| Literature DB >> 24885504 |
Ekaterina Poguzhelskaya, Dmitry Artamonov, Anastasia Bolshakova, Olga Vlasova, Ilya Bezprozvanny1.
Abstract
BACKGROUND: Imaging methods are used widely to understand structure of brain and other biological objects. However, sample penetration by light microscopy is limited due to light scattering by the tissue. A number of methods have been recently developed to solve this problem. In one approach (SeeDB) simple procedure for clarifying brain samples for imaging was described. However, this method is not compatible with immunostaining approach as SeeDB-prepared tissue is not permeable to the antibodies. Another technique for clearing brain tissue (CLARITY) was optimized for immunochemistry, but this method technically much more demanding than SeeDB.Entities:
Mesh:
Year: 2014 PMID: 24885504 PMCID: PMC4049387 DOI: 10.1186/1750-1326-9-19
Source DB: PubMed Journal: Mol Neurodegener ISSN: 1750-1326 Impact factor: 14.195
Figure 1Simplified CLARITY clearing procedure. (A) Hydrogel-embedded coronal slices before (bottom) and after (top) passive clearing procedure. (B) Coronal slices on microscope cover glass prepared for imaging. (C) Confocal images of striatal region co-stained with DARPP32 (green) and PSD-95 (red) antibodies. (D) Confocal images of hippocampus region stained with PSD-95 antibodies (red). Scale bar is 150 microns on panels C-D.
Figure 2Confocal images of hippocampal neurons from line M Thy1-GFP mouse. (A) Neuronal structures of hippocampus, 20x objective. Scale bar is 300 microns. (B) 3D reconstruction of individual GFP-positive neuron, 60x objective.
Figure 3Confocal images of striatal and hippocampal neurons from line M Thy1-GFP mouse. (A, B). 3D reconstruction of GFP-positive neurons (green) and PSD95 staining (red) is shown. 20x objective was used. Different brain regions are shown on panels (A) and (B). Scale bar is 100 microns on panels A and B.
Figure 4Two-photon imaging of hippocampal neurons from line M Thy1-GFP mouse. Single frame from 3D neuronal image reconstruction (Additional file 1). 20x objective was used. Scale bar is 150 micron.