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近红外诱导纳米粒子递送 miR-34a 治疗食管癌。

Near-Infrared Induced miR-34a Delivery from Nanoparticles in Esophageal Cancer Treatment.

机构信息

Department of Biomedical Engineering, The Pennsylvania State University, University Park, PA, 16802, USA.

The Huck Institute of the Life Sciences, Millennium Science Complex, The Pennsylvania State University, University Park, PA, 16802, USA.

出版信息

Adv Healthc Mater. 2024 Apr;13(10):e2303593. doi: 10.1002/adhm.202303593. Epub 2024 Jan 22.

Abstract

Current nucleic acid delivery methods have not achieved efficient, non-toxic delivery of miRNAs with tumor-specific selectivity. In this study, a new delivery system based on light-inducible gold-silver-gold, core-shell-shell (CSS) nanoparticles is presented. This system delivers small nucleic acid therapeutics with precise spatiotemporal control, demonstrating the potential for achieving tumor-specific selectivity and efficient delivery of miRNA mimics. The light-inducible particles leverage the photothermal heating of metal nanoparticles due to the local surface plasmonic resonance for controlled chemical cleavage and release of the miRNA mimic payload. The CSS morphology and composition result in a plasmonic resonance within the near-infrared (NIR) region of the light spectrum. Through this method, exogenous miR-34a-5p mimics are effectively delivered to human squamous cell carcinoma TE10 cells, leading to apoptosis induction without adverse effects on untransformed keratinocytes in vitro. The CSS nanoparticle delivery system is tested in vivo in Foxn1nu athymic nude mice with bilateral human esophageal TE10 cancer cells xenografts. These experiments reveal that this CSS nanoparticle conjugates, when systemically administered, followed by 850 nm light emitting diode irradiation at the tumor site, 6 h post-injection, produce a significant and sustained reduction in tumor volume, exceeding 87% in less than 72 h.

摘要

目前的核酸递送方法尚未实现 miRNA 具有肿瘤特异性选择性的高效、无毒递送。在这项研究中,提出了一种基于光诱导的金银金、核壳壳(CSS)纳米粒子的新型递送系统。该系统通过精确的时空控制递small 核酸治疗药物,展示了实现 miRNA 模拟物肿瘤特异性选择性和高效递送的潜力。光诱导颗粒利用金属纳米颗粒的光热加热由于局部表面等离激元共振,可控制化学裂解和 miRNA 模拟物有效载荷的释放。CSS 形态和组成导致在光的光谱的近红外(NIR)区域内的等离子体共振。通过这种方法,外源性 miR-34a-5p 模拟物有效地递送到人鳞状细胞癌 TE10 细胞,导致体外诱导细胞凋亡而对未转化的角质形成细胞无不良影响。在双侧人食管 TE10 癌细胞异种移植的 Foxn1nu 裸鼠体内进行了 CSS 纳米颗粒递送系统的体内测试。这些实验表明,当全身给药时,当在肿瘤部位进行 850nm 发光二极管照射时,注射后 6 小时,产生显著且持续的肿瘤体积减少,在不到 72 小时内超过 87%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a516/11468323/3f84b559067a/ADHM-13-2303593-g007.jpg

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