State Key Laboratory of Silkworm Genome Biology, School of Materials and Energy, Southwest University, Chongqing 400715, China.
J Mater Chem B. 2020 Sep 14;8(34):7766-7776. doi: 10.1039/d0tb01448f. Epub 2020 Aug 3.
Traditional techniques for the synthesis of nickel sulfide (NiS) nanoparticles (NPs) always present drawbacks of morphological irregularity, non-porous structure and poor long-term stability, which are extremely unfavorable for establishing effective therapeutic agents. Here, a category of hollow mesoporous NiS (hm-NiS) NPs with uniform spherical structure and good aqueous dispersity were innovatively developed based on a modified solvothermal reaction technique. Upon the successful synthesis of hm-NiS NPs, dopamine was seeded and in situ polymerized into polydopamine (PDA) on the NP surface, followed by functionalization with thiol-polyethylene glycol (SH-PEG) and encapsulation of the chemotherapeutic drug, doxorubicin (DOX), to form hm-NiS@PDA/PEG/DOX (NiPPD) NPs. The resultant NiPPD NPs exhibited a decent photothermal response and stability, attributed to the optical absorption of the hm-NiS nanocore and PDA layer in the near-infrared (NIR) region. Furthermore, stimulus-responsive drug release was achieved under both acidic pH conditions and NIR laser irradiation, owing to the protonation of -NH groups in the DOX molecules and local thermal shock, respectively. Lastly, a strong combinatorial photothermal-chemotherapeutic effect was demonstrated for tumor suppression with minimal systemic toxicity in vivo. Collectively, this state-of-the-art paradigm may provide useful insights to deepen the application of hm-NiS NPs for disease management and precision medicine.
传统的硫化镍(NiS)纳米粒子(NPs)合成技术通常存在形态不规则、非多孔结构和长期稳定性差等缺点,这对建立有效的治疗剂极为不利。在这里,我们创新性地开发了一类具有均匀球形结构和良好水分散性的中空介孔 NiS(hm-NiS) NPs,该 NPs 是基于改进的溶剂热反应技术合成的。成功合成 hm-NiS NPs 后,多巴胺被种子并原位聚合到 NP 表面的聚多巴胺(PDA)上,然后通过巯基-聚乙二醇(SH-PEG)功能化和化疗药物阿霉素(DOX)的包封,形成 hm-NiS@PDA/PEG/DOX(NiPPD) NPs。所得的 NiPPD NPs 表现出良好的光热响应和稳定性,这归因于 hm-NiS 纳米核和 PDA 层在近红外(NIR)区域的光学吸收。此外,由于 DOX 分子中的-NH 基团的质子化和局部热冲击,分别在酸性 pH 条件和 NIR 激光照射下实现了响应性药物释放。最后,体内实验证明了强烈的组合光热-化学治疗抑制肿瘤的效果,同时具有最小的全身毒性。总之,这种最先进的范例可能为深入应用 hm-NiS NPs 进行疾病管理和精准医学提供有用的见解。