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基于黑磷纳米片的平台用于靶向化学生物协同癌症治疗。

Black phosphorus nanosheets-based platform for targeted chemo-photothermal synergistic cancer therapy.

机构信息

Wuya College of Innovation, Shenyang Pharmaceutical University, 103 Wenhua Road, Shenyang 110016, China.

Wuya College of Innovation, Shenyang Pharmaceutical University, 103 Wenhua Road, Shenyang 110016, China.

出版信息

Colloids Surf B Biointerfaces. 2021 Feb;198:111467. doi: 10.1016/j.colsurfb.2020.111467. Epub 2020 Nov 12.

Abstract

As a new member of two-dimensional (2D) nanomaterials, black phosphorus (BP) has been considered as efficient photothermal therapy (PTT) agents owing to its excellent photothermal efficiency and biodegradability. Herein, a multifunctional nanoplatform based on black phosphorus nanosheets (BP NSs) was developed for chemo-photothermal synergistic cancer therapy. The BP NSs were successfully prepared by a liquid exfoliation technique. Doxorubicin (DOX), as a model drug, was loaded into the cavity of poly (amidoamine) (PAMAM) dendrimer using thin film hydration method. Then, PAMAM@DOX was coated on the surface of BP NSs using an electrostatic adsorption method that combined bath sonication with magnetic stirring. Hyaluronic acid (HA) was also modified onto the BP NS-PAMAM@DOX through electrostatic adsorption. PAMAM and HA layer could effectively isolate BP NSs from water and air to improve physiological stability. BP NSs and BP NS-PAMAM@DOX-HA were characterized by particle size, zeta potential, morphology, UV-vis-NIR absorption spectra, stability, photothermal performance and photothermal stability. This nanosystem exhibited a good pH and near infrared (NIR) dual-responsive drug release property. In addition, the obtained BP NS-PAMAM@D OX-HA nanocomposites possessed excellent PTT efficiency both in vitro and in vivo. The in vitro cell experiments suggested that the targeted BP NS-PAMAM@DOX-HA presented greater cytotoxicity and higher cellular uptake efficiency. Tumor xenograft model was established in BALB/C mice. The therapeutic effect of BP NS-PAMAM@DOX-HA was further augmented under 808 nm laser irradiation, displaying superior antitumor effect in comparison with chemotherapy or PTT alone. Such a biodegradable BP NS-based platform provide new insights for the rational design of PTT-based combinational cancer therapy.

摘要

作为二维(2D)纳米材料的新成员,黑磷(BP)由于其优异的光热效率和生物可降解性,被认为是有效的光热治疗(PTT)剂。在此,开发了基于黑磷纳米片(BP NSs)的多功能纳米平台,用于化学-光热协同癌症治疗。通过液体剥离技术成功制备了 BP NSs。阿霉素(DOX)作为模型药物,通过薄膜水化法载入聚酰胺-胺(PAMAM)树枝状大分子的腔中。然后,通过结合浴超声和磁场搅拌的静电吸附法,将 PAMAM@DOX 涂覆在 BP NSs 的表面上。通过静电吸附,也将透明质酸(HA)修饰到 BP NS-PAMAM@DOX 上。PAMAM 和 HA 层可以有效地将 BP NSs 与水和空气隔离,以提高生理稳定性。通过粒径、zeta 电位、形态、紫外-可见-近红外(UV-vis-NIR)吸收光谱、稳定性、光热性能和光热稳定性对 BP NSs 和 BP NS-PAMAM@DOX-HA 进行了表征。该纳米系统表现出良好的 pH 和近红外(NIR)双重响应药物释放特性。此外,所得到的 BP NS-PAMAM@D OX-HA 纳米复合材料具有优异的体外和体内 PTT 效率。体外细胞实验表明,靶向的 BP NS-PAMAM@DOX-HA 具有更大的细胞毒性和更高的细胞摄取效率。在 BALB/C 小鼠中建立了肿瘤异种移植模型。在 808nm 激光照射下,BP NS-PAMAM@DOX-HA 的治疗效果进一步增强,与单独化疗或 PTT 相比,表现出更好的抗肿瘤效果。这种基于可生物降解的 BP NS 的平台为基于 PTT 的联合癌症治疗的合理设计提供了新的思路。

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