Intracellular chloride ([Cl-](i)) andpH(pH(i)) are fundamental regulators of neuronal excitability. They exert wide-ranging effects on synaptic signaling and plasticity and on development and disorders of the brain. The ideal technique to elucidate the underlying ionic mechanisms is quantitative and combined two-photon imaging of [Cl-](i) and pH(i), but this has never been performed at the cellular level in vivo. Here, by using a genetically encoded fluorescent sensor that includes a spectroscopic reference (an element insensitive to Cl-and pH), we show that ratiometric imaging is strongly affected by the optical properties of the brain. We have designed a method that fully corrects for this source of error. Parallel measurements of [Cl-](i) and pH(i) at the single-cell level in the mouse cortex showed the in vivo presence of the widely discussed developmental fall in [Cl-](i) and the role of the K-Cl cotransporter KCC2 in this process. Then, we introduce a dynamic two-photon excitation protocol to simultaneously determine the changes of pHi and [Cl-](i) in response to hypercapnia and seizure activity.

Simultaneous two-photon imaging of intracellular chloride concentration and pH in mouse pyramidal neurons in vivo

Luin S;Arosio D;
2017

Abstract

Intracellular chloride ([Cl-](i)) andpH(pH(i)) are fundamental regulators of neuronal excitability. They exert wide-ranging effects on synaptic signaling and plasticity and on development and disorders of the brain. The ideal technique to elucidate the underlying ionic mechanisms is quantitative and combined two-photon imaging of [Cl-](i) and pH(i), but this has never been performed at the cellular level in vivo. Here, by using a genetically encoded fluorescent sensor that includes a spectroscopic reference (an element insensitive to Cl-and pH), we show that ratiometric imaging is strongly affected by the optical properties of the brain. We have designed a method that fully corrects for this source of error. Parallel measurements of [Cl-](i) and pH(i) at the single-cell level in the mouse cortex showed the in vivo presence of the widely discussed developmental fall in [Cl-](i) and the role of the K-Cl cotransporter KCC2 in this process. Then, we introduce a dynamic two-photon excitation protocol to simultaneously determine the changes of pHi and [Cl-](i) in response to hypercapnia and seizure activity.
2017
Istituto di Biofisica - IBF
Inglese
114
41
E8770
E8779
10
https://www.scopus.com/record/display.uri?eid=2-s2.0-85030783227&origin=resultslist&sort=plf-f&src=s&sid=62911b56666145cb38c1be6dbe0f4d99&sot=b&sdt=b&sl=128&s=TITLE-ABS-KEY%28Simultaneous+two-photon+imaging+of+intracellular+chloride+concentration+and+pH+in+mouse+pyramidal+neurons+in+vivo%29&relpos=0&citeCnt=40&searchTerm=
fluorescent indicators
neurodevelopment
neuronal inhibition
bumetanide
NKCC1
14
info:eu-repo/semantics/article
262
Sato, Ss; Artoni, P; Landi, S; Cozzolino, O; Parra, R; Pracucci, E; Trovato, F; Szczurkowska, J; Luin, S; Arosio, D; Beltram, F; Cancedda, L; Kaila, K...espandi
01 Contributo su Rivista::01.01 Articolo in rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/339957
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