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    OKLAHOMA CITY, Oct. 4, 2023 /PRNewswire/ — Flogistix, a global leader in vapor recovery and methane abatement solutions, announced today company representatives will be attending…

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    Australian researchers from Adelaide University and the Olivia Newton-John Cancer Research Institute have identified a novel molecular switch that drives the spread of aggressive tumors. Published in EMBO Molecular Medicine, the breakthrough study reveals that Australian researchers uncover a promising new way to tackle triple-negative breast cancer by restoring a critical regulatory molecule known as miR-342. The discovery opens new avenues to prevent life-threatening secondary cancers in organs such as the lungs and bones. Triple-negative breast cancer accounts for 10% to 15% of Australia’s approximately 21,000 annual breast cancer diagnoses but causes a disproportionate number of deaths. Lead investigators demonstrated that when miR-342 levels fall, a cancer-driving pathway called E2F becomes overactive, allowing dormant cancer cells to spread throughout the body and form dangerous secondary tumors. In pre-clinical models, scientists demonstrated that restoring miR-342 levels markedly reduced the spread of cancer cells to distant organs. Furthermore, researchers discovered that palbociclib, an existing CDK4/6 inhibitor drug currently approved for hormone receptor-positive breast cancers, significantly halted metastatic tumor growth in models exhibiting low miR-342 levels. The findings suggest measuring miR-342 levels could allow doctors to repurpose existing therapeutics to treat high-risk patients.