OV, G., MK, C., H, A. K., FH, L., R, L., S, C., & MP, H. (2026). Macrophages sense and follow physiologically relevant K+ and Na+ gradients: How induced dipoles and ionotaxis may explain electrotaxis. Cell communication and signaling : CCS. https://doi.org/10.1186/s12964-026-02959-0
Chicago Style (17th ed.) CitationOV, Griffiths, Catacutan MK, Abdul Kader H, Labeed FH, Lewis R, Cirovic S, and Hughes MP. "Macrophages Sense and Follow Physiologically Relevant K+ and Na+ Gradients: How Induced Dipoles and Ionotaxis May Explain Electrotaxis." Cell Communication and Signaling : CCS 2026. https://doi.org/10.1186/s12964-026-02959-0.
MLA (9th ed.) CitationOV, Griffiths, et al. "Macrophages Sense and Follow Physiologically Relevant K+ and Na+ Gradients: How Induced Dipoles and Ionotaxis May Explain Electrotaxis." Cell Communication and Signaling : CCS, 2026, https://doi.org/10.1186/s12964-026-02959-0.