期刊论文详细信息
Journal of Pharmacological Sciences
Platinum Nanoparticles Suppress Osteoclastogenesis Through Scavenging of Reactive Oxygen Species Produced in RAW264.7 Cells
Hidehiko Sano1  Yoshiaki Deyama3  Yoshitaka Yoshimura3  Takashi Kikuiri4  Yumi Taniguchi4  Kuniaki Suzuki3  Nobuo Inoue5  Mayumi Nomura5  Ken-ichi Koshiro1  Tomokazu Hasegawa2 
[1] Department of Restorative Dentistry, Hokkaido University Graduate School of Dental Medicine, Japan;Department of Pediatric Dentistry, Faculty of Dentistry, Tokushima University, Japan;Department of Molecular Cell Pharmacology, Hokkaido University Graduate School of Dental Medicine, Japan;Department of Pediatric Dentistry, Hokkaido University Graduate School of Dental Medicine, Japan;Department of Gerodontology, Hokkaido University Graduate School of Dental Medicine, Japan
关键词: platinum nanoparticle;    osteoclast;    reactive oxygen species (ROS);    NOX;    RAW cell;   
DOI  :  10.1254/jphs.11099FP
学科分类:药学
来源: Nihon Yakuri Gakkai Henshuubu / Japanese Pharmacological Society
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【 摘 要 】

References(39)Cited-By(14)Recent research has shown that platinum nanoparticles (nano-Pt) efficiently quench reactive oxygen species (ROS) as a reducing catalyst. ROS have been suggested to regulate receptor activator of NF-κB ligand (RANKL)-stimulated osteoclast differentiation. In the present study, we examined the direct effects of platinum nano-Pt on RANKL-induced osteoclast differentiation of murine pre-osteoclastic RAW 264.7 cells. The effect of the nano-Pt on the number of osteoclasts was measured and their effect on the mRNA expression for osteoclast differentiation was assayed using real-time PCR. Nano-Pt appeared to have a ROS-scavenging activity. Nano-Pt decreased the number of osteoclasts (2+ nuclei) and large osteoclasts (8+ nuclei) in a dose-dependent manner without affecting cell viability. In addition, this agent significantly blocked RANKL-induced mRNA expression of osteoclastic differentiation genes such as c-fms, NFATc1, NFATc2, and DC-STAMP as well as that of osteoclast-specific marker genes including MMP-9, Cath-K, CLC7, ATP6i, CTR, and TRAP. Although nano-Pt attenuated expression of the ROS-producing NOX-family oxidases, Nox1 and Nox4, they up-regulated expression of Nox2, the major Nox enzyme in macrophages. These findings suggest that the nano-Pt inhibit RANKL-stimulated osteoclast differentiation via their ROS scavenging property. The use of nano-Pt as scavengers of ROS that is generated by RANKL may be a novel and innovative therapy for bone diseases.

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