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Hyperspectral Imaging Offers Visual and Quantitative Evidence of Drug Release from Zwitterionic-Phospholipid-Nanocarbon When Concurrently Tracked in 3D Intracellular Space

机译:在3D细胞内空间中同时跟踪时,高光谱成像提供了从两性离子-磷脂-纳米碳中释放药物的视觉和定量证据

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摘要

Spatial and spectral information of a nanocarrier and its payload is crucial for the advancement of luminescence-based imaging, disease detection, and treatment in complex biological environment. However, it remains challenging to track and quantify the delivery and localization of drugs lacking inherent fluorescence. It is demonstrated that sub 30 nm phospholipid-stabilized nanoparticles can be detected and quantified using hyperspectral transmitted light microscopy without using a fluorophore. In two proposed model systems, phospholipid-passivated carbon nanoparticles incorporate the drug in either free form or as a lipid-based prodrug. Following a rigorous characterization of these nanoparticles, in vitro toxicities via loss in cell growth density and mitochondrial respiration is studied in MCF-7 breast cancer cells. Furthermore, a detailed inhibitor based study reveals that these particles are internalized based on a clathrin-mediated pathway, irrespective of the choice of drug formulation. Hyperspectral imaging is performed to obtain the colocalization of carbon nanoparticles and drug molecules intracellularly and can successfully be tracked while therapeutic release is quantified in 3D space. The present work demonstrates that nanoparticles and therapeutic agents can be mapped and measured simultaneously barring the requirement of a dye, thus providing new avenues in the spatiotemporal characterization and synchronous detection and quantification of payload and carrier.
机译:纳米载体及其有效载荷的空间和光谱信息对于在复杂生物环境中基于发光的成像,疾病检测和治疗的发展至关重要。然而,跟踪和量化缺乏固有荧光的药物的递送和定位仍然具有挑战性。已经证明,可以使用高光谱透射光显微镜而不使用荧光团来检测和定量亚30 nm磷脂稳定的纳米颗粒。在两个提出的模型系统中,磷脂钝化的碳纳米颗粒以游离形式或基于脂质的前药形式掺入了药物。在对这些纳米颗粒进行了严格的表征后,在MCF-7乳腺癌细胞中研究了通过细胞生长密度损失和线粒体呼吸作用引起的体外毒性。此外,一项基于抑制剂的详细研究表明,这些颗粒是基于网格蛋白介导的途径而被内在化的,而与药物制剂的选择无关。进行高光谱成像以获得细胞内碳纳米颗粒和药物分子的共定位,并且可以在3D空间中量化治疗释放的同时成功跟踪。目前的工作表明纳米颗粒和治疗剂可以同时绘制和测量,除非需要染料,从而为时空表征,有效载荷和载体的同步检测和定量提供了新的途径。

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  • 来源
    《Advanced Functional Materials》 |2016年第44期|8031-8041|共11页
  • 作者单位

    Univ Illinois, Mills Breast Canc Inst, Dept Bioengn, Urbana, IL 61801 USA|Univ Illinois, Mills Breast Canc Inst, Dept Mat Sci & Engn, Urbana, IL 61801 USA|Univ Illinois, Mills Breast Canc Inst, Beckman Inst, Urbana, IL 61801 USA|Carle Fdn Hosp, Urbana, IL 61801 USA;

    Univ Illinois, Mills Breast Canc Inst, Dept Bioengn, Urbana, IL 61801 USA|Univ Illinois, Mills Breast Canc Inst, Dept Mat Sci & Engn, Urbana, IL 61801 USA|Univ Illinois, Mills Breast Canc Inst, Beckman Inst, Urbana, IL 61801 USA|Carle Fdn Hosp, Urbana, IL 61801 USA;

    Univ Illinois, Mills Breast Canc Inst, Dept Bioengn, Urbana, IL 61801 USA|Univ Illinois, Mills Breast Canc Inst, Dept Mat Sci & Engn, Urbana, IL 61801 USA|Univ Illinois, Mills Breast Canc Inst, Beckman Inst, Urbana, IL 61801 USA|Carle Fdn Hosp, Urbana, IL 61801 USA;

    CytoViva Inc, 300 North Dean Rd,Suite 5 PMB 157, Auburn, AL 36830 USA;

    Univ Illinois, Mills Breast Canc Inst, Dept Bioengn, Urbana, IL 61801 USA|Univ Illinois, Mills Breast Canc Inst, Dept Mat Sci & Engn, Urbana, IL 61801 USA|Univ Illinois, Mills Breast Canc Inst, Beckman Inst, Urbana, IL 61801 USA|Carle Fdn Hosp, Urbana, IL 61801 USA;

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