研究目的
To demonstrate the use of upconversion nanoparticles (8T-UCNP) in combination with laser-scanning multiphoton microscopy for high-resolution, high-contrast imaging of biological systems.
研究成果
The study demonstrated that 8T-UCNP nanoparticles in combination with laser-scanning multiphoton microscopy can achieve high-resolution, high-contrast imaging of biological systems. The method is suitable for imaging in environments with intense autofluorescence and turbidity, paving the way for advanced intravital imaging applications.
研究不足
The study is limited by the specific type of nanoparticles used (8T-UCNP) and the requirement for specialized equipment (laser-scanning multiphoton microscopy). The applicability to other types of nanoparticles or imaging modalities was not explored.
1:Experimental Design and Method Selection:
The study utilized upconversion nanoparticles (8T-UCNP) for labeling biological systems and a commercial laser-scanning multiphoton microscopy for imaging. The methodology included spectral and temporal filtering to enhance contrast and resolution.
2:Sample Selection and Data Sources:
Human breast adenocarcinoma cells SK-BR-3 and freshly excised spleen tissue of laboratory mice were used as biological samples.
3:List of Experimental Equipment and Materials:
Equipment included a mode-locked Ti:Sa laser, Axio Observer Z1 LSM 710 DUO NLO laser-scanning microscope, time-correlated single photon counting system, and various optical filters.
4:Experimental Procedures and Operational Workflow:
The procedure involved labeling cells and tissues with 8T-UCNP, imaging using multiphoton microscopy with spectral and temporal filtering, and analyzing the images for contrast and resolution enhancement.
5:Data Analysis Methods:
Data analysis included kinetic modeling of 8T-UCNP emission, measurement of emission lifetime, and calculation of contrast enhancement.
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S121C
standard photodiode power sensor
Thorlabs
Measurement of laser power
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Axio Observer Z1 LSM 710 DUO NLO
laser-scanning microscope
Carl Zeiss
Imaging of labeled biological samples
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Simple-Tau 152
time-correlated single photon counting system
Becker & Hickl GmbH
Time-gated imaging for contrast enhancement
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HPM-100-40
hybrid photodetector
Becker & Hickl GmbH
Photoelectric conversion of PL emission
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SPC-150
card
Becker & Hickl GmbH
Processing of time-resolved data
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MC2000B
optical chopper
Thorlabs
Interruption of laser radiation for PL decay acquisition
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PM100A
power meter
ThorLabs Inc.
Measurement of laser power
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Chameleon Vision II
Ti:Sa laser
Coherent
Excitation source for multiphoton microscopy
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