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外部刺激触发的光动力和声动力疗法与 ICG@PEP@HA 杂化胶束联合应用:激光超声。

External stimuli-triggered photodynamic and sonodynamic therapies in combination with hybrid nanomicelles of ICG@PEP@HA: laser ultrasound.

机构信息

Academy of Medical Engineering and Translational Medicine, Tianjin University, Tianjin 300072, China.

Tianjin Key Laboratory of Brain Science and Neural Engineering, Tianjin University, Tianjin 300072, China.

出版信息

Nanoscale. 2024 Apr 18;16(15):7547-7558. doi: 10.1039/d4nr00243a.

Abstract

The concept of combining external medical stimuli with internal functional biomaterials to achieve cancer-oriented treatments is being emergingly developed. Optical and acoustical activations have shown particular promise as non-invasive regulation modalities in cancer treatment and intervention. It is always challenging to leverage the contributions of optical and acoustical stimuli and find appropriate biomaterials to optimally match them. Herein, a type of hybrid nanomicelle (ICG@PEP@HA) containing ICG as a photo/sonosensitizer, an amphiphilic peptide for membrane penetration and hyaluronic acid for cluster determinant 44 (CD44) targeting was fabricated. Triggered by the external stimuli of laser and US irradiation, their photo/sonothermal performance, reactive oxygen species (ROS) production capability and tumor-targeting efficiency have been systematically evaluated. It was interestingly found that the external stimulus of laser irradiation induced a greater quantity of ROS, which resulted in significant cell apoptosis and tumor growth inhibition in the presence of ICG@PEP@HA. The individual analyses and corresponding rationales have been investigated. Meanwhile, these hybrid nanomicelles were administered into MDA-MB-231 tumor-bearing nude mice for PDT and SDT therapies and their biocompatibility assessment, and a prevailing PDT efficacy and reliable bio-safety have been evidenced based on the hematological analysis and histochemical staining. In summary, this study has validated a novel pathway to utilize these hybrid nanomicelles for laser/US-triggered localized tumor treatment, and the treatment efficiency may be leveraged by different external stimuli sources. It is also expected to give rise to full accessibility to clinical translations for human cancer treatments by means of the as-reported laser/US-nanomicelle combination strategy.

摘要

将外部医学刺激与内部功能生物材料相结合以实现针对癌症的治疗的概念正在得到新兴发展。光学和声学激活已显示出作为癌症治疗和干预的非侵入性调节方式的特别有希望的应用。利用光学和声学刺激的贡献并找到合适的生物材料以最佳匹配它们始终是具有挑战性的。在此,制备了一种包含 ICG 作为光/声敏化剂、用于膜穿透的两亲肽和用于簇决定因子 44 (CD44) 靶向的透明质酸的杂化纳米胶束(ICG@PEP@HA)。通过激光和 US 照射的外部刺激,系统地评估了它们的光/声热性能、活性氧 (ROS) 产生能力和肿瘤靶向效率。有趣的是,发现激光辐照的外部刺激诱导了更多的 ROS,这导致在存在 ICG@PEP@HA 的情况下显着的细胞凋亡和肿瘤生长抑制。已经研究了单独的分析及其相应的原理。同时,将这些杂化纳米胶束施用于 MDA-MB-231 荷瘤裸鼠中以进行 PDT 和 SDT 治疗及其生物相容性评估,并基于血液学分析和组织化学染色证明了优越的 PDT 功效和可靠的生物安全性。总之,这项研究验证了一种利用这些杂化纳米胶束进行激光/US 触发的局部肿瘤治疗的新途径,并且可以通过不同的外部刺激源来提高治疗效率。通过所报道的激光/US-纳米胶束组合策略,也有望为人类癌症治疗的临床转化提供充分的机会。

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