| Literature DB >> 31242732 |
Yang Liu1,2, Wenyao Zhen2,3, Yinghui Wang1, Jianhua Liu4, Longhai Jin4, Tianqi Zhang4, Songtao Zhang1, Ying Zhao1,2, Na Yin1,2, Rui Niu1,2, Shuyan Song1,2, Lei Zhang1,2, Hongjie Zhang1,2.
Abstract
Due to the limitation of inorganic nanomaterials in present clinical applications induced by their inherent nonbiodegradability and latent long-term side effects, we successfully prepared double switch degradable and clearable trinickel monophosphide porous hollow nanospheres (NiP PHNPs) modified with bovine serum albumin (BSA). Attributed to their acidic and oxidative double switch degradation capacities, NiP PHNPs can be effectively excreted from mice without long-term toxicity. Moreover, because of the paramagnetic and high molar extinction coefficient property resulting from the strong absorption in the second near-infrared light (NIR II) biowindow, NiP PHNPs have potential to be used for photoacoustic imaging (PAI) and T1-weighted magnetic resonance imaging (MRI) guided photothermal ablation of tumors in the NIR II biowindow. Specifically, it is interesting that the hollow structure and acidic degradation property enable NiP PHNPs to act as intelligent drug carriers with an on-demand release ability. These findings highlight the great potential of NiP PHNPs in the cancer theranostics field and inspire us to further broaden the bioapplications of transition metal phosphides.Entities:
Keywords: NIR II biowindows; Trinickel monophosphide; biodegradable; chemo-/photothermal therapy; multimodal imaging
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Year: 2019 PMID: 31242732 DOI: 10.1021/acs.nanolett.9b01370
Source DB: PubMed Journal: Nano Lett ISSN: 1530-6984 Impact factor: 11.189