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Yusei Miyamoto

Explore the profile of Yusei Miyamoto including associated specialties, affiliations and a list of published articles. Areas
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Articles 37
Citations 776
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Recent Articles
1.
Jawaid P, Rehman M, Hassan M, Zhao Q, Li P, Miyamoto Y, et al.
Ultrason Sonochem . 2016 Mar; 31:206-15. PMID: 26964942
In this study, we report on the potential use of platinum nanoparticles (Pt-NPs), a superoxide dismutase (SOD)/catalase mimetic antioxidant, in combination with 1MHz ultrasound (US) at an intensity of 0.4...
2.
Kim J, Kang Y, Lee J, Choi D, Cho Y, Shin J, et al.
Mol Cell Endocrinol . 2015 May; 412:216-25. PMID: 25976661
Dehydroabietic acid (DAA) is a naturally occurring diterpene resin acid of confers, such as pinus species (P. densiflora, P. sylvestris) and grand fir (Abies grandis), and it induces various biological...
3.
Jawaid P, Rehman M, Yoshihisa Y, Li P, Zhao Q, Hassan M, et al.
Apoptosis . 2014 Apr; 19(6):1006-16. PMID: 24687228
Since polyacrylic acid capped platinum nano-particles (nano-Pts) are known to have a unique ability to quench superoxide (O2(-)) and hydrogen peroxide (H2O2), the anti-oxidant activity of nano-Pts against apoptosis induced...
4.
Rehman M, Yoshihisa Y, Miyamoto Y, Shimizu T
Inflamm Res . 2012 Jul; 61(11):1177-85. PMID: 22752115
Objective: Platinum nanoparticles (nano-Pt) have been reported to possess anti-oxidant and anti-tumor activities. However, the biological activity and mechanism of action of nano-Pt in inflammation are still unknown. The present...
5.
Park J, Kanayama A, Yamamoto K, Miyamoto Y
Biochem Biophys Res Commun . 2012 May; 422(2):291-7. PMID: 22580278
NF-κB is activated by several cellular stresses. Of these, the TNFα-induced activation pathway has been examined in detail. It was recently reported that receptor-interacting protein 1 (RIP1) is involved in...
6.
Takamiya M, Miyamoto Y, Yamashita T, Deguchi K, Ohta Y, Ikeda Y, et al.
J Neurosci Res . 2011 Mar; 89(7):1125-33. PMID: 21433052
Ischemic stroke is a major, urgent neurologic disorder in which reactive oxygen species (ROS) are deeply involved in the detrimental effects. Platinum nanoparticle (nPt) species are a novel and strong...
7.
Hoshika S, Nagano F, Tanaka T, Wada T, Asakura K, Koshiro K, et al.
J Adhes Dent . 2011 Jan; 13(5):411-6. PMID: 21246069
Purpose: To investigate the effect of Colloidal Platinum Nanoparticles (CPN) on the bond strength between dentin and 4-META/MMA-TBB resin using different concentrations of CPN. Materials And Methods: Twenty-five extracted human...
8.
Hoshika S, Nagano F, Tanaka T, Ikeda T, Wada T, Asakura K, et al.
Dent Mater J . 2010 Nov; 29(6):682-9. PMID: 21099157
The purpose of this study was to investigate the effect of application time of colloidal platinum nanoparticles (CPN) on bond strength. Dentin surfaces were subjected to one of the following...
9.
Yoshihisa Y, Zhao Q, Hassan M, Wei Z, Furuichi M, Miyamoto Y, et al.
Free Radic Res . 2010 Nov; 45(3):326-35. PMID: 21047173
Platinum nanoparticles (Pt-NPs) are known to possess anti-tumouric activity and the ability to scavenge superoxides and peroxides indicating that they can act as superoxide dismutase (SOD)/catalase mimetics. These potentials seem...
10.
Sakaue Y, Kim J, Miyamoto Y
Int J Nanomedicine . 2010 Oct; 5:687-95. PMID: 20957220
Platinum nanoparticle (Pt-np) species are superoxide dismutase/catalase mimetics and also have an activity similar to that of mitochondrial electron transport complex I. To examine if this complex I-like activity functions...