Author:
Gimenez Neus,Tripathi Rupal,Giró Ariadna,Rosich Laia,López-Guerra Mònica,López-Oreja Irene,Playa-Albinyana Heribert,Arenas Fabian,Mas José Manuel,Pérez-Galán Patricia,Delgado Julio,Campo Elias,Farrés Judith,Colomer Dolors
Abstract
AbstractChronic lymphocytic leukemia (CLL) is a B lymphoid malignancy highly dependent on the microenvironment. Despite new targeted therapies such as ibrutinib and venetoclax, disease progression and relapse remain an issue. CLL cell interactions with the supportive tissue microenvironment play a critical role in disease pathogenesis. We used a platform for drug discovery based on systems biology and artificial intelligence, to identify drugs targeting key proteins described to have a role in the microenvironment. The selected compounds were screened in CLL cell lines in the presence of stromal cells to mimic the microenvironment and validated the best candidates in primary CLL cells. Our results showed that the commercial drug simvastatin was the most effective and selective out of the tested compounds. Simvastatin decreased CLL cell survival and proliferation as well as cell adhesion. Importantly, this drug enhanced the antitumor effect of venetoclax and ibrutinib. We proposed that systems biology approaches combined with pharmacological screening could help to find new drugs for CLL treatment and to predict new combinations with current therapies. Our results highlight the possibility of repurposing widely used drugs such as statins to target the microenvironment and to improve the efficacy of ibrutinib or venetoclax in CLL cells.
Funder
Generalitat de Catalunya
Ministerio de Economía, Industria y Competitividad, Gobierno de España
European Union’s Seventh Framework Programme
Instituto de Salud Carlos III
Publisher
Springer Science and Business Media LLC
Cited by
19 articles.
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