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Updated: Apr 24, 2026

Gene Regulation and Targeted Therapy in Gastric Cancer Peritoneal Metastasis: Radiological Findings from Dual Energy CT and PET/CT
Published on: January 22, 2018
Cellular physiological approach for treatment of gastric cancer
Atsushi Shiozaki1, Daisuke Ichikawa1, Eigo Otsuji1
1Atsushi Shiozaki, Daisuke Ichikawa, Eigo Otsuji, Division of Digestive Surgery, Department of Surgery, Kyoto Prefectural University of Medicine, Kyoto 602-8566, Japan.
Abstract:
Recent studies show that ion channels/transporters play important roles in fundamental cellular functions that would be involved in the cancer process. We review the evidence for their expression and functioning in human gastric cancer (GC), and evaluate the potential of cellular physiological approach in clinical management. Various types of ion channels, such as voltage-gated K(+) channels, intracellular Cl(-) channels and transient receptor potential channels have been found to express in GC cells and tissues, and to control cell cycles. With regard to water channels, aquaporin 3 and 5 play an important role in the progression of GC. Regulators of intracellular pH, such as anion exchanger, sodium-hydrogen exchanger, vacuolar H(+)-ATPases and carbonic anhydrases are also involved in tumorigenesis of GC. Their pharmacological manipulation and gene silencing affect cellular behaviours, suggesting their potential as therapeutic targets for GC. Our studies indicate the intracellular Cl(-) concentration could act as a mediator of cellular signaling and control cell cycle progression in GC cells. Further, we demonstrate the cytocidal effects of hypotonic shock on GC cells, and indicate that the blockade of Cl(-) channels/transporters enhances these effects by inhibiting regulatory volume decrease. A deeper understanding of molecular mechanisms may lead to the discovery of these cellular physiological approaches as a novel therapeutic strategy for GC.
Insights
Ion channels and transporters are crucial in gastric cancer (GC) progression. Targeting these, particularly chloride channels, offers a novel therapeutic strategy by enhancing cell death via hypotonic shock.
Area of Science:
- Oncology
- Cell Physiology
- Molecular Biology
Background:
- Ion channels/transporters are vital for cellular functions implicated in cancer.
- Gastric cancer (GC) involves complex cellular processes influenced by ion transport.
Purpose of the Study:
- To review ion channel and transporter expression and function in human gastric cancer.
- To evaluate cellular physiological approaches as potential clinical management strategies for GC.
Main Methods:
- Literature review of ion channel/transporter roles in GC.
- Analysis of expression and function of specific channels (K+, Cl-, TRP, aquaporins) and pH regulators in GC.
- Investigation of the impact of pharmacological manipulation and gene silencing.
Main Results:
- Various ion channels (K+, Cl-, TRP) and water channels (aquaporin 3, 5) are expressed in GC and regulate cell cycles.
- Intracellular pH regulators (anion exchanger, Na+/H+ exchanger, V-H+-ATPases, carbonic anhydrases) are involved in GC tumorigenesis.
- Intracellular chloride concentration mediates signaling and cell cycle progression; hypotonic shock induces cell death, enhanced by blocking chloride channels.
Conclusions:
- Ion channels/transporters are potential therapeutic targets for gastric cancer.
- Modulating ion transport, especially chloride channels, can enhance anti-cancer effects.
- Cellular physiological approaches targeting ion transport represent a novel therapeutic strategy for GC.
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