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  1. 原著論文

Investigating size and surface modification to optimise the delivery of nanodiamonds to brain glial cells

https://repo.qst.go.jp/records/2002859
https://repo.qst.go.jp/records/2002859
4e2ba72b-d2d2-4c43-a45e-cd1a02967bea
アイテムタイプ 学術雑誌論文 / Journal Article(1)
公開日 2026-02-26
タイトル
タイトル Investigating size and surface modification to optimise the delivery of nanodiamonds to brain glial cells
言語 en
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
著者 Takahashi Manami

× Takahashi Manami

Takahashi Manami

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Takada Ayaka

× Takada Ayaka

Takada Ayaka

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Suzuki Chihiro

× Suzuki Chihiro

Suzuki Chihiro

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Kaminaga Kiichi

× Kaminaga Kiichi

Kaminaga Kiichi

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Yoshioka Masaki

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Yoshioka Masaki

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Handa Mariko

× Handa Mariko

Handa Mariko

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Jeffrey Kershaw

× Jeffrey Kershaw

Jeffrey Kershaw

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Abe Hiroshi

× Abe Hiroshi

Abe Hiroshi

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Ohshima Takeshi

× Ohshima Takeshi

Ohshima Takeshi

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Igarashi Ryuji

× Igarashi Ryuji

Igarashi Ryuji

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Takuwa Hiroyuki

× Takuwa Hiroyuki

Takuwa Hiroyuki

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内容記述タイプ Abstract
内容記述 Nanodiamonds (NDs) with nitrogen-vacancy (NV) defects have garnered attention as promising nano-quantum sensors due to their high photostability, low biotoxicity, and ability to measure intracellular parameters such as temperature, magnetic fields, and electric fields. While NDs have been extensively studied in in vitro systems, their application in vivo remains underdeveloped. Efficient delivery of NDs to specific cells within biological tissues remains a critical challenge for advancing their applications in the life sciences. In this study, we investigated the intracellular uptake of NDs by glial cells (microglia and astrocytes) in the brain. Twelve types of NDs, differing in size (50 nm, 150 nm, 250 nm, and 350 nm) and surface modification (HPG, COOH, and HPG-COOH), were locally injected into the brain parenchyma of mice. The intracellular uptake of NDs was assessed using immunostaining and confocal microscopy. Microglia preferentially internalized HPG-modified NDs. HPG-modified NDs exhibited high diffusivity, facilitating interactions with surrounding microglia and enhancing uptake efficiency. In contrast, COOH-modified NDs were more efficiently internalized by astrocytes than HPG-modified NDs. This suggests that COOH-modified NDs tend to remain at the local injection site, where inflammation induced by tissue damage may have enhanced the phagocytic activity of astrocytes. These findings demonstrate that the uptake characteristics of NDs differ by cell type. HPG-modified NDs, are optimal for microglia, while COOH-modified NDs, are more suitable for astrocytes. It is anticipated that the results of this study will act as an important guide for the use of NDs as nano-quantum sensors in living brain tissues
書誌情報 Discover Nano

巻 20, 号 1, p. 143, 発行日 2025-08
PubMed番号
識別子タイプ PMID
関連識別子 40833651
DOI
識別子タイプ DOI
関連識別子 10.1186/s11671-025-04335-2
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