科研速览 · Science Skim继续刷下去 · Keep skimming →
◇ bioRxiv2026-09-02· neuroscience

iClima: a ratiometric genetically encoded sensor for optical imaging of fast GABAergic chloride currents in vitro and in vivo

G. Pasquini, S. Giubbolini, G. Nardi, M. Brondi, E. Beyene, C. Balsi, A. Egidi, H. Tsushima Semini, S. Landi, M. Stancampiano, A. D. Beale, E. M. Watson, R. S. Edgar, J. S. ONeill, D. Arosio, M. Santi, A. Fassio, C. Lodovichi, G. M. Ratto

原始摘要(英文原文)· Original abstract
Fast GABAergic inhibition in the brain is mediated by chloride currents whose driving force depends on intracellular Chloride concentration ([Cl-]i). Resolving the spatiotemporal dynamics of [Cl-]i in neurons requires a sensor combining high Cl- affinity, pH independence, and photostability - properties no existing tool achieves simultaneously. Here we introduce iClima (improved Chloride Imaging), a ratiometric genetically encoded sensor with high Cl- affinity (Kd=3.5 mM at pH 7.2), pH-insensitive under physiological conditions, and markedly improved photostability compared to existing sensors. These properties enable dynamic Cl- imaging without simultaneous pH correction. We demonstrate that iClima resolves GABAA-driven Cl- transients in cultured neurons, detects discrete Cl- hotspots along dendrites, and captures sensory-evoked Cl- transients in vivo. Finally, exploiting the spectral compatibility of iClima with GCaMP6f, we measure in interleaved trials Cl- and Ca2+ transients in the same neurons in vivo, revealing a divergence between the somatic inhibitory drive and the neuronal excitation state as reported by Ca2+ dynamics.
读原文 · Read the paper ↗

AI 追问PRO

登录后使用 AI 追问

讨论区

登录后参与讨论

相关论文 · Related

iClima: a ratiometric genetically encoded sensor for optical imaging of fast GABAergic chloride currents in vitro and in vivo — 科研速览 Science Skim