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Updated: Jan 5, 2026

Exploring the Regulation of Lipid Droplet Catabolism through Lipophagy
Published on: January 31, 2025
Aberrant lipid metabolism as an emerging therapeutic strategy to target cancer stem cells
Malini Visweswaran1, Frank Arfuso1, Sudha Warrier2
1Stem Cell and Cancer Biology Laboratory, School of Pharmacy and Biomedical Sciences, Curtin Health Innovation Research Institute, Curtin University, Western Australia, Australia.
Abstract:
Emerging evidence in cancer metabolomics has identified reprogrammed metabolic pathways to be a major hallmark of cancer, among which deregulated lipid metabolism is a prominent field receiving increasing attention. Cancer stem cells (CSCs) comprise <0.1% of the tumor bulk and possess high self-renewal, tumor-initiating properties, and are responsible for therapeutic resistance, disease recurrence, and tumor metastasis. Hence, it is imperative to understand the metabolic rewiring occurring in CSCs, especially their lipid metabolism, on which there have been recent reports. CSCs rely highly upon lipid metabolism for maintaining their stemness properties and fulfilling their biomass and energy demands, ultimately leading to cancer growth and invasion. Hence, in this review we will shed light on the aberrant lipid metabolism that CSCs exploit to boost their survival, which comprises upregulation in de novo lipogenesis, lipid droplet synthesis, lipid desaturation, and β-oxidation. Furthermore, the metabolic regulators involved in the process, such as key lipogenic enzymes, are also highlighted. Finally, we also summarize the therapeutic strategies targeting the key regulators involved in CSCs' lipid metabolism, which thereby demonstrates the potential to develop powerful and novel therapeutics against the CSC lipid metabolome.
Insights
Cancer stem cells (CSCs) utilize altered lipid metabolism for survival and growth. Targeting these metabolic pathways offers a promising strategy for novel cancer therapeutics.
Area of Science:
- Cancer biology
- Metabolomics
- Biochemistry
Background:
- Reprogrammed metabolic pathways are a hallmark of cancer.
- Deregulated lipid metabolism is increasingly recognized in cancer progression.
- Cancer stem cells (CSCs) drive therapeutic resistance, recurrence, and metastasis.
Purpose of the Study:
- To review the aberrant lipid metabolism exploited by CSCs.
- To highlight key metabolic regulators and enzymes involved.
- To summarize therapeutic strategies targeting CSC lipid metabolism.
Main Methods:
- Literature review of recent reports on CSC lipid metabolism.
- Analysis of upregulated pathways including de novo lipogenesis, lipid droplet synthesis, lipid desaturation, and beta-oxidation.
- Identification of key metabolic regulators and enzymes.
Main Results:
- CSCs heavily rely on lipid metabolism for stemness, biomass, and energy.
- Upregulation of de novo lipogenesis, lipid droplet synthesis, lipid desaturation, and beta-oxidation supports CSC survival.
- Key lipogenic enzymes are crucial regulators of CSC lipid metabolism.
Conclusions:
- Aberrant lipid metabolism is critical for CSC survival and function.
- Targeting CSC lipid metabolism presents a viable therapeutic avenue.
- Novel therapeutics can be developed by targeting the CSC lipid metabolome.
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