Kazuya Matsuo
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Explore the profile of Kazuya Matsuo including associated specialties, affiliations and a list of published articles.
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63
Citations
392
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Recent Articles
1.
Kobata K, Matsubara K, Nishikawa R, Narita Y, Matsuo K, Waku T, et al.
Bioorg Med Chem Lett
. 2025 Feb;
120:130138.
PMID: 39986632
Telomerase, a ribonucleoprotein, is a reverse transcriptase that uses telomerase RNA component (hTR) as a template to elongate telomeric DNA at the ends of chromosomes. This enzyme plays a critical...
2.
Goto M, Tsukamoto M, Matsuo K, Yokoyama T
BMC Anesthesiol
. 2024 Nov;
24(1):419.
PMID: 39558251
Introduction: In oral maxillofacial surgery, the nasal tracheal tube is mostly used to provide a better surgical field for oral, head and neck operations. Postoperative sore throat and hoarseness are...
3.
Yabuki Y, Matsuo K, Komiya G, Kudo K, Hori K, Ikenoshita S, et al.
J Biol Chem
. 2024 Nov;
300(12):107971.
PMID: 39510192
Tau aggregation is a defining feature of neurodegenerative tauopathies, including Alzheimer's disease, corticobasal degeneration, and frontotemporal dementia. This aggregation involves the liquid-liquid phase separation (LLPS) of Tau, followed by its...
4.
Matsuo K, Aihara H, Suehiro E, Shiomi N, Yatsushige H, Hirota S, et al.
Neurosurgery
. 2024 Oct;
PMID: 39446739
Background And Objectives: The impact of preinjury anticoagulation on coagulation parameters over time after traumatic brain injury (TBI) has remained unclear. Based on the hypothesis that preinjury anticoagulation significantly influences...
5.
Matsuo K, Asamitsu S, Maeda K, Suzuki H, Kawakubo K, Komiya G, et al.
Cell
. 2024 Oct;
187(24):6835-6848.e20.
PMID: 39426376
Synucleinopathies, including Parkinson's disease, dementia with Lewy bodies, and multiple system atrophy, are triggered by α-synuclein aggregation, triggering progressive neurodegeneration. However, the intracellular α-synuclein aggregation mechanism remains unclear. Herein, we...
6.
Matsuo K, Kikukawa T, Waku T, Kobori A, Tamaoki N
RSC Med Chem
. 2024 Sep;
PMID: 39290378
Reversibly photoswitchable chemical tools have aided in the development of novel approaches in the biomedical field. The visible region of light should be ideal for the biological application of this...
7.
Matsuo K, Ogawa H, Yamaoka S, Waku T, Kobori A
Bioorg Med Chem Lett
. 2024 Jul;
111:129892.
PMID: 39029538
A set of arylazopyrazole-based inhibitors targeting the mitotic motor protein CENP-E was discovered through the chemical platform using the quantitative cyclization of 1,3-diketone intermediate with various hydrazines under mild conditions....
8.
Ratiometric sandwich-type assays for RNAs with a point mutation using benzo[a]pyrene-modified probes
Watari Y, Nakatani K, Kobata K, Matsuo K, Waku T, Kobori A
Chem Commun (Camb)
. 2024 Jul;
60(59):7610-7613.
PMID: 38957007
Benzo[a]pyrene-modified oligonucleotides were developed for the detection of RNAs with a point mutation. The probes produced two distinct fluorescence signals in response to single nucleotide differences in the RNA sequences,...
9.
Matsuo K, Uehara R, Kikukawa T, Waku T, Kobori A, Tamaoki N
Chem Commun (Camb)
. 2024 Jun;
60(52):6611-6614.
PMID: 38845591
We developed a centromere-associated protein E (CENP-E) inhibitor employing to photoisomerization with 405 nm visible light illumination and fast thermal relaxation. This photoswitching characteristic of the inhibitor enabled selective blockage...
10.
Matsuo K, Yamaoka S, Waku T, Kobori A
Org Biomol Chem
. 2024 May;
22(23):4651-4655.
PMID: 38787760
An arylazopyrazole-based covalent inhibitor targeting the mitotic motor protein of centromere-associated protein E (CENP-E) was developed. Using this photoswitchable inhibitor, a photoswitchable CENP-E was chemically constructed in cells, which enabled...