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Main Authors: Osugi, Tomohiro, Shiraishi, Akira, Sasakura, Yasunori, Sugahara, Kohtaro, Yamagaki, Tohru, Yamamoto, Tatsuya, Satake, Honoo
Format: Artículo científico
Language:en
Published: STAR protocols 2026
Online Access:https://pubmed.ncbi.nlm.nih.gov/42060459/
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author Osugi, Tomohiro
Shiraishi, Akira
Sasakura, Yasunori
Sugahara, Kohtaro
Yamagaki, Tohru
Yamamoto, Tatsuya
Satake, Honoo
author_facet Osugi, Tomohiro
Shiraishi, Akira
Sasakura, Yasunori
Sugahara, Kohtaro
Yamagaki, Tohru
Yamamoto, Tatsuya
Satake, Honoo
Osugi, Tomohiro
Shiraishi, Akira
Sasakura, Yasunori
Sugahara, Kohtaro
Yamagaki, Tohru
Yamamoto, Tatsuya
Satake, Honoo
collection PubMed - marine biology
contents Protocol for reconstructing 2D and 3D peptide atlases of the Ciona cerebral ganglion at single-cell resolution. Osugi, Tomohiro Shiraishi, Akira Sasakura, Yasunori Sugahara, Kohtaro Yamagaki, Tohru Yamamoto, Tatsuya Satake, Honoo The distribution of biomolecules is essential information for understanding biological systems. Here, we present a protocol for 2D and 3D reconstruction of tissue images at the single-cell level by integrating microscopy and mass spectrometry imaging (MSI) data through linear interpolation. We describe steps for sample preparation, MSI, and construction of 2D and 3D single-cell peptide atlases of the cerebral ganglion of Ciona robusta. This approach is also applicable to other animals in which target cells are labeled with endogenous fluorescent proteins. For complete details on the use and execution of this protocol, please refer to Osugi et al..
format Artículo científico
id pubmed_42060459
institution PubMed
language en
publishDate 2026
publisher STAR protocols
record_format pubmed
spellingShingle Protocol for reconstructing 2D and 3D peptide atlases of the Ciona cerebral ganglion at single-cell resolution.
Osugi, Tomohiro
Shiraishi, Akira
Sasakura, Yasunori
Sugahara, Kohtaro
Yamagaki, Tohru
Yamamoto, Tatsuya
Satake, Honoo
Protocol for reconstructing 2D and 3D peptide atlases of the Ciona cerebral ganglion at single-cell resolution. Osugi, Tomohiro Shiraishi, Akira Sasakura, Yasunori Sugahara, Kohtaro Yamagaki, Tohru Yamamoto, Tatsuya Satake, Honoo The distribution of biomolecules is essential information for understanding biological systems. Here, we present a protocol for 2D and 3D reconstruction of tissue images at the single-cell level by integrating microscopy and mass spectrometry imaging (MSI) data through linear interpolation. We describe steps for sample preparation, MSI, and construction of 2D and 3D single-cell peptide atlases of the cerebral ganglion of Ciona robusta. This approach is also applicable to other animals in which target cells are labeled with endogenous fluorescent proteins. For complete details on the use and execution of this protocol, please refer to Osugi et al..
title Protocol for reconstructing 2D and 3D peptide atlases of the Ciona cerebral ganglion at single-cell resolution.
url https://pubmed.ncbi.nlm.nih.gov/42060459/