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Updated: Feb 2, 2026

Orthotopic Mouse Model of Colorectal Cancer
Published on: December 4, 2007
Bromelain effectively suppresses Kras-mutant colorectal cancer by stimulating ferroptosis
Sujeong Park1, Jinjoo Oh1, Minhee Kim1
1Department of Biological Sciences, College of Natural Sciences, Wonkwang University, Iksan, Chunbuk, Korea.
Abstract:
Here, we investigated the possible anti-cancer properties of bromelain in Kras mutant human colorectal carcinoma cell lines and a mouse model harboring a Kras mutation. Cell growth and proliferation were significantly reduced in the Kras mutant colorectal carcinoma cell lines following treatment with 50 μg/mL bromelain as assessed by crystal violet staining and a proliferation assay. To identify the molecules responsible for this action, the expression levels of genes involved in signaling pathways and miRNAs were analyzed by real-time PCR. Among the genes tested, down-regulation of ACSL-4 and up-regulation of miRNAs targeting ASCL-4 were observed in Caco2 cells. Compared to the Kras wild-type colorectal carcinoma cell lines, Kras mutant colorectal carcinoma cell lines exhibited a remarkably up-regulated expression of ACSL-4, which is responsible for ferroptosis sensitivity. Moreover, the knockdown of ACSL-4 by a specific shRNA inhibited erastin-induced ferroptosis in Kras mutant DLD-1 cells as assessed by propidium iodide staining and lipid reactive oxygen species measurement. Our findings indicate that bromelain effectively exerts cytotoxic effects in Kras mutant colorectal cancer cells compared to in Kras wild-type colorectal cancer cells. Differential expression of ACSL-4 is responsible for the differential action of bromelain in regulating ferroptotic cell death.
Insights
Bromelain shows anti-cancer effects against Kras mutant colorectal cancer by inducing ferroptosis. This action is linked to the differential expression of ACSL-4, a key regulator of ferroptosis sensitivity.
Area of Science:
- Oncology
- Biochemistry
- Molecular Biology
Background:
- Kras mutations are common drivers in colorectal cancer.
- Targeting specific vulnerabilities in Kras-mutant cancers is crucial for effective therapy.
Purpose of the Study:
- To investigate the anti-cancer properties of bromelain in Kras mutant colorectal cancer.
- To elucidate the molecular mechanisms underlying bromelain's effects, focusing on ferroptosis.
Main Methods:
- Cell culture of Kras mutant and wild-type colorectal carcinoma cell lines.
- Bromelain treatment and assessment of cell viability and proliferation.
- Gene and miRNA expression analysis using real-time PCR.
- ACSL-4 knockdown using shRNA.
- Erastin-induced ferroptosis assays.
Main Results:
- Bromelain significantly reduced cell growth and proliferation in Kras mutant cell lines.
- ACSL-4 expression was upregulated in Kras mutant cells and targeted by specific miRNAs.
- Bromelain treatment led to downregulation of ACSL-4 and induced ferroptosis.
- ACSL-4 knockdown inhibited bromelain-induced ferroptosis.
Conclusions:
- Bromelain exhibits potent cytotoxic effects against Kras mutant colorectal cancer cells.
- Differential ACSL-4 expression mediates bromelain's efficacy by regulating ferroptotic cell death.
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