Department of Pharmaceutics, Key Laboratory of Chemical Biology (Ministry of Education), School of Pharmaceutical Sciences, Shandong University, 44 WenhuaXilu, Jinan, 250012, People's Republic of China.
Department of Chemistry and Bioengineering, University of Washington, Seattle, WA, 98195, USA.
J Nanobiotechnology. 2021 Dec 19;19(1):428. doi: 10.1186/s12951-021-01162-2.
Molybdenum oxide (MoOx) nanosheets have drawn increasing attention for minimally invasive cancer treatments but still face great challenges, including complex modifications and the lack of efficient accumulation in tumor. In this work, a novel multifunctional degradable FA-BSA-PEG/MoOx nanosheet was fabricated (LA-PEG and FA-BSA dual modified MoOx): the synergistic effect of PEG and BSA endows the nanosheet with excellent stability and compatibility; the FA, a targeting ligand, facilitates the accumulation of nanosheets in the tumor. In addition, DTX, a model drug for breast cancer treatment, was loaded (76.49%, 1.5 times the carrier weight) in the nanosheets for in vitro and in vivo antitumor evaluation. The results revealed that the FA-BSA-PEG/MoOx@DTX nanosheets combined photothermal and chemotherapy could not only inhibit the primary tumor growth but also suppress the distant tumor growth (inhibition rate: 51.7%) and lung metastasis (inhibition rate: 93.6%), which is far more effective compared to the commercial Taxotere®. Exploration of the molecular mechanism showed that in vivo immune response induced an increase in positive immune responders, suppressed negative immune suppressors, and established an inflammatory tumor immune environment, which co-contributes towards effective suppression of tumor and lung metastasis. Our experiments demonstrated that this novel multifunctional nanosheet is a promising platform for combined chemo-photothermal therapy.
钼氧化物(MoOx)纳米片因其在微创癌症治疗方面的应用而备受关注,但仍面临着许多挑战,包括复杂的修饰和在肿瘤部位缺乏有效的积累。在这项工作中,我们制备了一种新型多功能可降解的 FA-BSA-PEG/MoOx 纳米片(LA-PEG 和 FA-BSA 双重修饰的 MoOx):PEG 和 BSA 的协同作用赋予纳米片优异的稳定性和相容性;FA 作为一种靶向配体,促进了纳米片在肿瘤部位的积累。此外,载有乳腺癌治疗模型药物 DTX(载药量为 76.49%,是载体重量的 1.5 倍)的纳米片用于体外和体内的抗肿瘤评价。结果表明,FA-BSA-PEG/MoOx@DTX 纳米片联合光热和化疗不仅可以抑制原发肿瘤的生长,还可以抑制远处肿瘤的生长(抑制率:51.7%)和肺转移(抑制率:93.6%),与商业药物 Taxotere®相比效果更显著。分子机制的探索表明,体内免疫反应引起阳性免疫反应者的增加,抑制了阴性免疫抑制者,并建立了炎症性肿瘤免疫环境,这有助于有效抑制肿瘤和肺转移。我们的实验证明,这种新型多功能纳米片是联合化疗-光热治疗的一种有前途的平台。