Olfactory Receptor Neurons

Olfactory receptor neurons are specialized sensory nerve cells that detect airborne odor molecules and convert chemical information into neural signals, forming the first stage of the sense of smell. Located in the olfactory epithelium, they express odorant receptors on cilia, where ligand binding activates a G protein, adenylyl cyclase, and cyclic AMP-dependent ion channels to depolarize the neuron. Their axons pass through the cribriform plate and converge in glomeruli of the olfactory bulb, preserving organized patterns of receptor input. Studying these neurons clarifies sensory transduction, odor coding, and neural circuit function while informing research on smell disorders and neuronal regeneration.

Olfactory Receptor Neurons - Related Videos

Research

JoVE Journal - Neuroscience

Whole Mount Immunolabeling of Olfactory Receptor Neurons in the Drosophila Antenna

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Cited by 7 •

2014

Herein we describe the process of whole mount immunostaining of Drosophila antennae, which enables us to better understand the molecular mechanisms involved in the diversification of olfactory receptor neurons (ORN)s.

Odorant-induced Responses Recorded from Olfactory Receptor Neurons using the Suction Pipette Technique

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Cited by 13 •

2012

Olfactory receptor neurons (ORNs) convert odor signals first into a receptor current that in turn triggers action potentials that are conveyed to second order neurons in the olfactory bulb. Here we describe the suction pipette technique to record simultaneously the odorant-induced receptor current and action potentials from mouse ORNs.

High-throughput Analysis of Mammalian Olfactory Receptors: Measurement of Receptor Activation via Luciferase Activity

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Cited by 16 •

2014

Olfactory receptor activation patterns encode odor identity, but the lack of published data identifying odorant ligands for mammalian olfactory receptors hinders the development of a comprehensive model of odor coding. This protocol describes a method to facilitate high-throughput identification of olfactory receptor ligands and quantification of receptor activation.

Perforated Patch-clamp Recording of Mouse Olfactory Sensory Neurons in Intact Neuroepithelium: Functional Analysis of Neurons Expressing an Identified Odorant Receptor

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Cited by 7 •

2015

Analyzing the physiological properties of olfactory sensory neurons still faces technical limitations. Here we record them through perforated patch-clamp in an intact preparation of the olfactory epithelium in gene-targeted mice. This technique allows the characterization of membrane properties and responses to specific ligands of neurons expressing defined olfactory receptors.

Research

JoVE Journal - Neuroscience
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Inducing Plasticity of Astrocytic Receptors by Manipulation of Neuronal Firing Rates

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Cited by 8 •

2014

Here we describe an adaptation of protocols used to induce homeostatic plasticity in neurons for the study of plasticity of astrocytic G protein-coupled receptors. Recently used to examine changes in astrocytic group I mGluRs in juvenile mice, the method can be applied to measure scaling of various astrocytic GPCRs, in tissue from adult mice in situ and in vivo, and to gain a better appreciation of the sensitivity of astrocytic receptors to changes in neuronal activity.

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