首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Nanoscopic micelle delivery improves the photophysical properties and efficacy of photodynamic therapy of protoporphyrin IX
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Nanoscopic micelle delivery improves the photophysical properties and efficacy of photodynamic therapy of protoporphyrin IX

机译:纳米胶束传递改善了原卟啉IX的光物理性质和光动力疗法的功效

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摘要

Nanodelivery systems have shown considerable promise in increasing the solubility and delivery efficiency of hydrophobic photosensitizers for photodynamic therapy (PDT) applications. In this study, we report the preparation and characterization of polymeric micelles that incorporate protoporphyrin IX (PpIX), a potent photosensitizer, using non-covalent encapsulation and covalent conjugation methods. Depending on the incorporation method and PpIX loading percentage, PpIX existed as a monomer, dimer or aggregate in the micelle core. The PpIX state directly affected the fluorescence intensity and ~1O_2 generation efficiency of the resulting micelles in aqueous solution. Micelles with lower PpIX loading density (e.g. 0.2%) showed brighter fluorescence and higher ~1O_2 yield than those with higher PpIX loading density (e.g. 4%) in solution. However, PDT efficacy in H2009 lung cancer cells showed an opposite trend. In particular, 4% PpIX-conjugated micelles demonstrated the largest PDT therapeutic window, as indicated by the highest phototoxicity and relatively low dark toxicity. Results from this study contribute to the fundamental understanding of nanoscopic structure-property relationships of micelle-delivered PpIX and establish a viable micelle formulation (i.e. 4% PpIX-conjugated micelles) for in vivo evaluation of antitumor efficacy.
机译:纳米递送系统在增加用于光动力疗法(PDT)应用的疏水性光敏剂的溶解度和递送效率方面显示出可观的前景。在这项研究中,我们报告了使用非共价包囊和共价缀合方法制备并结合了强力光敏剂原卟啉IX(PpIX)的聚合物胶束。根据掺入方法和PpIX的负载百分比,PpIX以单体,二聚体或聚集体的形式存在于胶束核心中。 PpIX状态直接影响所得胶束在水溶液中的荧光强度和〜1O_2产生效率。与溶液中具有较高PpIX装载密度(例如4%)的胶束相比,具有较低PpIX装载密度(例如0.2%)的胶束显示更亮的荧光和更高的〜1O_2产量。然而,PDT在H2009肺癌细胞中的功效却显示出相反的趋势。特别地,如最高的光毒性和相对较低的暗毒性所表明的,4%PpIX偶联的胶束表现出最大的PDT治疗窗口。这项研究的结果有助于对胶束递送的PpIX的纳米结构-性质关系的基本理解,并建立一种可行的胶束制剂(即4%PpIX缀合的胶束)用于体内抗肿瘤功效评估。

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