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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Long-term real-time tracking live stem cells/cancer cells in vitro/in vivo through highly biocompatible photoluminescent poly(citrate-siloxane) nanoparticles
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Long-term real-time tracking live stem cells/cancer cells in vitro/in vivo through highly biocompatible photoluminescent poly(citrate-siloxane) nanoparticles

机译:通过高度生物相容性的光致发光聚(柠檬酸硅氧烷)纳米颗粒在体外/癌细胞中长期实时跟踪活干细胞/癌细胞

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摘要

Long-term live cell tracking is desirable and necessary to understand the dynamics and complexity of biological interactions in stem cells and cancer cells. Conventional live cells fluorescence trackers are generally non-degradable and are showing increased toxicity concerns during the long-term application. Previously we developed biodegradable fluorescent poly(citrate)-based hybrid elastomers for bone regeneration applications. Here, we fabricated the photoluminescent poly(citrate-siloxane) nanoparticles (PCSNPs) through an oil/water emulsion method and demonstrated their long-term live stem cells/cancer cells imaging applications. PCSNPs showed a uniform size distribution (mean diameter 120 nm) and highly stable dispersability (above 30 days) in various physiological medium, as well as excellent fluorescent properties and photostability. PCSNPs possess excellent cellular biocompatibility, which could be efficiently internalized by cells and selectively image the cell lysosome with a high photostability. Compared with commercial Cell Tracker (TM) Green and Cell Tracker (TM) Red, the adipose derived mesenchymal stem cells or human hepatoma cells were stably labeled by PCSNPs for over 14 days as they grew and developed (7 passages). Additionally, PCSNPs efficiently tracked cells up to 7 days in vivo through a non-invasively way compared with 1 day of commercial tracker. This study demonstrates an important strategy to design biodegradable multifunctional delivery platforms for biomedical applications such as long-term bioimaging.
机译:长期活细胞跟踪是理想的,需要了解干细胞和癌细胞生物相互作用的动态和复杂性。常规的活细胞荧光跟踪器通常是不可降解的,并且在长期应用过程中显示出增加的毒性问题。以前,我们开发了用于骨再生应用的可生物降解的荧光聚(柠檬酸盐)的杂种弹性体。这里,我们通过油/水乳液法制造了光致发光聚(柠檬酸硅氧烷)纳米颗粒(PCSNP),并证明了它们的长期活干细胞/癌细胞成像应用。 PCSNPS在各种生理培养基中显示出均匀的尺寸分布(平均直径120nm)和高度稳定的分散性(高于30天),以及优异的荧光特性和光稳定性。 PCSNPS具有优异的细胞生物相容性,其可以通过细胞有效地内化,并选择性地以高光稳定性图像对细胞溶酶体进行成像。与商业细胞跟踪器(TM)绿色和细胞跟踪器(TM)红色相比,脂肪衍生的间充质干细胞或人肝癌细胞在PCSNP稳定地标记,超过14天,在其增长和发展(7段通道)。此外,与1天的商业跟踪器相比,PCSNPS通过非侵入性方式高达7天内的细胞长达7天。本研究表明了设计用于生物医学应用的可生物降解的多功能递送平台的重要策略,例如长期生物模拟。

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