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利用荧光光谱法和极坐标图分析对原卟啉 IX 种在体外的特性进行表征。

Characterization of Protoporphyrin IX Species in Vitro Using Fluorescence Spectroscopy and Polar Plot Analysis.

机构信息

Department of Chemistry , Pusan National University , Busan 46241 , Korea.

出版信息

J Phys Chem B. 2019 Jul 11;123(27):5832-5840. doi: 10.1021/acs.jpcb.9b01913. Epub 2019 Jun 26.

Abstract

Protoporphyrin IX (PPIX) is a photodynamic therapy (PDT) agent for the treatment of various types of cancer. The effectiveness of PDT is believed to be associated with aggregation of PPIX in cells. However, the aggregation equilibrium of PPIX in the cellular environment and in solution is still poorly understood. This is attributed by the lack of a method that allows for controllable generation of PPIX aggregates and robust analysis technique for measuring their photophysical properties. In this study, the dynamics of PPIX aggregation were investigated under high pressure and different solvent conditions using time-resolved fluorescence spectroscopy. The data were analyzed on a polar plot, a model-free analysis method that has become increasingly popular for fluorescence lifetime studies. We discovered that increasing hydrostatic pressure enhanced the formation of J-type aggregates based on measured absorbance, spectra, and lifetime features. Formation of large aggregates, which have a subnanosecond lifetime in the excited state, was observed under the increasing concentration of divalent cations as well as under a solvent of around neutral pH. PPIX monomerizes from the aggregate as pH becomes more basic, not dimerization as proposed by previous studies. Here, we demonstrate that the combination of time-resolved measurement and polar plot analysis is very robust for monitoring the presence of different types of PPIX aggregates formed in various chemical environments.

摘要

原卟啉 IX(PPIX)是一种光动力疗法(PDT)药物,可用于治疗各种类型的癌症。PDT 的有效性被认为与 PPIX 在细胞中的聚集有关。然而,细胞环境中和溶液中 PPIX 的聚集平衡仍未得到很好的理解。这归因于缺乏一种能够可控地生成 PPIX 聚集体并具有强大的分析技术来测量其光物理性质的方法。在这项研究中,使用时间分辨荧光光谱法在高压和不同溶剂条件下研究了 PPIX 聚集的动力学。数据在极坐标图上进行分析,极坐标图是一种越来越受欢迎的荧光寿命研究的无模型分析方法。我们发现,根据测量的吸光度、光谱和寿命特征,增加静压增强了 J 型聚集体的形成。在二价阳离子浓度增加以及在接近中性 pH 的溶剂下,观察到具有亚纳秒寿命的大聚集体的形成。随着 pH 值变得更加碱性,PPIX 从聚集体中单体化,而不是像先前研究提出的那样二聚化。在这里,我们证明了时间分辨测量和极坐标图分析的结合对于监测在各种化学环境中形成的不同类型的 PPIX 聚集体的存在非常有效。

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