Systematic assessment of blood circulation time of functionalized upconversion nanoparticles in the chick embryo

A. Nadort, L. Liang, E. Grebenik, Anna E Guller, Yiqing Lu, Yi Qian, E. Goldys, A. Zvyagin
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Abstract

Nanoparticle-based delivery of drugs and contrast agents holds great promise in cancer research, because of the increased delivery efficiency compared to ‘free’ drugs and dyes. A versatile platform to investigate nanotechnology is the chick embryo chorioallantoic membrane tumour model, due to its availability (easy, cheap) and accessibility (interventions, imaging). In our group, we developed this model using several tumour cell lines (e.g. breast cancer, colon cancer). In addition, we have synthesized in-house silica coated photoluminescent upconversion nanoparticles with several functional groups (COOH, NH2, PEG). In this work we will present the systematic assessment of their in vivo blood circulation times. To this end, we injected chick embryos grown ex ovo with the functionalized UCNPs and obtained a small amount of blood at several time points after injection to create blood smears The UCNP signal from the blood smears was quantified using a modified inverted microscope imaging set-up. The results of this systematic study are valuable to optimize biochemistry protocols and guide nanomedicine advancement in the versatile chick embryo tumour model.
功能化上转化纳米颗粒在鸡胚中血液循环时间的系统评价
基于纳米颗粒的药物和造影剂的输送在癌症研究中具有很大的前景,因为与“自由”药物和染料相比,纳米颗粒的输送效率更高。研究纳米技术的一个通用平台是鸡胚胎绒毛膜尿囊膜肿瘤模型,因为它的可用性(简单、廉价)和可获得性(干预、成像)。在我们的小组中,我们使用几种肿瘤细胞系(例如乳腺癌,结肠癌)开发了这个模型。此外,我们已经合成了具有几个官能团(COOH, NH2, PEG)的二氧化硅涂层光致发光上转换纳米颗粒。在这项工作中,我们将提出他们的体内血液循环时间的系统评估。为此,我们将功能化的UCNP注入卵生鸡胚胎,并在注射后的几个时间点获得少量血液,形成血液涂片。使用改进的倒置显微镜成像装置定量血液涂片中的UCNP信号。本系统的研究结果对优化生物化学方案和指导纳米医学在多功能鸡胚胎肿瘤模型中的应用具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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