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光热纳米药物的灵活形态调控:理解结构、光热效应与肿瘤生物分布之间的关系

Flexible Morphological Regulation of Photothermal Nanodrugs: Understanding the Relationship between the Structure, Photothermal Effect, and Tumoral Biodistribution.

作者信息

Li Shukun, Li Yudong, Shen Guizhi, Sun Juping, Abdelmohsen Loai K E A, Yan Xuehai, van Hest Jan C M

机构信息

State Key Laboratory of Biochemical Engineering, Institute of Process Engineering, Beijing 100190, China.

Bio-Organic Chemistry, Institute for Complex Molecular Systems, Eindhoven University of Technology, P.O. Box 513, 5600 MB Eindhoven, The Netherlands.

出版信息

ACS Nano. 2025 Jan 21;19(2):2799-2808. doi: 10.1021/acsnano.4c15587. Epub 2025 Jan 9.

Abstract

The morphology of nanodrugs is of utmost importance in photothermal therapy because it directly influences their physicochemical behavior and biological responses. However, clarifying the inherent relationship between morphology and the resultant properties remains challenging, mainly due to the limitations in the flexible morphological regulation of nanodrugs. Herein, we created a range of morphologically controlled nanoassemblies based on poly(ethylene glycol)--poly(d,l-lactide) (PEG-PLA) block copolymer building blocks, in which the model photosensitizer phthalocyanine was incorporated. Four different topologies were compared, namely, spherical vesicles, bowl-shaped vesicles, rodlike micelles, and vesicular tubes. The photothermal properties and tumoral biodistribution were investigated, revealing their relationship with the particle morphology. Finally, the tumor ablation capability of the optimized nanodrugs was demonstrated. This study represents a systematic study of the morphologically discrete regulation of nanodrugs, highlighting the importance of customization of supramolecular photothermal nanodrugs toward clinical antitumor therapy.

摘要

纳米药物的形态在光热疗法中至关重要,因为它直接影响其物理化学行为和生物学反应。然而,阐明形态与所得性质之间的内在关系仍然具有挑战性,这主要是由于纳米药物形态灵活调控方面存在局限性。在此,我们基于聚(乙二醇)-聚(d,l-丙交酯)(PEG-PLA)嵌段共聚物构建块创建了一系列形态可控的纳米组装体,其中掺入了模型光敏剂酞菁。比较了四种不同的拓扑结构,即球形囊泡、碗状囊泡、棒状胶束和囊泡管。研究了光热性质和肿瘤生物分布,揭示了它们与颗粒形态的关系。最后,证明了优化后的纳米药物的肿瘤消融能力。这项研究代表了对纳米药物形态离散调控的系统研究,突出了超分子光热纳米药物定制对临床抗肿瘤治疗的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c9c2/11760176/62a5cde5dd71/nn4c15587_0001.jpg

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