Bethge Philipp, Carta Stefano, Lorenzo Dayra A, Egolf Ladan, Goniotaki Despoina, Madisen Linda, Voigt Fabian F, Chen Jerry L, Schneider Bernard, Ohkura Masamichi, Nakai Junichi, Zeng Hongkui, Aguzzi Adriano, Helmchen Fritjof
Brain Research Institute, University of Zurich, Zurich, Switzerland.
Neuroscience Center Zurich (ZNZ), University of Zurich and ETH Zurich, Zurich, Switzerland.
PLoS One. 2017 Jun 22;12(6):e0179460. doi: 10.1371/journal.pone.0179460. eCollection 2017.
Genetically encoded calcium indicators (GECIs) enable imaging of in vivo brain cell activity with high sensitivity and specificity. In contrast to viral infection or in utero electroporation, indicator expression in transgenic reporter lines is induced noninvasively, reliably, and homogenously. Recently, Cre/tTA-dependent reporter mice were introduced, which provide high-level expression of green fluorescent GECIs in a cell-type-specific and inducible manner when crossed with Cre and tTA driver mice. Here, we generated and characterized the first red-shifted GECI reporter line of this type using R-CaMP1.07, a red fluorescent indicator that is efficiently two-photon excited above 1000 nm. By crossing the new R-CaMP1.07 reporter line to Cre lines driving layer-specific expression in neocortex we demonstrate its high fidelity for reporting action potential firing in vivo, long-term stability over months, and versatile use for functional imaging of excitatory neurons across all cortical layers, especially in the previously difficult to access layers 4 and 6.
基因编码钙指示剂(GECIs)能够以高灵敏度和特异性对体内脑细胞活动进行成像。与病毒感染或子宫内电穿孔不同,转基因报告系中的指示剂表达是以非侵入性、可靠且均匀的方式诱导产生的。最近,引入了依赖Cre/tTA的报告小鼠,当与Cre和tTA驱动小鼠杂交时,它们能以细胞类型特异性和可诱导的方式实现绿色荧光GECIs的高水平表达。在此,我们使用R-CaMP1.07(一种在1000 nm以上能被高效双光子激发的红色荧光指示剂)构建并表征了此类首个红移GECI报告系。通过将新的R-CaMP1.07报告系与驱动新皮层层特异性表达的Cre系杂交,我们证明了它在体内报告动作电位发放方面具有高保真度、在数月内具有长期稳定性,并且可广泛用于对所有皮层层兴奋性神经元进行功能成像,尤其是在之前难以成像的第4层和第6层。