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Nanozoomer slide scanner system

Manufactured by Hamamatsu Photonics
Sourced in France

The NanoZoomer slide scanner system is a high-performance digital slide scanning solution designed for a wide range of applications. The system efficiently digitizes microscope slides, capturing high-resolution images with exceptional image quality. The NanoZoomer system is a versatile tool for various fields, including pathology, research, and education.

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3 protocols using nanozoomer slide scanner system

1

Apoptotic Cell Quantification in Tissue Sections

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Immunohistochemistry analyses were performed as described previously 17 (link). For apoptotic cells analysis, paraffin-embedded tissue sections were stained with anti-Perilipin (Abcam, Cat. No. ab-61682) and cleaved caspase-3 (Cell Signaling Technology, Cat No. 9664) antibodies. Images were captured using a NanoZoomer slide scanner system with NanoZoomer Digital Pathology software (Hamamatsu) or confocal fluorescence microscopy. Microscopic images were analyzed using ImageJ software.
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2

Quantification of Lung Metastases

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Lung metastasis analyses were performed using 3−μm−thin sections from formalin−fixed paraffin−embedded tissue blocks. Counterstaining was performed using Flex Hematoxylin (Dako−Agilent, Les Ulis, France) followed by washing the slides under tap water for 5 min. Finally, slides were mounted with a coverslip after dehydration. The NanoZoomer slide scanner system (Hamamatsu Photonics, Massy, France) was used to digitalize glass slides at the ×40 objective. The number of metastases was counted and adjusted to the total surface of each lung slide.
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3

Apoptotic Cell Quantification in Tissue Sections

Check if the same lab product or an alternative is used in the 5 most similar protocols
Immunohistochemistry analyses were performed as described previously 17 (link). For apoptotic cells analysis, paraffin-embedded tissue sections were stained with anti-Perilipin (Abcam, Cat. No. ab-61682) and cleaved caspase-3 (Cell Signaling Technology, Cat No. 9664) antibodies. Images were captured using a NanoZoomer slide scanner system with NanoZoomer Digital Pathology software (Hamamatsu) or confocal fluorescence microscopy. Microscopic images were analyzed using ImageJ software.
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