Orthogonally-polarized excitation for improved two-photon and second-harmonic-generation microscopy, applied to neurotransmitter imaging with GPCR-based sensors

Author:

Pulin Mauro1,Stockhausen Kilian E.1,Masseck Olivia A.2,Kubitschke Martin2,Busse Björn1,Wiegert J. Simon1,Oertner Thomas G.1ORCID

Affiliation:

1. University Medical Center Hamburg-Eppendorf

2. University of Bremen

Abstract

Fluorescent proteins are excited by light that is polarized parallel to the dipole axis of the chromophore. In two-photon microscopy, polarized light is used for excitation. Here we reveal surprisingly strong polarization sensitivity in a class of genetically encoded, GPCR-based neurotransmitter sensors. In tubular structures such as dendrites, this effect led to a complete loss of membrane signal in dendrites running parallel to the polarization direction of the excitation beam. To reduce the sensitivity to dendritic orientation, we designed an optical device that generates interleaved pulse trains of orthogonal polarization. The passive device, which we inserted in the beam path of an existing two-photon microscope, removed the strong direction bias from fluorescence and second-harmonic (SHG) images. We conclude that for optical measurements of transmitter concentration with GPCR-based sensors, orthogonally polarized excitation is essential.

Funder

H2020 European Research Council

Deutsche Forschungsgemeinschaft

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics,Biotechnology

Cited by 3 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Microscopy and spectroscopy approaches to study GPCR structure and function;British Journal of Pharmacology;2024-01-03

2. Optical constraints on two-photon voltage imaging;2023-11-18

3. Polarization-Resolved Nonlinear Optical Microscopy;Optical Polarimetric Modalities for Biomedical Research;2023

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