Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
8456884 | Neoplasia | 2017 | 4 Pages |
Abstract
Prostate cancer cells metastasize to the bones, causing ectopic bone formation, which results in fractures and pain. The cellular mechanisms underlying new bone production are unknown. In a recent study, Lin and colleagues, by using state-of-the-art techniques, including prostate cancer mouse models in combination with sophisticated in vivo lineage-tracing technologies, revealed that endothelial cells form osteoblasts induced by prostate cancer metastasis in the bone. Strikingly, genetic deletion of osteorix protein from endothelial cells affected prostate cancer-induced osteogenesis in vivo. Deciphering the osteoblasts origin in the bone microenvironment may result in the development of promising new molecular targets for prostate cancer therapy.
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Authors
Ana E. Paiva, Luiza Lousado, Viviani M. Almeida, Julia P. Andreotti, Gabryella S.P. Santos, Patrick O. Azevedo, Isadora F.G. Sena, Pedro H.D.M. Prazeres, Isabella T. Borges, Vasco Azevedo, Akiva Mintz, Alexander Birbrair,