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Self-Assembly Behavior of Emissive Urea Benzene Derivatives Enables Heat-Induced Accumulation in Tumor Tissue.
https://repo.qst.go.jp/records/48221
https://repo.qst.go.jp/records/48221664b5651-7983-4c0a-9a97-59be91eab06f
Item type | 学術雑誌論文 / Journal Article(1) | |||||
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公開日 | 2017-07-27 | |||||
タイトル | ||||||
タイトル | Self-Assembly Behavior of Emissive Urea Benzene Derivatives Enables Heat-Induced Accumulation in Tumor Tissue. | |||||
言語 | ||||||
言語 | eng | |||||
資源タイプ | ||||||
資源タイプ識別子 | http://purl.org/coar/resource_type/c_6501 | |||||
資源タイプ | journal article | |||||
アクセス権 | ||||||
アクセス権 | metadata only access | |||||
アクセス権URI | http://purl.org/coar/access_right/c_14cb | |||||
著者 |
Araki, Takeru
× Araki, Takeru× Murayama, Shuhei× Usui, Kazuteru× Shimada, Takashi× Aoki, Ichio× Karasawa, Satoru× 村山 周平× 青木 伊知男 |
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抄録 | ||||||
内容記述タイプ | Abstract | |||||
内容記述 | In this study we describe the construction of a system composed of thermally responsive molecules that can be induced to accumulate in tumor tissues by heating. EgX molecules consisting of an urea-benzene framework and oligoethylene glycol (OEG) functional groups with an emissive aminoquinoline formed nanoparticles (NPs) ∼10 nm in size at 23 °C with a fluorescence quantum yield of 7-10%. At higher temperatures, additional self-assembly occurred as a result of OEG dehydration, and the NPs grew to over 1000 nm in size; this was accompanied by low critical solution temperature behavior. EgXs accumulated in tumor tissues of mice at a body temperature of around 33-35 °C, an effect that was accelerated by external heating around the tumor to approximately 40 °C as a result of increased particle size and enhanced retention in tissue. These EgX NPs can serve as a tool for in vivo monitoring of tumor progression and response to treatment. | |||||
書誌情報 |
Nano letters 巻 17, 号 4, p. 2397-2403, 発行日 2017-03 |
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ISSN | ||||||
収録物識別子タイプ | ISSN | |||||
収録物識別子 | 1530-6984 | |||||
PubMed番号 | ||||||
識別子タイプ | PMID | |||||
関連識別子 | 28264561 | |||||
DOI | ||||||
識別子タイプ | DOI | |||||
関連識別子 | 10.1021/acs.nanolett.6b05371 |