Wang Hao, Han Ren-lu, Yang Li-ming, Shi Jun-hui, Liu Zong-jun, Hu Yu, Wang You, Liu Shu-juan, Gan Yang
School of Materials Science and Engineering, Harbin Institute of Technology , Harbin 150001, China.
Department of Pathophysiology, Harbin Medical University , Harbin 150081, China.
ACS Appl Mater Interfaces. 2016 Feb;8(7):4416-23. doi: 10.1021/acsami.5b11197. Epub 2016 Feb 11.
Novel core-shell-shell structured nanoparticles 75 nm in diameter with all-in-one "smart" functional capabilities for simultaneous photoresponsive drug release, photodynamic therapy, and cell imaging are designed and prepared. These nanoparticles consist of an upconversion (UC) emission core, a photosensitizer-embodied silica sandwich shell, and a β-cyclodextrin (β-CD) gated mesoporous silica outmost shell with drugs (Rhodamine B as a model) loaded inside. We show in this proof-of-concept demonstration that, under 980 nm near-infrared irradiation, UC 540 nm green light emissions were emitted for cell imaging, and 660 nm red light emissions were excited for activating photosensitizers to generate singlet oxygen, which could be exploited directly to kill cancer cells and simultaneously dissociate β-CD gatekeeper to release drugs. The preliminary results reported here will shed new light on the future design and applications of multifunctional platforms for cancer therapy and diagnostic.
设计并制备了直径为75 nm的新型核-壳-壳结构纳米颗粒,其具有一体化的“智能”功能,可同时实现光响应药物释放、光动力治疗和细胞成像。这些纳米颗粒由上转换(UC)发射核、包埋有光敏剂的二氧化硅夹心壳层以及负载药物(以罗丹明B为模型)的β-环糊精(β-CD)门控介孔二氧化硅最外层壳层组成。在这个概念验证演示中,我们展示了在980 nm近红外照射下,发射540 nm绿光用于细胞成像,激发660 nm红光以激活光敏剂产生单线态氧,单线态氧可直接用于杀死癌细胞,同时使β-CD守门人解离以释放药物。本文报道的初步结果将为癌症治疗和诊断多功能平台的未来设计和应用提供新的思路。