Please use this identifier to cite or link to this item: https://ahro.austin.org.au/austinjspui/handle/1/32006
Title: Dysfunctional Lipid Metabolism-The Basis for How Genetic Abnormalities Express the Phenotype of Aggressive Prostate Cancer.
Austin Authors: Alberto, Matthew;Yim, Arthur;Lawrentschuk, Nathan;Bolton, Damien M 
Affiliation: Urology
Department of Urology, Royal Melbourne Hospital, Melbourne, VIC 3010, Australia.
Department of Urology, Austin Health, University of Melbourne, Melbourne, VIC 3010, Australia.
Issue Date: 4-Jan-2023
Date: 2023
Publication information: Cancers 2023; 15(2)
Abstract: Prostate cancer is the second most frequent cancer in men, with increasing prevalence due to an ageing population. Advanced prostate cancer is diagnosed in up to 20% of patients, and, therefore, it is important to understand evolving mechanisms of progression. Significant morbidity and mortality can occur in advanced prostate cancer where treatment options are intrinsically related to lipid metabolism. Dysfunctional lipid metabolism has long been known to have a relationship to prostate cancer development; however, only recently have studies attempted to elucidate the exact mechanism relating genetic abnormalities and lipid metabolic pathways. Contemporary research has established the pathways leading to prostate cancer development, including dysregulated lipid metabolism-associated de novo lipogenesis through steroid hormone biogenesis and β-oxidation of fatty acids. These pathways, in relation to treatment, have formed potential novel targets for management of advanced prostate cancer via androgen deprivation. We review basic lipid metabolism pathways and their relation to hypogonadism, and further explore prostate cancer development with a cellular emphasis.
URI: https://ahro.austin.org.au/austinjspui/handle/1/32006
DOI: 10.3390/cancers15020341
ORCID: 0000-0003-3722-7754
0000-0003-2045-1231
0000-0001-8553-5618
0000-0002-5145-6783
Journal: Cancers
PubMed URL: 36672291
Type: Journal Article
Subjects: androgen deprivation
genetics
lipid metabolism
prostate cancer
Appears in Collections:Journal articles

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