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Tailoring Porphyrin Conjugation for Nanoassembly-Driven Phototheranostic Properties

机译:为纳米组织驱动的光热性性能纵向卟啉缀合

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摘要

Lipoprotein mimetic nanostructures, which consist of an amphiphilic lipid shell, a hydrophobic core, and an apolipoprotein mimetic peptide, serve as a versatile platform for the design of drug delivery vehicles as well as the investigation of supramolecular assemblies. Porphyrin incorporation into biomimetic lipoproteins allows one to take advantage of the inherent multimodal photophysical properties of porphyrins, yielding various fluorescence, photoacoustic, and photodynamic agents. To facilitate their incorporation into a lipoprotein structure, porphyrins have been conjugated through a variety of strategies. However, the effects of the conjugate structure on the associated nanoparticle's phototherapeutic properties warrants further investigation. Herein, we systematically investigated the effects of two widely utilized porphyrin conjugates, oleylamide and lipid, on biophotonic properties of their resultant porphyrin-lipoprotein nanoparticles in vitro and in vivo. Specifically, we demonstrated that incorporation of the porphyrin moiety as an oleylamide conjugate leads to a highly stable J-aggregate with strong photoacoustic contrast, while incorporation as an ampiphilic lipid moiety into the lipid shell yields an effective fluorescent and photodynamic agent. The current study proposes a rational design strategy for next generation lipoprotein-based phototheranostic agents, for which nanoassembly-driven biophotonic and therapeutic properties can be tailored through the specific selection of porphyrin conjugate structures.
机译:脂蛋白模拟纳米结构,其由两亲性脂壳,疏水芯和载脂蛋白模拟肽组成,用作用于制定药物递送载体的通用平台以及超分子组件的研究。卟啉掺入仿生型脂蛋白允许人们利用卟啉的固有多模式光学性质,得到各种荧光,光声和光动力学剂。为了促进其掺入脂蛋白结构,卟啉已经通过各种策略缀合。然而,缀合物结构对相关纳米颗粒的光治疗特性的影响认证进一步研究。在此,我们系统地研究了两种广泛利用的卟啉缀合物,oleylamide和脂质的效果,在其所得卟啉 - 脂蛋白纳米粒子体外和体内的生物调节性质。具体地,我们证明了卟啉部分作为油酰胺缀合物掺入具有强光声对比的高度稳定的J-骨料,同时掺入脂质脂质部分进入脂质壳产生有效的荧光和光动力学剂。目前的研究提出了用于下一代脂蛋白的光热试剂的理性设计策略,其中纳米组织驱动的生物调光和治疗性能可以通过卟啉缀合物结构的特定选择来定制。

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