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Hybrid Core-Shell (HyCoS) Nanoparticles produced by Complex Coacervation for Multimodal Applications

机译:复杂凝聚法制备用于多峰应用的混合核-壳(HyCoS)纳米颗粒

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摘要

Multimodal imaging probes can provide diagnostic information combining different imaging modalities. Nanoparticles (NPs) can contain two or more imaging tracers that allow several diagnostic techniques to be used simultaneously. In this work, a complex coacervation process to produce core-shell completely biocompatible polymeric nanoparticles (HyCoS) for multimodal imaging applications is described. Innovations on the traditional coacervation process are found in the control of the reaction temperature, allowing a speeding up of the reaction itself, and the production of a double-crosslinked system to improve the stability of the nanostructures in the presence of a clinically relevant contrast agent for MRI (Gd-DTPA). Through the control of the crosslinking behavior, an increase up to 6 times of the relaxometric properties of the Gd-DTPA is achieved. Furthermore, HyCoS can be loaded with a high amount of dye such as ATTO 633 or conjugated with a model dye such as FITC for in vivo optical imaging. The results show stable core-shell polymeric nanoparticles that can be used both for MRI and for optical applications allowing detection free from harmful radiation. Additionally, preliminary results about the possibility to trigger the release of a drug through a pH effect are reported.
机译:多峰成像探头可以提供结合了不同成像方式的诊断信息。纳米粒子(NPs)可以包含两个或多个成像示踪剂,可以同时使用多种诊断技术。在这项工作中,描述了一种复杂的凝聚工艺,以生产用于多峰成像应用的核壳完全生物相容性聚合物纳米颗粒(HyCoS)。在控制反应温度的过程中发现了传统凝聚工艺的创新,从而可以加快反应本身的速度,并在临床相关的造影剂存在的情况下生产双交联体系以改善纳米结构的稳定性。用于MRI(Gd-DTPA)。通过控制交联行为,可以使Gd-DTPA的弛豫性能提高多达6倍。此外,HyCoS可以装载大量染料(例如ATTO 633)或与模型染料(例如FITC)缀合,以进行体内光学成像。结果表明,稳定的核-壳型聚合物纳米颗粒可用于MRI和光学应用,从而能够进行无有害辐射的检测。另外,还报告了有关通过pH效应触发药物释放的可能性的初步结果。

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