State Key Laboratory for Chemistry and Molecular Engineering of Medicinal Resources, Key Laboratory for Chemistry and Molecular Engineering of Medicinal Resources (Ministry of Education of China), Collaborative Innovation Center for Guangxi Ethnic Medicine, School of Chemistry and Pharmaceutical Sciences, Guangxi Normal University, Guilin, 541004, P. R. China.
Small. 2024 Oct;20(42):e2401117. doi: 10.1002/smll.202401117. Epub 2024 Jun 20.
Surface-enhanced Raman scattering (SERS) imaging integrating photothermal and photodynamic therapy (PTT/PDT) is a promising approach for achieving accurate diagnosis and effective treatment of cancers. However, most available Raman reporters show multiple signals in the fingerprint region, which overlap with background signals from cellular biomolecules. Herein, a 4T1 cell membrane-enveloped gold nanorods-manganese porphyrins system (GMCMs) is designed and successfully fabricated as a biomimetic theranostic nanoplatform. Manganese porphyrins are adsorbed on the surface of Au nanorods via the terminal alkynyl group. Cell membrane encapsulation protects the manganese porphyrins from falling off the gold nanorods. The biomimetic GMCMs confirm specific homologous targeting to 4T1 cells with good dispersibility, excellent photoacoustic (PA) imaging properties, and preferable photothermal and O generation performance. GMCMs exhibit distinct SERS signals in the silent region without endogenous biomolecule interference both in vitro and in vivo. Manganese ions could not only quench the fluorescence of porphyrins to enhance the SERS imaging effect but also deplete cellular GSH to increase O yield. Both in vitro and in vivo studies demonstrate that GMCMs effectively eradicate tumors through SERS/PA imaging-guided PTT/PDT. This study provides a feasible strategy for augmenting the Raman imaging effects of the alkynyl group and integrating GSH-depletion to enhance PTT/PDT efficacy.
表面增强拉曼散射(SERS)成像集成光热和光动力疗法(PTT/PDT)是实现癌症精确诊断和有效治疗的一种很有前途的方法。然而,大多数现有的拉曼报告器在指纹区域显示出多个信号,这些信号与细胞生物分子的背景信号重叠。在此,设计并成功制备了一种 4T1 细胞膜包裹的金纳米棒-锰卟啉系统(GMCMs)作为仿生治疗纳米平台。锰卟啉通过末端炔基吸附在 Au 纳米棒的表面。细胞膜包封保护锰卟啉不脱落纳米棒。仿生 GMCMs 对 4T1 细胞具有特异性同源靶向,具有良好的分散性、优异的光声(PA)成像性能和更好的光热和 O 生成性能。GMCMs 在体外和体内均在无内源性生物分子干扰的沉默区域表现出明显的 SERS 信号。锰离子不仅可以猝灭卟啉的荧光以增强 SERS 成像效果,还可以耗尽细胞内的 GSH 以增加 O 的产量。体外和体内研究均表明,GMCMs 通过 SERS/PA 成像引导的 PTT/PDT 有效消除肿瘤。这项研究为增强炔基的拉曼成像效果和整合 GSH 耗竭以增强 PTT/PDT 疗效提供了一种可行的策略。