AI Article Synopsis

  • DDX3X is an RNA helicase linked to viral replication and cancer progression, and new inhibitors have been developed to block its activity.
  • These inhibitors effectively decreased cell proliferation across various cancer types, including those with low DDX3X expression.
  • The compound BA103 showed significant promise in glioblastoma models by reducing tumor growth and migration, while also targeting the oncogenic protein β-catenin, with minimal side effects.

Article Abstract

DDX3X is an ATP-dependent RNA helicase that has recently attracted interest for its involvement in viral replication and oncogenic progression. Starting from hit compounds previously identified by our group, we have designed and synthesized a new series of DDX3X inhibitors that effectively blocked its helicase activity. These new compounds were able to inhibit the proliferation of cell lines from different cancer types, also in DDX3X low-expressing cancer cell lines. According to the absorption, distribution, metabolism, elimination properties, and antitumoral activity, compound BA103 was chosen to be further investigated in glioblastoma models. BA103 determined a significant reduction in the proliferation and migration of U87 and U251 cells, downregulating the oncogenic protein β-catenin. An in vivo evaluation demonstrated that BA103 was able to reach the brain and reduce the tumor growth in xenograft and orthotopic models without evident side effects. This study represents the first demonstration that DDX3X-targeted small molecules are feasible and promising drugs also in glioblastoma.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8582824PMC
http://dx.doi.org/10.3390/cancers13215569DOI Listing

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