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Published on: January 10, 2015
Nicotine does not affect stem cell properties requisite for suicide gene therapy against glioma
Hiroaki Kenmochi1, Tomohiro Yamasaki1, Shinichiro Koizumi1
1Department of Neurosurgery, Hamamatsu University School of Medicine , Higashi-ku, Hamamatsu, Japan.
Objective::
Glioblastoma is one of the most lethal tumors in adult central nervous system with a median survival of a year and half and effective therapeutic strategy is urgently needed. For that reason, stem cell-based suicide gene therapies have attracted much interest because of potent tumor tropism of stem cells and bystander effect. In this current clinical situation, stem cells are promising delivery tool of suicide genes for glioma therapy. Since habitual cigarette smoking still prevails worldwide, we investigated the effect of nicotine on stem cell tropism toward glioma and gap junctional intercellular communication (GJIC) function between glioma and stem cells, both of which are important for suicide gene therapies. Methods: Mouse induced pluripotent stem cell-derived neural stem cells (iPS-NSCs) and human dental pulp mesenchymal stem cells (DPSCs) were used. The effect of nicotine on tumor tropism to glioma-conditioned medium (CM) at a non-cytotoxic concentration was assessed with Matrigel invasion assay. Nicotine effect on GJIC was assessed with the scrape loading/dye transfer (SL/DT) assay for co-culture of glioma and stem cells and the parachute assay among glioma cells using high-content analysis. Results: Tumor tropism of iPS-NSCs toward GL261-CM and DPSCs toward U251-CM was not affected by nicotine (0.1 and 1 µM). Nicotine at the concentrations equivalent to habitual smoking (1 µM) did not affect GJIC of iPS-NSC/GL261 and DPSC/U251 and GJIC among each glioma cells. Conclusions: The study demonstrated that non-cytotoxic concentrations of nicotine did not significantly change the stem cell properties requisite for stem cell-based suicide gene therapy.
Insights
Nicotine does not impact stem cell tropism or communication for glioma therapy. This finding suggests nicotine exposure does not hinder stem cell-based suicide gene therapies for brain tumors.
Area of Science:
- Neuro-oncology
- Stem Cell Biology
- Pharmacology
Background:
- Glioblastoma is a lethal brain tumor requiring novel therapies.
- Stem cell-based suicide gene therapy offers a promising approach due to stem cells' tumor-targeting abilities.
- The influence of common environmental factors like nicotine on this therapy is not well understood.
Purpose of the Study:
- To investigate the effect of nicotine on stem cell tropism towards glioma.
- To assess nicotine's impact on gap junctional intercellular communication (GJIC) between stem cells and glioma cells.
- To determine if nicotine affects crucial properties for stem cell-based glioma gene therapy.
Main Methods:
- Used mouse induced pluripotent stem cell-derived neural stem cells (iPS-NSCs) and human dental pulp stem cells (DPSCs).
- Assessed tumor tropism using Matrigel invasion assays with glioma-conditioned medium.
- Evaluated GJIC using scrape loading/dye transfer and parachute assays in co-cultures and glioma cells.
Main Results:
- Nicotine (0.1 and 1 µM) did not alter the tumor tropism of iPS-NSCs or DPSCs towards glioma-conditioned media.
- Nicotine at concentrations mimicking habitual smoking (1 µM) did not affect GJIC between stem cells and glioma cells.
- Nicotine also did not impact GJIC among glioma cells themselves.
Conclusions:
- Non-cytotoxic nicotine concentrations do not significantly alter stem cell tropism towards glioma.
- Nicotine does not impair gap junctional intercellular communication essential for stem cell-based gene therapy.
- These findings suggest nicotine exposure may not be a contraindication for stem cell-based glioma suicide gene therapy.
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