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Kazuhiko Fukui

Researcher at National Institute of Advanced Industrial Science and Technology

Publications -  84
Citations -  1238

Kazuhiko Fukui is an academic researcher from National Institute of Advanced Industrial Science and Technology. The author has contributed to research in topics: Binding site & Polymer. The author has an hindex of 20, co-authored 81 publications receiving 1037 citations. Previous affiliations of Kazuhiko Fukui include Oak Ridge National Laboratory.

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CD4+ T-cell Immunity in the Peripheral Blood Correlates with Response to Anti-PD-1 Therapy

TL;DR: Low numbers of circulating CD62lowCD4+ T cells positively correlate with responsiveness of NSCLC patients to PD-1 blockade, and a formula, which demonstrated 85.7% sensitivity and 100% specificity, based on the percentages of CD62Llow CD4-cell T cells and CD25+FOXP3+ cells to predict nonresponders is developed.
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A large-scale targeted proteomics assay resource based on an in vitro human proteome

TL;DR: A targeted proteomics platform—in vitro proteome–assisted multiple reaction monitoring (MRM) for proteinabsolute quantification (iMPAQT) by using >18,000 human recombinant proteins, thus enabling protein absolute quantification on a genome-wide scale.
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Redox Sensitivities of Global Cellular Cysteine Residues under Reductive and Oxidative Stress

TL;DR: Quantitative data illustrated both H2O2- and reduction-mediated cellular responses, whereby while redox homeostasis is maintained, highly reactive thiols can potentiate the specific, rapid cellular signaling to counteract acute redox stress.
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Analysis of glycosyl bond cleavage and related isotope effects in collision-induced dissociation quadrupole-time-of-flight mass spectrometry of isomeric trehaloses.

TL;DR: The isotope effect regarding beta, beta-trehalose is larger than those of alpha,alpha- and alpha,beta-Trehalose, indicating that the isotope effects on the beta-glycosyl bond cleavage is largerthan that on the alpha-glyCosyl Bond cleavage.
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Probing Phase-Separation Behavior in Polymer-Blend Microparticles: Effects of Particle Size and Polymer Mobility

TL;DR: In this paper, the phase separation behavior of polymer-blend systems in spherical microparticles generated from microdroplets of dilute polymer solution is investigated using two-dimensional optical diffractiona technique.