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Masahiko Tsujimoto

Explore the profile of Masahiko Tsujimoto including associated specialties, affiliations and a list of published articles. Areas
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Articles 139
Citations 1661
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Recent Articles
1.
Sato N, Tsujimoto M, Nakatsuji M, Tsuji H, Sugama Y, Shimazu K, et al.
BMC Biol . 2024 Aug; 22(1):181. PMID: 39183273
Background: Pathologists commonly employ the Ki67 immunohistochemistry labelling index (LI) when deciding appropriate therapeutic strategies for patients with breast cancer. However, despite several attempts at standardizing the Ki67 LI, inter-observer...
2.
Kosasang S, Ma N, Impeng S, Bureekaew S, Namiki Y, Tsujimoto M, et al.
J Am Chem Soc . 2024 Jun; 146(26):17793-17800. PMID: 38913361
Crystal-to-glass transformation is a powerful approach to modulating the chemical and physical properties of crystals. Here we demonstrate that the glass transformation of cobalt hexacyanoferrate crystals, one of the Prussian...
3.
Yao M, Otake K, Koganezawa T, Ogasawara M, Asakawa H, Tsujimoto M, et al.
Proc Natl Acad Sci U S A . 2023 Sep; 120(40):e2305125120. PMID: 37748051
Conductive metal-organic frameworks (MOFs) manifest great potential in modern electrical devices due to their porous nature and the ability to conduct charges in a regular network. MOFs applied in electrical...
4.
Zhang S, Lombardo L, Tsujimoto M, Fan Z, Berdichevsky E, Wei Y, et al.
Angew Chem Int Ed Engl . 2023 Sep; 62(47):e202312095. PMID: 37743667
Crystalline triazine-based covalent organic frameworks (COFs) are aromatic nitrogen-rich porous materials. COFs typically show high thermal/chemical stability, and are promising for energy applications, but often require harsh synthesis conditions and...
5.
Yao M, Otake K, Zheng J, Tsujimoto M, Gu Y, Zheng L, et al.
Angew Chem Int Ed Engl . 2023 May; 62(35):e202303903. PMID: 37211927
A one-stone, two-bird method to integrate the soft porosity and electrical properties of distinct metal-organic frameworks (MOFs) into a single material involves the design of conductive-on-insulating MOF (cMOF-on-iMOF) heterostructures that...
6.
Deng W, Yao M, Zhang M, Tsujimoto M, Otake K, Wang B, et al.
Natl Sci Rev . 2022 Oct; 9(10):nwac143. PMID: 36196111
To create an artificial structure to remarkably surpass the sensitivity, selectivity and speed of the olfaction system of animals is still a daunting challenge. Herein, we propose a core-sheath pillar...
7.
Volokhova M, Shugai A, Tsujimoto M, Kubo A, Telliskivi S, Nigul M, et al.
Materials (Basel) . 2022 Mar; 15(6). PMID: 35329677
Nanoparticles with SiO2 coating were synthesized to have a cubic iron core. These were found to have saturation magnetization very close to the highest possible value of any iron-containing nanoparticles...
8.
Osako T, Matsuura M, Yotsumoto D, Takayama S, Kaneko K, Takahashi M, et al.
Cancer . 2022 Feb; 128(10):1913-1920. PMID: 35226357
Background: The one-step nucleic acid amplification (OSNA) assay can quantify the cytokeratin 19 messenger RNA copy number as a proxy for sentinel lymph node (SN) metastasis in breast cancer. A...
9.
Migita S, Kitano D, Li Y, Koyama Y, Shimodai-Yamada S, Onishi A, et al.
Sci Rep . 2021 Mar; 11(1):6281. PMID: 33737695
Pathological changes after third-generation drug-eluting stent implantation remain unclear. We compared the tissue responses of coronary arteries after the implantation of third-generation abluminal biodegradable-polymer everolimus-eluting stent (3rd EES) and second-generation...
10.
Yao M, Zheng J, Wu A, Xu G, Nagarkar S, Zhang G, et al.
Angew Chem Int Ed Engl . 2019 Oct; 59(1):172-176. PMID: 31595640
Single-ligand-based electronically conductive porous coordination polymers/metal-organic frameworks (EC-PCPs/MOFs) fail to meet the requirements of numerous electronic applications owing to their limited tunability in terms of both conductivity and topology. In...