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Spatial Multiplexing of Fluorescent Reporters for Imaging Signaling Network Dynamics - ScienceDirect

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Figure S2. Immunostaining of Cellular Organelles in Cultured Mouse Neurons Expressing SiRIs and Immunohistochemical Characterization of Cellular and Synaptic State Markers in Mouse Brains Expressing SiRIs, Related to Figures 2, 4, and6 Figure S3. Design of S2a-cAMPr and Utilization for Multiplexed SiRI Imaging, Related to Figure 2 Figure S4. Design of RNA Scaffold-Based SiRI Reporters and Utilization for Simultaneous Recording of Ca2+ and cAMP Activities in Mammalian Cells, Related to Figure 2 Figure 3. Spatially Multiplexed Imaging of Reporters for Calcium, cAMP, and PKA in Single Cultured Neurons Figure S5. Spatially Multiplexed Imaging of Three GFP-Based Reporters for Calcium, cAMP, and PKA Activities at Different Subcellular Locations in Single Mouse Neuron and in a Human Cell Line, Related to Figure 3 Figure S6. Waveform Analysis of Ca2+, cAMP, and PKA Responses at Soma and Neurite Locations in Cultured Mouse Hippocampal Neurons under Forskolin Stimulation, Related to Figure 3 Fig

Figure S2. Immunostaining of Cellular Organelles in Cultured Mouse Neurons Expressing SiRIs and Immunohistochemical Characterization of Cellular and Synaptic State Markers in Mouse Brains Expressing SiRIs, Related to Figures 2, 4, and6 Figure S3. Design of S2a-cAMPr and Utilization for Multiplexed SiRI Imaging, Related to Figure 2 Figure S4. Design of RNA Scaffold-Based SiRI Reporters and Utilization for Simultaneous Recording of Ca2+ and cAMP Activities in Mammalian Cells, Related to Figure 2 Figure 3. Spatially Multiplexed Imaging of Reporters for Calcium, cAMP, and PKA in Single Cultured Ne

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