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Gemcitabine intercellular diffusion mediated by gap junctions: new implications for cancer therapy
Sylvine Cottin1, Karim Ghani, Pedro Otavio de Campos-Lima
1Centre de Recherche en Cancérologie de l'Université Laval, L'Hôtel-Dieu de Québec, Centre Hospitalier Universitaire de Québec, Qc G1R 2J6, Canada.
Background:
Solid tumors are often poorly vascularized, with cells that can be 100 microm away from blood vessels. These distant cells get less oxygen and nutrients and are exposed to lower doses of chemotherapeutic agents. As gap junctions allow the passage of small molecules between cells, we tested the possibility that the chemotherapeutic agent gemcitabine can diffuse through gap junctions in solid tumors.
Results:
We first showed with a dye transfer assay that the glioblastoma and the osteosarcoma cells used in this study have functional gap junctions. These cells were genetically engineered to express the herpes simplex virus thymidine kinase (TK), and induced a "bystander effect" as demonstrated by the killing of TK-negative cells in presence of the nucleoside analogue ganciclovir (GCV). The ability of gemcitabine to induce a similar bystander effect was then tested by mixing cells treated with 3 microM gemcitabine for 24 hours with untreated cells at different ratios. In all cell lines tested, bystander cells were killed with ratios containing as low as 5% treated cells, and this toxic effect was reduced in presence of alpha-glycyrrhetinic acid (AGA), a specific gap junction inhibitor. We also showed that a 2- or a 24-hour gemcitabine treatment was more efficient to inhibit the growth of spheroids with functional gap junctions as compared to the same treatment made in presence of AGA. Finally, after a 24-hour gemcitabine treatment, the cell viability in spheroids was reduced by 92% as opposed to 51% in presence of AGA.
Conclusion:
These results indicate that gemcitabine-mediated toxicity can diffuse through gap junctions, and they suggest that gemcitabine treatment could be more efficient for treating solid tumors that display gap junctions. The presence of these cellular channels could be used to predict the responsiveness to this nucleoside analogue therapy.
Insights
Chemotherapy drug gemcitabine can diffuse through gap junctions in solid tumors, enhancing its effectiveness. This suggests gap junction presence may predict patient response to gemcitabine therapy.
Area of Science:
- Oncology
- Cell Biology
- Pharmacology
Background:
- Solid tumors often exhibit poor vascularization, leading to nutrient and oxygen deprivation in distant cancer cells.
- This poor vascularization limits the efficacy of chemotherapeutic agents, which struggle to reach all tumor cells.
- Gap junctions facilitate intercellular communication and the passage of small molecules, presenting a potential pathway for drug delivery.
Purpose of the Study:
- To investigate whether the chemotherapeutic agent gemcitabine can diffuse through gap junctions in solid tumor cells.
- To determine if gap junction communication influences gemcitabine's efficacy in treating solid tumors.
- To explore the potential of gap junctions as a predictive biomarker for gemcitabine therapy response.
Main Methods:
- Utilized dye transfer assays to confirm functional gap junctions in glioblastoma and osteosarcoma cell lines.
- Employed a bystander effect assay using gemcitabine and alpha-glycyrrhetinic acid (AGA), a gap junction inhibitor.
- Assessed gemcitabine's impact on spheroid growth and cell viability, with and without AGA.
Main Results:
- Demonstrated functional gap junctions in tested glioblastoma and osteosarcoma cells.
- Gemcitabine induced a bystander effect, killing non-treated cells, which was inhibited by AGA.
- Gemcitabine treatment significantly reduced spheroid viability (92%) compared to treatment with AGA (51%).
Conclusions:
- Gemcitabine-mediated toxicity can be effectively transmitted through gap junctions.
- Gemcitabine treatment may be more efficacious in solid tumors characterized by functional gap junctions.
- The presence of gap junctions could serve as a predictive marker for gemcitabine therapy responsiveness.
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