Effective Drug Delivery System for Duchenne Muscular Dystrophy Using Hybrid Liposomes Including Gentamicin along with Reduced Toxicity
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概要
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It is known that gentamicin (GM) could be a possible treatment for Duchenne Muscular Dystrophy (DMD). However, GM therapy has been hindered by several problems such as severe side effects of GM. In order to resolve these problems, we developed the drug delivery system (DDS) of GM using hybrid liposomes (HL) composed of L-α-dimyristoylphosphatidylcholine (DMPC) and polyoxyethylene(23) lauryl ether (C12(EO)23). The hydrodynamic diameters of HL including GM (GM-HL) were 60—90 nm with a narrow range of the size distribution and the sizes were kept almost constant for over 4 weeks, suggesting that GM-HL could avoid the reticuloendothelial system in vivo. Furthermore, GM-HL accumulated more to the skeletal muscle cells of X chromosome-linked muscular distrophy (mdx) mice as compared to those of normal mice. Significantly, we succeeded in increasing dystrophin positive fibers in skeletal muscle cells of mdx mice using GM-HL along with the reduction of ototoxicity. It is suggested that GM should be carried more efficiently into the muscular cells of mdx mice by HL. These results indicate that HL could be an effective carrier in the DDS of GM therapy for DMD.
著者
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GOTO Koichi
Division of Thoracic Oncology, National Cancer Center Hospital East
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Goto Koichi
Division Of Cardiology Sakurabashi Watanabe Hospital
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UEOKA Ryuichi
Division of Applied Chemistry, Graduate School of Kumamoto Institute of Technology
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TANOUE Osamu
Division of Applied Chemistry, Graduate School of Kumamoto Institute of Technology
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Matsushita Taku
Division Of Applied Life Science Graduate School Of Engineering Sojo University
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KIMURA Shigemi
Department of Child Development, Kumamoto University Graduate School
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Kimura Shigemi
Department Of Child Development Kumamoto University Graduate School
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MASUDA Masako
Department of Electrical and Electronic Engineering, Faculty of Engineering, Shizuoka University
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MATSUMOTO Yoko
Division of Applied Life Science, Graduate School of Engineering, Sojo University
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ITO Kaori
Department of Biotechnology, Tokyo University of Agriculture and Technology
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Tanoue Osamu
Sojo University
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Masuda Masako
Department Of Electrical And Electronic Engineering Faculty Of Engineering Shizuoka University
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Ito Kaori
Department Of Biotechnology Tokyo University Of Agriculture And Technology
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Yukihara Mamiko
Division of Applied Life Science, Graduate School of Engineering, Sojo University
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Goto Koichi
Division of Applied Life Science, Graduate School of Engineering, Sojo University
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Tanoue Osamu
Division of Applied Life Science, Graduate School of Engineering, Sojo University
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