine E. A. Heaphy,Stefan Costinean,Nicole Stauffer,Caroline Na,Mehdi Hamadani,Ramasamy Santhanam,Charlene Mao,Patricia A. Taylor,Sukhinder K. Sandhu,Gang He,Arwa Shana'ah,Gerard J. Nuovo,Alessandro Laganà,Luciano Cascione,Luciano Cascione,Susanna Obad,Oliver Broom,Sakari Kauppinen,Sakari Kauppinen,John C. Byrd,Michael A. Caligiuri,Danilo Perrotti,Gregg A. Hadley,Guido Marcucci,Steven M. Devine,Bruce R. Blazar,Carlo M. Croce,Ramiro Garzon +28 more
TL;DR: It is shown that miR-155 expression was up-regulated in T cells from mice developing aGVHD after alloHSCT, and this data indicate a role for microRNA-155 in the regulation of GVHD and point to mi R-155 as a novel target for therapeutic intervention in this disease.
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MiR-21 is up-regulated in psoriasis and suppresses T cell apoptosis
Florian Meisgen,Ning Xu,Tianling Wei,Peter Janson,Susanna Obad,Oliver Broom,Nikoletta Nagy,Sakari Kauppinen,Sakari Kauppinen,Lajos Kemény,Mona Ståhle,Andor Pivarcsi,Enikö Sonkoly +12 more
TL;DR: The results suggest that miR‐21 suppresses apoptosis in activated T cells, and thus, overexpression of miR-21 may contribute to T cell–derived psoriatic skin inflammation.
Silencing of microRNA families by seed-targeting tiny LNAs.
Susanna Obad,Camila O. dos Santos,Andreas Petri,Markus Heidenblad,Oliver Broom,Cristian I. Ruse,Cexiong Fu,Morten Lindow,Jan Stenvang,Ellen Marie Straarup,Henrik Frydenlund Hansen,Troels Koch,Darryl J. Pappin,Gregory J. Hannon,Sakari Kauppinen,Sakari Kauppinen +15 more
TL;DR: A method that enables antagonism of miRNA function using seed-targeting 8-mer locked nucleic acid (LNA) oligonucleotides, termed tiny LNAs is developed, which supports the utility of tinyLNAs in elucidating the functions of mi RNA families in vivo.