| Literature DB >> 30288978 |
Zhenglin Li1,2,3, Ying Hu4, Zhaohua Miao5, Han Xu6, Chunxiao Li6, Yan Zhao2, Zhuo Li1, Manli Chang7, Zhuo Ma4, Ye Sun2, Flemming Besenbacher3, Peng Huang6, Miao Yu1.
Abstract
Development of stimuli-responsive theranostics is of great importance for precise cancer diagnosis and treatment. Herein, bovine serum albumin (BSA) modified bismuth nanoraspberries (Bi-BSA NRs) are developed as cancer theranostic agents for multimodal imaging and chemo-photothermal combination therapy. The Bi-BSA NRs are synthesized in aqueous phase via a facile reduction method using Bi2O3 nanospheres as the sacrificial template. The morphology, biocompatibility, photothermal effect, drug loading/releasing abilities, chemotherapy effect, synergistic chemo-photothermal therapy efficacy, and multimodal imaging capacities of Bi-BSA NRs have been investigated. The results show that the NRs possess multiple unique features including (i) raspberry-like morphology with high specific surface area (∼52.24 m2·g-1) and large cavity (total pore volume ∼0.30 cm3·g-1), promising high drug loading capacity (∼69 wt %); (ii) dual-stimuli responsive drug release, triggered by acidic pH and NIR laser irradiation; (iii) infrared thermal (IRT), photoacoustic (PA) and X-ray computed tomography (CT) trimodality imaging with the CT contrast enhanced efficiency as high as ∼66.7 HU·mL·mg-1; (iv) 100% tumor elimination through the combination chemo-photothermal therapy. Our work highlights the great potentials of Bi-BSA NRs as a versatile theranostics for multimodal imaging and combination therapy.Entities:
Keywords: Bismuth nanoraspberry; chemo-photothermal therapy; drug delivery; multimodal imaging; theranostics
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Year: 2018 PMID: 30288978 DOI: 10.1021/acs.nanolett.8b02639
Source DB: PubMed Journal: Nano Lett ISSN: 1530-6984 Impact factor: 11.189