Um Hyeji, Kang Rae Hyung, Kim Dokyoung
Department of Biomedical Science, Graduate School, Kyung Hee University, Seoul 02447, the Republic of Korea.
Pharmaceutical Sciences Division, School of Pharmacy, University of Wisconsin-Madison, 777 Highland Avenue, Madison, WI 53705, USA.
Colloids Surf B Biointerfaces. 2023 May;225:113273. doi: 10.1016/j.colsurfb.2023.113273. Epub 2023 Mar 22.
Porous silicon nanoparticles (pSiNPs) have gained attention from drug delivery systems (DDS) due to their biocompatibility, high drug-loading efficiency, and facile surface modification. To date, many surface chemistries of pSiNPs have been developed to maximize the merits and overcome the drawbacks of pSiNPs. In this work, we newly disclosed a formulation, iron-silicate-coated pSiNPs (Fe-pSiNPs-NCS), using the surface modification method with iron-silicate and 3-isothiocyanatopropyltriethoxysilane (TEPITC). Fe-pSiNPs-NCS demonstrated effective reactive-oxygen species (ROS) self-generation ability via a Fenton-like reaction of iron-silicate and in situ hydrogen peroxide (HO) generation of TEPITC on the surface of pSiNPs, resulting in excellent anticancer effect in U87MG cancer cells. Moreover, we confirmed that Fe-pSiNPs-NCS could be used as a drug delivery carrier as it was proven that anticancer drugs (doxorubicin, SN-38) were loaded into Fe-pSiNPs-NCS with high-loading efficiency. These findings could offer efficient strategies for developing nanotherapeutics in biomedical fields.
多孔硅纳米颗粒(pSiNPs)因其生物相容性、高载药效率和易于表面修饰等特性,在药物递送系统(DDS)领域受到了广泛关注。迄今为止,人们已经开发出多种pSiNPs的表面化学方法,以充分发挥其优势并克服其缺点。在本研究中,我们首次公开了一种采用铁硅酸盐和3-异硫氰酸丙基三乙氧基硅烷(TEPITC)进行表面修饰的配方——铁硅酸盐包覆的pSiNPs(Fe-pSiNPs-NCS)。Fe-pSiNPs-NCS通过铁硅酸盐的类芬顿反应以及pSiNPs表面TEPITC原位生成过氧化氢(HO),展现出有效的活性氧(ROS)自生成能力,从而在U87MG癌细胞中产生了优异的抗癌效果。此外,我们证实Fe-pSiNPs-NCS可以用作药物递送载体,因为已有研究证明抗癌药物(阿霉素、SN-38)能够以高载药效率载入Fe-pSiNPs-NCS中。这些研究结果可为生物医学领域纳米治疗药物的开发提供有效的策略。