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Led light engine

Manufactured by Leica

The LED light engine is a core component of Leica's lab equipment. It provides a stable and adjustable light source for various applications. The LED light engine generates illumination using a designed array of light-emitting diodes, ensuring consistent and reliable performance.

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2 protocols using led light engine

1

Live-Cell Imaging of Cellular Signaling

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HEK293T cells and Neuro2a cells were imaged on a Leica DMi8 Live Cell Imaging System, equipped with an OKOLab stage-top live cell incubation system, LASX software, Leica HCX PL APO 63×/1.40 to 0.60 numerical objective oil objective, Lumencor LED light engine, CTRadvanced+ power supply, and a Leica DFC900 GT camera. The mCherry channel (553 nm, 50% power, 200 ms exposure) was used for pre, during, and post-light visualization. GFP channel (480 nm, 50% power, 50 ms exposure) was used for Cry2 activation. Images were captured in 30 sec intervals.
Live-cell confocal images of HEK293T cells were collected on Zeiss LSM 700 laser scanning microscope equipped with a stage-top incubator and ZEN Black 2012 software. Images were captured on the mCherry channel (553 nm) and GFP channel (480 nm) for blue light illumination in 30 sec intervals. For ERK-KTR cell experiments, ERK-KTR was visualized on the GFP channel (5% power), and the nuclear stain was visualized on the DAPI channel (395 nm, 5% power). All images were analyzed using Fiji Image J software.
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2

Confocal and Widefield Microscopy of Cells

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Confocal Microscopy: Confocal images of fixed cells were collected with a Zeiss LSM 700 laser scanning microscope using ZEN Black 2012 software. Fluorescence images were colorized and overlaid using FIJI software.
Widefield Microscopy: A Leica DMi8 Live Cell Imaging System, equipped with an OKOLab stagetop live cell incubation system, LASX software, Leica HCX PL APO 63x/1.40-0.60na oil objective, Lumencor LED light engine, CTRadvanced+ power supply, and a Leica DFC900 GT camera, was used to acquire images. Exposure times were set at 200 ms (mCherry, 550 nm) and 50 ms (GFP, 480 nm), with LED light sources at 50% power, and images acquired every 30 seconds over specified time course.
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