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Nutrient scavenging in cancer
Brendan T Finicle1, Vaishali Jayashankar1, Aimee L Edinger2
1Department of Developmental and Cell Biology, University of California Irvine, Irvine, CA, USA.
Abstract:
While cancer cell proliferation depends on access to extracellular nutrients, inadequate tumour perfusion means that glucose, amino acids and lipids are often in short supply. To overcome this obstacle to growth, cancer cells utilize multiple scavenging strategies, obtaining macromolecules from the microenvironment and breaking them down in the lysosome to produce substrates for ATP generation and anabolism. Recent studies have revealed four scavenging pathways that support cancer cell proliferation in low-nutrient environments: scavenging of extracellular matrix proteins via integrins, receptor-mediated albumin uptake and catabolism, macropinocytic consumption of multiple components of the tumour microenvironment and the engulfment and degradation of entire live cells via entosis. New evidence suggests that blocking these pathways alone or in combination could provide substantial benefits to patients with incurable solid tumours. Both US Food and Drug Administration (FDA)-approved drugs and several agents in preclinical or clinical development shut down individual or multiple scavenging pathways. These therapies may increase the extent and durability of tumour growth inhibition and/or prevent the development of resistance when used in combination with existing treatments. This Review summarizes the evidence suggesting that scavenging pathways drive tumour growth, highlights recent advances that define the oncogenic signal transduction pathways that regulate scavenging and considers the benefits and detriments of therapeutic strategies targeting scavenging that are currently under development.
Insights
Cancer cells use nutrient scavenging pathways to survive in low-nutrient tumors. Blocking these pathways, alone or with other treatments, may improve outcomes for solid tumor patients.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Cancer cell proliferation requires nutrients, but tumors often have poor blood supply, leading to nutrient scarcity.
- Cancer cells adapt by scavenging macromolecules from their environment for energy and building blocks.
Purpose of the Study:
- To review evidence on nutrient scavenging pathways driving tumor growth.
- To highlight advances in understanding the regulation of these pathways.
- To discuss therapeutic strategies targeting cancer cell scavenging.
Main Methods:
- Review of recent studies on cancer cell nutrient scavenging.
- Analysis of oncogenic signaling pathways regulating scavenging.
- Evaluation of therapeutic agents targeting scavenging pathways.
Main Results:
- Four key scavenging pathways support cancer cell proliferation in nutrient-poor environments: integrin-mediated extracellular matrix protein scavenging, receptor-mediated albumin uptake, macropinocytosis, and entosis.
- Blocking these pathways, individually or in combination, shows potential for treating incurable solid tumors.
- FDA-approved and investigational drugs can inhibit one or more scavenging pathways.
Conclusions:
- Targeting cancer cell nutrient scavenging pathways offers a promising therapeutic strategy.
- Combination therapies involving scavenging inhibitors may enhance treatment efficacy and prevent resistance.
- Further development of agents targeting these pathways could benefit patients with solid tumors.
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