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Holistic assessment of covalently-labelled core-shell polymeric nanoparticles with fluorescent contrast agents towards theranostic applications

机译:使用荧光造影剂对共价标记的核壳聚合物纳米颗粒进行整体评估以用于治疗学应用

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摘要

The successful development of degradable polymeric nanostructures as optical probes for use in nanotheranostic applications requires the intelligent design of materials such that their surface response, degradation, drug delivery and imaging properties are all optimized. In the case of imaging, optimization must result in materials that allow differentiation between unbound optical contrast agents and labeled polymeric materials as they undergo degradation. In this study, we have shown that use of traditional electrophoretic gel-plate assays for determination of the purity of dye-conjugated degradable nanoparticles is limited, due to polymer degradation characteristics. To overcome these limitations, we have outlined a holistic approach to evaluating dye-and peptide-polymer nanoparticle conjugation by utilizing steady-state fluorescence, anisotropy, and emission and anisotropy life-time decay profiles, through which nanoparticle-dye binding can be assessed independent of perturbations, such as those presented during the execution of electrolyte gel-based assays. This approach has been demonstrated to provide an overall understanding of the spectral signature-structure-function relationship, ascertaining key information on interactions between the fluorophore, polymer and solvent components that have a direct and measurable impact on the emissive properties of the optical probe. The use of these powerful techniques provides feedback that can be utilized to improve nanotheranostics by evaluating dye emissivity in degradable nanotheranostic systems, which has become increasingly important as modern platforms transition to architectures intentionally reliant on degradation and built-in environmental responses.
机译:可降解聚合物纳米结构作为用于纳米热应用的光学探针的成功开发,要求对材料进行智能设计,以使它们的表面响应,降解,药物传递和成像性能都得到优化。在成像的情况下,优化必须导致材料能够在未结合的光学对比剂和标记的聚合物材料降解时进行区分。在这项研究中,我们已经表明,由于聚合物的降解特性,使用传统的电泳凝胶板测定法来确定染料偶联的可降解纳米粒子的纯度是有限的。为了克服这些限制,我们概述了一种通过利用稳态荧光,各向异性以及发射和各向异性寿命衰减曲线来评估染料和肽-聚合物纳米粒子共轭的整体方法,通过该方法可以独立地评估纳米粒子与染料的结合扰动,例如在执行基于电解质凝胶的测定过程中出现的扰动。已证明该方法可提供对光谱特征-结构-功能关系的全面理解,从而确定有关荧光团,聚合物和溶剂组分之间相互作用的关键信息,这些信息对光学探针的发射性能具有直接和可测量的影响。这些功能强大的技术的使用可提供反馈,这些反馈可用于通过评估可降解纳米热敏体系中的染料发射率来改善纳米热敏性能,随着现代平台过渡到有意依赖于降解和内置环境响应的体系结构,这一点变得越来越重要。

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