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Lipoxygenase modulation to reverse carcinogenesis
1Department of Clinical Cancer Prevention, The University of Texas M. D. Anderson Cancer Center, Houston, Texas 77030, USA.
Abstract:
New studies of the relationship between polyunsaturated fatty acid metabolismand carcinogenesis have led to novel molecular targets for cancer chemoprevention research. These targets include procarcinogenic lipoxygenases (LOXs), including 5-, 8-, and 12-LOX, and anticarcinogenic LOXs, including 15-LOX-1 and possibly 15-LOX-2. Recent studies indicate that 15-LOX-1 is down-regulated in colorectal cancer cells and that the ability of nonsteroidal anti-inflammatory drugs, a class of clinically active cancer chemopreventive agents, to induce apoptosis and growth inhibition in these cells was dependent on the induction of 15-LOX-1 and its metabolic product 13-S-hydroxyoctadecadienoic acid. Consistent with the colorectal studies, 15-LOX very recently has shown anticarcinogenic activity in esophageal and prostatic carcinogenesis. Inhibitors of other LOXs (e.g., 5-LOX) have preclinical anticarcinogenic activity and are being developed for clinical chemoprevention study. These and other LOX data led us to propose that the various LOX pathways exist in a dynamic balance that shifts during carcinogenesis toward 5-, 8-, and 12-LOX (and cyclooxygenase-2) and away from 15-LOX. A novel approach for cancer chemoprevention would involve LOX modulators, i.e., agents that can induce the anticarcinogenic and/or inhibit the procarcinogenic LOXs, thereby shifting the balance of LOX activities from procarcinogenic to anticarcinogenic metabolism of polyunsaturated fatty acids.
Insights
New research identifies lipoxygenases (LOXs) as key targets for cancer chemoprevention. Modulating LOX activity could shift polyunsaturated fatty acid metabolism, offering a novel approach to prevent cancer development.
Area of Science:
- Biochemistry
- Molecular Biology
- Cancer Research
Background:
- Polyunsaturated fatty acid metabolism is linked to carcinogenesis.
- Lipoxygenases (LOXs) play critical roles in this process, with some promoting and others inhibiting cancer.
- 15-LOX-1 is notably down-regulated in colorectal cancer.
Purpose of the Study:
- To explore novel molecular targets for cancer chemoprevention based on LOX pathways.
- To investigate the role of LOX balance in carcinogenesis.
- To propose LOX modulators as a new chemoprevention strategy.
Main Methods:
- Review of recent studies on LOX metabolism and cancer.
- Analysis of the relationship between nonsteroidal anti-inflammatory drugs, 15-LOX-1, and cancer cell apoptosis.
- Examination of LOX activity in colorectal, esophageal, and prostatic carcinogenesis models.
Main Results:
- 15-LOX-1 and its product 13-S-hydroxyoctadecadienoic acid show anticarcinogenic activity.
- Nonsteroidal anti-inflammatory drugs' efficacy is linked to 15-LOX-1 induction.
- Carcinogenesis involves a shift in LOX balance towards procarcinogenic pathways (5-, 8-, 12-LOX, COX-2).
Conclusions:
- A dynamic balance of LOX pathways shifts during carcinogenesis.
- Targeting LOX modulators can restore the balance towards anticarcinogenic metabolism.
- This approach offers a novel strategy for cancer chemoprevention.
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