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In This Article

  • Summary
  • Abstract
  • Introduction
  • Protocol
  • Representative Results
  • Discussion
  • Acknowledgements
  • Materials
  • References
  • Reprints and Permissions

Summary

This protocol outlines the detailed steps of pre-embedding immunoelectron microscopy, with a focus on exploring synaptic circuits and protein localization in the retina.

Abstract

The retina comprises numerous cells forming diverse neuronal circuits, which constitute the first stage of the visual pathway. Each circuit is characterized by unique features and distinct neurotransmitters, determining its role and functional significance. Given the intricate cell types within its structure, the complexity of neuronal circuits in the retina poses challenges for exploration. To better investigate retinal circuits and cross-talk, such as the link between cone and rod pathways, and precise molecular localization (neurotransmitters or neuropeptides), such as the presence of substance P-like immunoreactivity in the mouse retina, we employed a pre-embedding immunoelectron microscopy (immuno-EM) method to explore synaptic connections and organization. This approach enables us to pinpoint specific intercellular synaptic connections and precise molecular localization and could play a guiding role in exploring its function. This article describes the protocol, reagents used, and detailed steps, including (1) retina fixation preparation, (2) pre-embedding immunostaining, and (3) post-fixation and embedding.

Introduction

The complexity of neuronal circuits in the retina presents challenges for exploration, considering the diverse cell types within its structure1,2. The initial step involves identifying synaptic connections between different cells and determining the cellular localization of specific neurotransmitters or neuropeptides. As molecular biology advances introduce new proteins, precise localization in the retina becomes crucial for understanding their functions and analyzing retinal circuits and synaptic connections3,4,5.

Protocol

The care and handling of animals were approved by the Regulation of the Ethics Committee of Wenzhou Medical University in accordance with the ARVO guidelines. Adult mice (C57BL/6J, male and female, 8 to 12 weeks of age) were utilized in this research. The equipment and reagents needed for the study are listed in the Table of Materials.

1. Preparation for retina fixation

  1. Assemble the following materials and tools: a dissecting microscope, two forcep.......

Representative Results

Figure 1 shows examples of control experiments without the incubation of primary antibodies against either protein kinase C alpha (PKCα) or SP, in which no immunoreactivity (IR) was found.

Figure 2 depicts the PKCα-IR in the mouse retina. PKCα serves as a marker for all rod bipolar cells (RBC) in the retina18. At the electron microscopy (EM) level, RBC can be identified through PKCα-IR, visu.......

Discussion

This article has described three critical steps for the successful observation of synaptic circuits and protein localization: (1) quick and weak fixation, (2) pre-embedding immunostaining, and (3) post-fixation and embedding.

We propose that fixation is the key step for a successful pre-embedding immuno-EM approach. Thus, the importance of fresh fixative and fast fixation is emphasized here, naming this principle the "4F principle," which is crucial in tissue preparation. However, achi.......

Acknowledgements

This work was supported in part by Grants from the National Key Research and Development Program of China (2022YFA1105503), the State Key Laboratory of Neuroscience (SKLN-202103), Zhejiang Natural Science Foundation of China (Y21H120019).

....

Materials

NameCompanyCatalog NumberComments
1 mL syringe needlekangdelai
1% OsO4Electron Microscopy Science19100
2,2,2-TribromoethanolSigma-AldrichT48402
8% GlutaraldehydeElectron Microscopy Science16020
8% ParaformaldehydeElectron Microscopy Science157-8
AcetoneElectron Microscopy Science10000
Anti-rabbit PKCSigma-AldrichP4334
Anti-Rabbit SPAbcamab67006
DAB Substrate kitMXB BiotechnologiesKIT-9701/9702/9703
Elbow scissorsSuzhou66 vision company54010
Electron microscopePhillipsCM120
Epon resinElectron Microscopy Science14910
forcepSuzhou66 vision companyS101A
Millipore filter paperMerck Millipore PR05538
Na2HPO4· 12H2OSigma71650A component of phosphate buffer
NaH2PO4· H2OSigma71507A component of phosphate buffer
Picric acidElectron Microscopy Science19550
Sodium borohydride (NaBH4) Sigma215511
TrisSolarbio917R071
UltramicrotomeLeica
Uranyl acetateElectron Microscopy Science22400
VACTASTAIN ABC kit, Peroxidase (Rabbit IgG)Vector LaboratoriesPK-4001

References

  1. Chua, N. J., et al. A complete reconstruction of the early visual system of an adult insect. Curr Biol. 33 (21), 4611-4623.e4614 (2023).
  2. Ravi Chander, P., Hanson, L., Chundekkad, L., Awatramani, G. B. Neural circuit....

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Retinal CircuitsMolecular LocalizationImmunoelectron MicroscopyNeurotransmittersSynaptic ConnectionsCellular CompositionOPLNeuropeptidesSubstance P like ImmunoreactivityNeuronal CircuitsVisual PathwayPre embedding ImmunostainingUltrastructural EvidenceNeurochemical Identification

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