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Dive into the research topics where Shogo Yamazoe is active.

Publication


Featured researches published by Shogo Yamazoe.


Nature Communications | 2018

Gold-nanofève surface-enhanced Raman spectroscopy visualizes hypotaurine as a robust anti-oxidant consumed in cancer survival

Megumi Shiota; Masayuki Naya; Takehiro Yamamoto; Takako Hishiki; Takeharu Tani; H. Takahashi; Akiko Kubo; Daisuke Koike; Mai Itoh; Mitsuyo Ohmura; Yasuaki Kabe; Yuki Sugiura; Nobuyoshi Hiraoka; Takayuki Morikawa; Keiyo Takubo; Kentaro Suina; Hideaki Nagashima; Oltea Sampetrean; Osamu Nagano; Hideyuki Saya; Shogo Yamazoe; Hiroyuki Watanabe; Makoto Suematsu

Gold deposition with diagonal angle towards boehmite-based nanostructure creates random arrays of horse-bean-shaped nanostructures named gold-nanofève (GNF). GNF generates many electromagnetic hotspots as surface-enhanced Raman spectroscopy (SERS) excitation sources, and enables large-area visualization of molecular vibration fingerprints of metabolites in human cancer xenografts in livers of immunodeficient mice with sufficient sensitivity and uniformity. Differential screening of GNF-SERS signals in tumours and those in parenchyma demarcated tumour boundaries in liver tissues. Furthermore, GNF-SERS combined with quantum chemical calculation identified cysteine-derived glutathione and hypotaurine (HT) as tumour-dominant and parenchyma-dominant metabolites, respectively. CD44 knockdown in cancer diminished glutathione, but not HT in tumours. Mechanisms whereby tumours sustained HT under CD44-knockdown conditions include upregulation of PHGDH, PSAT1 and PSPH that drove glycolysis-dependent activation of serine/glycine-cleavage systems to provide one-methyl group for HT synthesis. HT was rapidly converted into taurine in cancer cells, suggesting that HT is a robust anti-oxidant for their survival under glutathione-suppressed conditions.Surface-enhanced Raman spectroscopy (SERS) visualizes fingerprints of intermolecular vibrations of many metabolites. Here the authors report a SERS imaging technique that enables the visualization of metabolites distribution and automated extraction of tumour boundaries in frozen tissues.


ACS Nano | 2014

Large-Area Surface-Enhanced Raman Spectroscopy Imaging of Brain Ischemia by Gold Nanoparticles Grown on Random Nanoarrays of Transparent Boehmite

Shogo Yamazoe; Masayuki Naya; Megumi Shiota; Takayuki Morikawa; Akiko Kubo; Takeharu Tani; Takako Hishiki; Tadashi Horiuchi; Makoto Suematsu; Mayumi Kajimura


Archive | 2009

Mode-locked solid-state laser apparatus

Tadashi Kasamatsu; Shogo Yamazoe; Makio Usui


Archive | 2008

NEGATIVE DISPERSION MIRROR AND MODE-LOCKED SOLID-STATE LASER APPARATUS INCLUDING THE MIRROR

Makio Usui; Tadashi Kasamatsu; Shogo Yamazoe


Archive | 2013

OPTICAL ELECTRICAL FIELD ENHANCING DEVICE AND MEASURING APPARATUS EQUIPPED WITH THE DEVICE

Shogo Yamazoe; Masayuki Naya; Shinya Hakuta


Archive | 2013

Raman spectrometry method and Raman spectrometry apparatus

Masayuki Naya; Shogo Yamazoe


Archive | 2012

OPTICAL-ELECTRIC-FIELD ENHANCEMENT DEVICE, AND MEASUREMENT DEVICE PROVIDED WITH SAME

Shogo Yamazoe; Masayuki Naya; Shinya Hakuta


Archive | 2012

Raman scattering measurement method and device

Masayuki Naya; 納谷 昌之; Shogo Yamazoe; 昇吾 山添


Archive | 2015

Mass spectrometry apparatus

Shogo Yamazoe; Masayuki Naya


Archive | 2013

METHOD FOR PRODUCING OPTICAL ELECTRICAL FIELD ENHANCING DEVICE

Shogo Yamazoe; Masayuki Naya

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Hideki Yasuda

Osaka Prefecture University

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