研究目的
To present an optimized protocol that combines stereological data collection with multiple immunofluorescence techniques to maximize explanatory power and efficiency in neuroscientific research.
研究成果
The protocol successfully combines stereological data collection with multiple immunofluorescence techniques, providing reliable estimates of cell populations with low sampling error and high intrarater reliability. It offers a valuable tool for neuroscientists to maximize explanatory power and efficiency in their research.
研究不足
The protocol may require optimization for different antibodies and tissue types. Photobleaching can be a challenge, and the choice of fluorophores and mounting media is critical to minimize this issue.
1:Experimental Design and Method Selection:
The protocol integrates stereological data collection with multiple immunofluorescence techniques, using widefield epifluorescence filter sets optimized for blue (DAPI), green (FITC), and far red (CY5) channels. It includes high temperature antigen retrieval and the use of secondary antibodies conjugated to stable fluorophores.
2:Sample Selection and Data Sources:
Rat cerebral cortex at postnatal day 10 was used to estimate the number of Ctip2 immunoreactive subcerebral projection neurons and NeuN immunoreactive neurons.
3:List of Experimental Equipment and Materials:
Includes cryostat or microtome, rotator, stir plate, rice steamer, various reagents and solutions for immunolabeling, and stereology software suite.
4:Experimental Procedures and Operational Workflow:
Detailed steps for tissue processing, immunolabeling, and optical fractionator data collection, including sectioning, antigen retrieval, blocking, primary and secondary antibody application, and mounting.
5:Data Analysis Methods:
The optical fractionator technique was used for numerical estimates of cell number, with error estimates and intraobserver reliability tests performed to assess the effectiveness of the defined parameters.
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Stereology software suite
Stereo Investigator
MBF Bioscience
Used for stereological data collection and analysis.
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Microscope
BX61
Olympus
Used for fluorescence imaging and stereological sampling.
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High magnification oil lens
60× PlanApo
Olympus
Used for fine optical sectioning during stereological sampling.
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Low magnification air lens
2× PlanApo
Olympus
Used for delineating the region of interest at low power.
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Fluorescence illumination system
Lumen 200
Prior
Provides illumination for fluorescence imaging.
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Monochrome video camera
ORCA-ER-1394
Hamamatsu
Transmits fluorescence signal to a workstation for visualization.
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Immersion oil
MOIL-30
Olympus
Used with high magnification oil lens for fine optical sectioning.
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Cryostat
Used for cryosectioning tissue.
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Rotator
4630
Barnstead Lab-Line
Used for rotating samples during immunolabeling.
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Stir plate
12365-382
VWR
Used for stirring solutions.
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Rice steamer
5712
Oster
Used for antigen retrieval.
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Filter Cubes
DAPI, FITC, TRITC, and Cy5 filter sets
Chroma
Used for viewing multiple fluorescence channels.
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Automated stage
Prior
Used for systematic sampling during stereological data collection.
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Microcator
Heidenhain
Used for measuring tissue thickness during stereological sampling.
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