金属製ナノ粒子ががん細胞の選択的攻撃に成功(Tiny metal particles show promise for targeted cancer treatments)

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2025-10-24 ロイヤルメルボルン工科大学(RMIT)

RMIT大学の国際研究チームは、金属化合物モリブデン酸化物からなるナノ粒子「ナノドット」を開発し、がん細胞を選択的に死滅させることに成功した。ナノドットは活性酸素分子(ROS)を放出して細胞成分を損傷し、がん細胞の自己崩壊を誘導するが、正常細胞にはほとんど影響を与えない。培養実験では、24時間で正常細胞の3倍の効率で子宮頸がん細胞を死滅させた。光照射を必要とせずに作用する点も新しい特徴である。がん細胞はもともと酸化ストレス下にあるため、この粒子がストレスをさらに高めることで選択的に死滅が起こる仕組みだという。研究はまだ細胞培養段階にあり、動物実験や臨床応用は今後の課題だが、がん特有の脆弱性を利用した新しい治療戦略として注目されている。成果は『Advanced Functional Materials』誌に掲載予定。

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調整可能な選択的生体触媒としての超薄マルチドープモリブデン酸化物ナノドット Ultrathin Multi-Doped Molybdenum Oxide Nanodots as a Tunable Selective Biocatalyst

Bao Yue Zhang, Farjana Haque, Shwathy Ramesan, Sanjida Afrin, Muhammad Waqas Khan, Haibo Ding, Xin Zhou, Qijie Ma, Jiaru Zhang, Rui Ou, Md Mohiuddin, Enamul Haque …
Advanced Science  Published: 03 October 2025
DOI:https://doi.org/10.1002/advs.202500643

金属製ナノ粒子ががん細胞の選択的攻撃に成功(Tiny metal particles show promise for targeted cancer treatments)

Abstract

The reactive oxygen species (ROS) serve a significant role in cancer therapy due to their oxidative capabilities to modulate cellular functions from homeostasis to apoptosis. While conventional noble metal nanoparticles exhibit superior biocatalytic efficacy in ROS induction, their indistinctive toxicity toward cells and organisms limit their potential for targeted cancer therapy. Here, ultrathin biocompatiable molybdenum oxides (MoOx) nanodots are explored that simultaneously incorporate hydrogen (H+) and ammonia (NH4+) dopants, subsequently their electronic band structures can be modulated by both the relative contents of H+ and NH4+ dopants for efficient generation of ROS. An ultrafast and repeatable dye degredation capability in the absence of light is find in MoOx doped with low H+ and high NH4+, in which hydroxyl radicals (·OH) is identified as the agent stimulating this ROS-driven process through scavenger analysis. More importantly, the selective biocatalytic potential of such a multi-doped MoOx is demonstrated by the comprehensive assay analysis, revealing a three-fold greater cytotoxicity toward HeLa cancer cells within 24 h compared with those of HEK293T healthy control. The finding shines a light on the targeted cancer therapies that spare healthy cells, showing the potential of multi-doped metal oxide as a biocompatiable alternatives to noble metals in selective cytotoxicity against tumor cells.

医療・健康
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