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Updated: Jul 7, 2025

Surgical Models of Gastroesophageal Reflux with Mice
Published on: August 25, 2015
Cranberry Proanthocyanidins Mitigate Reflux-Induced Transporter Dysregulation in an Esophageal Adenocarcinoma Model
Yun Zhang1, Katherine M Weh1, Bridget A Tripp2
1Section of Thoracic Surgery, Department of Surgery, University of Michigan, 1500 East Medical Center Drive, Ann Arbor, MI 48109, USA.
Abstract:
We recently reported that cranberry proanthocyanidins (C-PACs) inhibit esophageal adenocarcinoma (EAC) by 83% through reversing reflux-induced bacterial, inflammatory and immune-implicated proteins and genes as well as reducing esophageal bile acids, which drive EAC progression. This study investigated whether C-PACs' mitigation of bile reflux-induced transporter dysregulation mechanistically contributes to EAC prevention. RNA was isolated from water-, C-PAC- and reflux-exposed rat esophagi with and without C-PAC treatment. Differential gene expression was determined by means of RNA sequencing and RT-PCR, followed by protein assessments. The literature, coupled with the publicly available Gene Expression Omnibus dataset GSE26886, was used to assess transporter expression levels in normal and EAC patient biopsies for translational relevance. Significant changes in ATP-binding cassette (ABC) transporters implicated in therapeutic resistance in humans (i.e., Abcb1, Abcb4, Abcc1, Abcc3, Abcc4, Abcc6 and Abcc10) and the transport of drugs, xenobiotics, lipids, and bile were altered in the reflux model with C-PACs' mitigating changes. Additionally, C-PACs restored reflux-induced changes in solute carrier (SLC), aquaporin, proton and cation transporters (i.e., Slc2a1, Slc7a11, Slc9a1, Slco2a1 and Atp6v0c). This research supports the suggestion that transporters merit investigation not only for their roles in metabolism and therapeutic resistance, but as targets for cancer prevention and targeting preventive agents in combination with chemotherapeutics.
Insights
Cranberry proanthocyanidins (C-PACs) prevent esophageal adenocarcinoma (EAC) by reversing bile reflux-induced changes in key transporters. This study shows C-PACs restore normal function of ATP-binding cassette and solute carrier transporters, crucial for cancer prevention.
Area of Science:
- Gastroenterology
- Molecular Biology
- Cancer Research
Background:
- Esophageal adenocarcinoma (EAC) is driven by bile reflux.
- Cranberry proanthocyanidins (C-PACs) previously showed 83% inhibition of EAC.
- The role of transporter dysregulation in EAC and C-PACs' mitigation is unclear.
Purpose of the Study:
- To investigate if C-PACs prevent EAC by mitigating bile reflux-induced transporter dysregulation.
- To identify specific transporters affected by bile reflux and C-PACs.
- To assess the translational relevance in human EAC biopsies.
Main Methods:
- Rat esophagus exposed to water, C-PACs, or bile reflux with/without C-PACs.
- RNA sequencing and RT-PCR for differential gene expression.
- Protein assessments and analysis of human EAC patient data (GSE26886).
Main Results:
- Bile reflux altered expression of ATP-binding cassette (ABC) transporters (e.g., Abcb1, Abcc10) involved in drug resistance and xenobiotic transport.
- C-PACs mitigated these reflux-induced changes in ABC transporters.
- C-PACs restored reflux-induced alterations in solute carrier (SLC), aquaporin, proton, and cation transporters.
Conclusions:
- Transporter dysregulation is a key mechanism in bile reflux-induced EAC.
- C-PACs prevent EAC by restoring normal transporter function.
- Transporters are potential targets for cancer prevention strategies and combination therapies.
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