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Biocompatible and Biodegradable Magnesium Oxide Nanoparticles with In Vitro Photostable Near-Infrared Emission: Short-Term Fluorescent Markers

机译:具有体外光稳定的近红外发射的生物相容性和可生物降解的氧化镁纳米粒子:短期荧光标记物

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摘要

Imaging of biological matter by using fluorescent nanoparticles (NPs) is becoming a widespread method for in vitro imaging. However, currently there is no fluorescent NP that satisfies all necessary criteria for short-term in vivo imaging: biocompatibility, biodegradability, photostability, suitable wavelengths of absorbance and fluorescence that differ from tissue auto-fluorescence, and near infrared (NIR) emission. In this paper, we report on the photoluminescent properties of magnesium oxide (MgO) NPs that meet all these criteria. The optical defects, attributed to vanadium and chromium ion substitutional defects, emitting in the NIR, are observed at room temperature in NPs of commercial and in-house ball-milled MgO nanoparticles, respectively. As such, the NPs have been successfully integrated into cultured cells and photostable bright in vitro emission from NPs was recorded and analyzed. We expect that numerous biotechnological and medical applications will emerge as this nanomaterial satisfies all criteria for short-term in vivo imaging.
机译:使用荧光纳米颗粒(NPS)对生物物质的成像成为体外成像的广泛方法。然而,目前没有荧光NP,可满足在体内成像中的短期内的所有必要标准:生物相容性,生物降解性,光稳定性,具有与组织自荧光和近红外(NIR)发射不同的吸光度和荧光的合适波长。在本文中,我们报告了满足所有这些标准的氧化镁(MgO)NP的光致发光性能。在NIR中发出的钒和铬离子替代缺陷的光学缺陷分别在商业和内部球磨MgO纳米粒子的室温下观察到NIR中的荧光离子替代缺陷。这样,NPS已成功集成到培养的细胞中,并记录并分析来自NPS的光稳定发射的体外发射。我们预计将出现许多生物技术和医学应用,因为该纳米材料满足了体内成像的短期内的所有标准。

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