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用于生物医学应用的激光合成氮化钛纳米颗粒:安全性、生物分布和药代动力学评估。

Laser-synthesized TiN nanoparticles for biomedical applications: Evaluation of safety, biodistribution and pharmacokinetics.

作者信息

Zelepukin Ivan V, Popov Anton A, Shipunova Victoria O, Tikhonowski Gleb V, Mirkasymov Aziz B, Popova-Kuznetsova Elena A, Klimentov Sergey M, Kabashin Andrei V, Deyev Sergey M

机构信息

MEPhI, Institute of Engineering Physics for Biomedicine (PhysBio), Moscow, Russia; Shemyakin-Ovchinnikov Institute of Bioorganic Chemistry of Russian Academy of Sciences, Moscow, Russia; Moscow Institute of Physics and Technology, Dolgoprudny, Russia.

MEPhI, Institute of Engineering Physics for Biomedicine (PhysBio), Moscow, Russia.

出版信息

Mater Sci Eng C Mater Biol Appl. 2021 Jan;120:111717. doi: 10.1016/j.msec.2020.111717. Epub 2020 Nov 27.

Abstract

Having plasmonic absorption within the biological transparency window, titanium nitride (TiN) nanoparticles (NPs) can potentially outperform gold counterparts in phototheranostic applications, but characteristics of available TiN NPs are still far from required parameters. Recently emerged laser-ablative synthesis opens up opportunities to match these parameters as it makes possible the production of ultrapure low size-dispersed spherical TiN NPs, capable of generating a strong phototherapy effect under 750-800 nm excitation. This study presents the first assessment of toxicity, biodistribution and pharmacokinetics of laser-synthesized TiN NPs. Tests in vitro using 8 cell lines from different tissues evidenced safety of both as-synthesized and PEG-coated NPs (TiN-PEG NPs). After systemic administration in mice, they mainly accumulated in liver and spleen, but did not cause any sign of toxicity or organ damage up to concentration of 6 mg kg, which was confirmed by the invariability of blood biochemical parameters, weight and hemotoxicity examination. The NPs demonstrated efficient passive accumulation in EMT6/P mammary tumor, while concentration of TiN-PEG NPs was 2.2-fold higher due to "stealth" effect yielding 7-times longer circulation in blood. The obtained results evidence high safety of laser-synthesized TiN NPs for biological systems, which promises a major advancement of phototheranostic modalities on their basis.

摘要

氮化钛(TiN)纳米颗粒(NPs)在生物透明窗口内具有等离子体吸收特性,在光热诊疗应用中可能优于金纳米颗粒,但现有TiN NPs的特性仍远未达到所需参数。最近出现的激光烧蚀合成技术为匹配这些参数提供了机会,因为它能够生产超纯、低尺寸分散的球形TiN NPs,在750 - 800 nm激发下能够产生强烈的光疗效果。本研究首次评估了激光合成TiN NPs的毒性、生物分布和药代动力学。使用来自不同组织的8种细胞系进行的体外测试证明了合成态和聚乙二醇包覆的NPs(TiN - PEG NPs)的安全性。在小鼠体内进行全身给药后,它们主要积聚在肝脏和脾脏中,但在浓度高达6 mg/kg时未引起任何毒性迹象或器官损伤,这通过血液生化参数、体重和血液毒性检查的不变性得到证实。这些NPs在EMT6/P乳腺肿瘤中表现出有效的被动积聚,而由于“隐身”效应,TiN - PEG NPs的浓度高2.2倍,在血液中的循环时间延长7倍。所获得的结果证明了激光合成TiN NPs对生物系统具有高度安全性,这有望在此基础上推动光热诊疗模式取得重大进展。

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