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多功能尺寸可扩展纳米药物增强肿瘤积累和渗透以实现协同化疗-光热治疗。

Multifunctional Size-Expandable Nanomedicines Enhance Tumor Accumulation and Penetration for Synergistic Chemo-Photothermal Therapy.

机构信息

Key Laboratory of Drug-Targeting and Drug Delivery System of the Education Ministry, West China School of Pharmacy, Sichuan University, Chengdu 610041, P. R. China.

Sichuan Engineering Laboratory for Plant-Sourced Drug and Sichuan Research Center for Drug Precision Industrial Technology, College of Polymer Science and Engineering, Sichuan University, Chengdu 610065, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2021 Oct 6;13(39):46361-46374. doi: 10.1021/acsami.1c14170. Epub 2021 Sep 27.

Abstract

Size expansion can effectively improve tumor accumulation of nanocarriers where precise control is required. A dual-responsive nanocarrier stimulated by both endogenous pH and exogenous heat stimuli can change its size. Herein, a nanoparticle composed of poly(,-diethyl acrylamide) (PDEAA) and poly(2-(diisopropylamino) ethyl methacrylate) (PDPA) is developed. The antitumor drug celastrol (CLT) and the photosensitizer indocyanine green (ICG) are then loaded in it to form CIPP. ICG generates heat under near-infrared (NIR) stimulation to kill tumor cells and enhance CIPP penetration. Meanwhile, CIPP expands in response to hyperthermia and acid tumor microenvironments, preventing itself from returning to the blood flow, thus accumulating in tumor sites. Ultimately, the acidic lysosomal environment in tumor cells disintegrates CIPP to release CLT, directly inducing immunogenic cell death and sensitizing tumor cells for hyperthermia by disrupting the interaction of heat shock protein 90 and P50. Most of the tumors in B16F10-bearing mice are eradicated after single laser irradiation. The dual-responsive CIPP with multiple functions and simple design displays a synergistic antitumor effect. This study provides a basis for developing size-expandable stimulus-responsive drug delivery systems against tumors.

摘要

尺寸的扩张可以有效地提高纳米载体在肿瘤部位的积累,而这需要精确的控制。一种可以同时受到内源性 pH 值和外源性热刺激的双重响应的纳米载体可以改变其尺寸。在此,开发了一种由聚(β-二乙基丙烯酰胺)(PDEAA)和聚[2-(二异丙基氨基)乙基甲基丙烯酸酯](PDPA)组成的纳米颗粒。然后将抗癌药物鬼臼毒素(CLT)和光热剂吲哚菁绿(ICG)载入其中,形成 CIPP。ICG 在近红外(NIR)刺激下产生热量以杀死肿瘤细胞并增强 CIPP 的穿透性。同时,CIPP 会响应过热和酸性肿瘤微环境而扩张,防止自身回流到血流中,从而在肿瘤部位积累。最终,肿瘤细胞中酸性溶酶体环境会破坏 CIPP 以释放 CLT,通过破坏热休克蛋白 90 和 P50 的相互作用,直接诱导免疫原性细胞死亡并使肿瘤细胞对热疗敏感。在接受单次激光照射后,B16F10 荷瘤小鼠体内的大部分肿瘤都被消除了。这种具有多种功能且设计简单的双重响应 CIPP 显示出协同的抗肿瘤作用。该研究为开发针对肿瘤的可尺寸扩张的刺激响应性药物传递系统提供了依据。

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