Department of Chemistry, Kwangwoon University, 20 Gwangwoon-ro, Nowon-gu, Seoul 01897, Republic of Korea.
Institute of Biotherapeutics Convergence Technology, Lemonex Inc., Seoul 08826, Republic of Korea.
ACS Appl Mater Interfaces. 2021 Sep 22;13(37):44124-44135. doi: 10.1021/acsami.1c14201. Epub 2021 Sep 8.
Although nanoparticles based on Group 8 elements such as Fe and Ru have been developed, not much is known about Os nanoparticles. However, Os-based nanostructures might have potential in various applications including biomedical fields. Therefore, in this study, we synthesized Os-Te nanorods (OsTeNRs) by solvothermal galvanic replacement with Te nanotemplates. We explored the nanozymatic activity of the synthesized OsTeNRs and found that they exhibited superior photothermal conversion and photocatalytic activity. Along with chemotherapy (regorafenib) and immunotherapy, the nanozymatic, photothermal, and photodynamic activities of OsTeNRs were harnessed to develop a pentamodal treatment for hepatocellular carcinoma (HCC); and studies demonstrated that the pentamodal therapy could alleviate hypoxia in HCC cells by generating oxygen and reduced unintended drug accumulation in organs. Moreover, bone-marrow toxicity due to regorafenib could be reduced as the drug was released in a sustained manner. Thus, OsTeNRs can be considered as suitable nanotemplates for combinatorial cancer therapy.
尽管已经开发出基于第 8 族元素如 Fe 和 Ru 的纳米粒子,但对于 Os 纳米粒子的了解并不多。然而,基于 Os 的纳米结构在包括生物医学领域在内的各种应用中可能具有潜力。因此,在这项研究中,我们通过溶剂热电置换法用 Te 纳米模板合成了 Os-Te 纳米棒(OsTeNRs)。我们探索了合成的 OsTeNRs 的纳米酶活性,并发现它们表现出优异的光热转换和光催化活性。结合化疗(regorafenib)和免疫疗法,我们利用 OsTeNRs 的纳米酶、光热和光动力活性开发了一种用于治疗肝细胞癌(HCC)的五模态治疗方法;研究表明,五模态治疗可以通过产生氧气来减轻 HCC 细胞中的缺氧,并减少器官中意外的药物积累。此外,由于药物持续释放,regorafenib 引起的骨髓毒性可以降低。因此,OsTeNRs 可以被认为是用于联合癌症治疗的合适纳米模板。