Egyszerű nézet

dc.contributor.author Andrey Alexeyenko
dc.contributor.author Twana Alkasalias
dc.contributor.author Tatiana Pavlova
dc.contributor.author Székely László
dc.contributor.author Vladimir Kashuba
dc.contributor.author Helene Rundqvist
dc.contributor.author Peter Wiklund
dc.contributor.author Lars Egevad
dc.contributor.author Csermely Péter
dc.contributor.author Korcsmáros Tamás
dc.contributor.author Hayrettin Guven
dc.contributor.author George Klein
dc.date.accessioned 2018-10-09T07:28:55Z
dc.date.available 2018-10-09T07:28:55Z
dc.date.issued 2015
dc.identifier 84931035962
dc.identifier.citation pagination=62; journalVolume=34; journalIssueNumber=1; journalTitle=JOURNAL OF EXPERIMENTAL AND CLINICAL CANCER RESEARCH;
dc.identifier.uri http://repo.lib.semmelweis.hu//handle/123456789/5579
dc.identifier.uri doi:10.1186/s13046-015-0178-x
dc.description.abstract Background: There is growing evidence that emerging malignancies in solid tissues might be kept under control by physical intercellular contacts with normal fibroblasts. Methods: Here we characterize transcriptional landscapes of fibroblasts that confronted cancer cells. We studied four pairs of in vitro and ex vivo fibroblast lines which, within each pair, differed in their capacity to inhibit cancer cells. The natural process was modeled in vitro by confronting the fibroblasts with PC-3 cancer cells. Fibroblast transcriptomes were recorded by Affymetrix microarrays and then investigated using network analysis. Results: The network enrichment analysis allowed us to separate confrontation- and inhibition-specific components of the fibroblast transcriptional response. Confrontation-specific differences were stronger and were characterized by changes in a number of pathways, including Rho, the YAP/TAZ cascade, NF-kB, and TGF-beta signaling, as well as the transcription factor RELA. Inhibition-specific differences were more subtle and characterized by involvement of Rho signaling at the pathway level and by potential individual regulators such as IL6, MAPK8, MAP2K4, PRKCA, JUN, STAT3, and STAT5A. Conclusions: We investigated the interaction between cancer cells and fibroblasts in order to shed light on the potential mechanisms and explain the differential inhibitory capacity of the latter, which enabled both a holistic view on the process and details at the gene/protein level. The combination of our methods pointed to proteins, such as members of the Rho pathway, pro-inflammatory signature and the YAP1/TAZ cascade, that warrant further investigation via tools of experimental perturbation. We also demonstrated functional congruence between the in vitro and ex vivo models. © 2015 Alexeyenko et al.
dc.relation.ispartof urn:issn:0392-9078
dc.title Confrontation of fibroblasts with cancer cells in vitro: Gene network analysis of transcriptome changes and differential capacity to inhibit tumor growth
dc.type Journal Article
dc.date.updated 2018-06-07T13:42:42Z
dc.language.rfc3066 en
dc.identifier.mtmt 3003264
dc.identifier.wos 000356491300001


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