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Injection of Syngeneic Murine Melanoma Cells to Determine Their Metastatic Potential in the Lungs
Published on: May 24, 2016
ET-1 inhibits B-16 murine melanoma cell migration by decreasing K(+) currents
Lin-Yun Liu1, Chang-Long Hu, Lai-Ji Ma
1Department of Physiology and Biophysics, School of Life Sciences, Fudan University, Shanghai, China.
Abstract:
Cell migration is mediated by ion channels and transporters, and plays crucial roles in a variety of physiological and pathological processes. Previously, our studies have shown that a Ca(2+)-regulated K(+) current exists in B-16 murine melanoma cells, and that endothelin-1 (ET-1) inhibits the K(+) current via a PKC-dependent pathway. In the present study, patch-clamp whole-cell recording and transwell migration assays were used to examine the effects of ET-1 on B-16 murine melanoma cell migration. ET-1 (100 nM in the injection pipette and 10 nM in the incubation medium) decreased the K(+) current amplitude by 33.0 +/- 2.5% and inhibited migration of B-16 cells by 57.4 +/- 9.4%. Similarly, the Ca(2+)-regulated K(+) channel blockers, BaCl(2) and quinidine, decreased the K(+) current by 20.5 +/- 1.0% and 36.6 +/- 1.2%, respectively, and slowed migration of B-16 melanoma cells by 37.1 +/- 8.6% and 42.7 +/- 8.8%, respectively. The effect of ET-1 on the K(+) current and cell migration was simulated by ET-3. In contrast, the K(+) channel opener, diclofenac, increased the K(+) current by 128.8 +/- 11.7%, 257.4 +/- 35.8% at concentrations of 1 and 5 mM, respectively. Likewise, the migration of B-16 murine melanoma cells dramatically increased by 75.6 +/- 12.7% in the presence of 100 microM diclofenac in incubation medium. Furthermore, the ET-1- and ET-3-induced inhibition of K(+) current and migration was abrogated by diclofenac. In the presence of diclofenac, ET-1 only reduced the K(+) current amplitude by 10.6 +/- 1.1%, and slowed B-16 cell migration by only 10.8 +/- 8.9%. The results suggest that the K(+) channel-dependent migration of B-16 melanoma cells is modulated by ET-1. Cell Motil.
Insights
Endothelin-1 (ET-1) inhibits potassium (K+) currents and B-16 melanoma cell migration. Diclofenac, a K+ channel opener, reverses ET-1
Area of Science:
- Cell biology
- Physiology
- Biochemistry
Background:
- Cell migration is a fundamental biological process regulated by ion channels and transporters.
- Potassium (K+) currents play critical roles in various physiological and pathological conditions, including cancer.
- Previous research indicated a Ca(2+)-regulated K+ current in B-16 murine melanoma cells, inhibited by endothelin-1 (ET-1) via a protein kinase C (PKC)-dependent pathway.
Purpose of the Study:
- To investigate the effects of endothelin-1 (ET-1) on B-16 murine melanoma cell migration.
- To elucidate the role of K+ channels in ET-1-mediated cell migration.
- To examine the modulatory effects of K+ channel modulators on ET-1-induced changes in cell migration.
Main Methods:
- Patch-clamp whole-cell recording to measure K+ currents.
- Transwell migration assays to quantify B-16 cell migration.
- Application of ET-1, ET-3, K+ channel blockers (BaCl2, quinidine), and a K+ channel opener (diclofenac).
Main Results:
- ET-1 significantly decreased K+ current amplitude and inhibited B-16 cell migration.
- K+ channel blockers (BaCl2, quinidine) mimicked the inhibitory effects of ET-1 on both K+ current and cell migration.
- Diclofenac, a K+ channel opener, increased K+ current and dramatically enhanced B-16 cell migration, abrogating the inhibitory effects of ET-1 and ET-3.
Conclusions:
- K+ channel activity is crucial for B-16 melanoma cell migration.
- ET-1 modulates B-16 cell migration through the regulation of K+ channels.
- Targeting K+ channels may offer a therapeutic strategy for modulating melanoma cell migration.

