Trojan Horse nanotheranostics with dual transformability and multifunctionality for highly effective cancer treatment

X Xue, Y Huang, R Bo, B Jia, H Wu, Y Yuan… - Nature …, 2018 - nature.com
X Xue, Y Huang, R Bo, B Jia, H Wu, Y Yuan, Z Wang, Z Ma, D Jing, X Xu, W Yu, T Lin, Y Li
Nature communications, 2018nature.com
Nanotheranostics with integrated diagnostic and therapeutic functions show exciting
potentials towards precision nanomedicine. However, targeted delivery of nanotheranostics
is hindered by several biological barriers. Here, we report the development of a dual
size/charge-transformable, Trojan-Horse nanoparticle (pPhD NP) for delivery of ultra-small,
full active pharmaceutical ingredients (API) nanotheranostics with integrated dual-modal
imaging and trimodal therapeutic functions. pPhD NPs exhibit ideal size and charge for drug …
Abstract
Nanotheranostics with integrated diagnostic and therapeutic functions show exciting potentials towards precision nanomedicine. However, targeted delivery of nanotheranostics is hindered by several biological barriers. Here, we report the development of a dual size/charge- transformable, Trojan-Horse nanoparticle (pPhD NP) for delivery of ultra-small, full active pharmaceutical ingredients (API) nanotheranostics with integrated dual-modal imaging and trimodal therapeutic functions. pPhD NPs exhibit ideal size and charge for drug transportation. In tumour microenvironment, pPhD NPs responsively transform to full API nanotheranostics with ultra-small size and higher surface charge, which dramatically facilitate the tumour penetration and cell internalisation. pPhD NPs enable visualisation of biodistribution by near-infrared fluorescence imaging, tumour accumulation and therapeutic effect by magnetic resonance imaging. Moreover, the synergistic photothermal-, photodynamic- and chemo-therapies achieve a 100% complete cure rate on both subcutaneous and orthotopic oral cancer models. This nanoplatform with powerful delivery efficiency and versatile theranostic functions shows enormous potentials to improve cancer treatment.
nature.com
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