Artículo de revista
Exosomes from bulk and stem cells from human prostate cancer have a differential microRNA content that contributes cooperatively over local and pre-metastatic niche
Fecha
2015Registro en:
Oncotarget, Advance Publications 2015
1949-2553
Autor
Sánchez, Catherine A.
Andahur, Eliana I.
Valenzuela, Rodrigo
Castellón Vera, Enrique
Fulla Ortiz, Juan
Ramos, Christian G.
Triviño, Juan C.
Institución
Resumen
The different prostate cancer (PCa) cell populations (bulk and cancer stem
cells, CSCs) release exosomes that contain miRNAs that could modify the local or
premetastatic niche. The analysis of the differential expression of miRNAs in exosomes
allows evaluating the differential biological effect of both populations on the niche, and
the identification of potential biomarkers and therapeutic targets. Five PCa primary cell
cultures were established to originate bulk and CSCs cultures. From them, exosomes
were purified by precipitation for miRNAs extraction to perform a comparative profile
of miRNAs by next generation sequencing in an Illumina platform. 1839 miRNAs were
identified in the exosomes. Of these 990 were known miRNAs, from which only 19
were significantly differentially expressed: 6 were overexpressed in CSCs and 13 in
bulk cells exosomes. miR-100-5p and miR-21-5p were the most abundant miRNAs.
Bioinformatics analysis indicated that differentially expressed miRNAs are highly
related with PCa carcinogenesis, fibroblast proliferation, differentiation and migration,
and angiogenesis. Besides, miRNAs from bulk cells affects osteoblast differentiation.
Later, their effect was evaluated in normal prostate fibroblasts (WPMY-1) where
transfection with miR-100-5p, miR-21-5p and miR-139-5p increased the expression
of metalloproteinases (MMPs) -2, -9 and -13 and RANKL and fibroblast migration. The
higher effect was achieved with miR21 transfection. As conclusion, miRNAs have a
differential pattern between PCa bulk and CSCs exosomes that act collaboratively in
PCa progression and metastasis. The most abundant miRNAs in PCa exosomes are
interesting potential biomarkers and therapeutic targets.