Theranostic nanobubble encapsulating a plasmon-enhanced upconversion hybrid nanosystem for cancer therapy
Journal
Theranostics
Journal Volume
10
Journal Issue
2
Pages
782-796
Date Issued
2020
Author(s)
Abstract
Nanobubble (NB), which simultaneously enhances ultrasound (US) images and access therapeutic platforms, is required for future cancer treatment. Methods: We designed a theranostic agent for novel cancer treatment by using an NB-encapsulated hybrid nanosystem that can be monitored by US and fluorescent imaging and activated by near-infrared (NIR) light. The nanosystem was transported to the tumor through the enhanced permeability and retention effect. The hybrid nanosystem comprised upconversion nanoparticle (UCNP) and mesoporous silica-coated gold nanorod (AuNR@mS) with the photosensitizer merocyanine 540 to realize dual phototherapy. Results: With the NIR light-triggered, the luminous intensity of the UCNP was enhanced by doping holmium ion and emitted visible green and red lights at 540 and 660 nm. The high optical density state between the UCNP and AuNR@mS can induce plasmonic enhancement to improve the photothermal and photodynamic effects, resulting in cell death by apoptosis. The nanosystem showed excellent stability to avoid the aggregation of nanoparticles during the treatment. JC-1 dye was used as an indicator of mitochondrial membrane potential to identify the mechanism of cell death. The results of in vitro and in vivo analyses confirmed the curative effect of improved dual phototherapy. Conclusion: We developed and showed the therapeutic functions of a novel nanosystem with the combination of multiple theranostic nanoplatforms that can be triggered and activated by 808 nm NIR laser and US. ? The author(s).
Subjects
gold nanorod; holmium; merocyanine; mesoporous silica nanoparticle; nanobubble; gold; merocyanine dye; nanoparticle; photosensitizing agent; pyrimidinone derivative; animal experiment; animal model; animal tissue; apoptosis; Article; cancer therapy; cell death; cell viability; controlled study; echography; fluorescence imaging; green light; in vitro study; in vivo study; light; mitochondrial membrane potential; mouse; nanoencapsulation; nonhuman; photodynamic therapy; phototherapy; photothermal therapy; red light; theranostic nanomedicine; animal; chemistry; diagnostic imaging; human; lung tumor; pathology; procedures; theranostic nanomedicine; thermotherapy; tumor cell line; Animals; Cell Death; Cell Line, Tumor; Diagnostic Imaging; Gold; Humans; Hyperthermia, Induced; Lung Neoplasms; Mice; Models, Animal; Nanoparticles; Photosensitizing Agents; Phototherapy; Pyrimidinones; Theranostic Nanomedicine
SDGs
Other Subjects
gold nanorod; holmium; merocyanine; mesoporous silica nanoparticle; nanobubble; gold; merocyanine dye; nanoparticle; photosensitizing agent; pyrimidinone derivative; animal experiment; animal model; animal tissue; apoptosis; Article; cancer therapy; cell death; cell viability; controlled study; echography; fluorescence imaging; green light; in vitro study; in vivo study; light; mitochondrial membrane potential; mouse; nanoencapsulation; nonhuman; photodynamic therapy; phototherapy; photothermal therapy; red light; theranostic nanomedicine; animal; chemistry; diagnostic imaging; human; lung tumor; pathology; procedures; theranostic nanomedicine; thermotherapy; tumor cell line; Animals; Cell Death; Cell Line, Tumor; Diagnostic Imaging; Gold; Humans; Hyperthermia, Induced; Lung Neoplasms; Mice; Models, Animal; Nanoparticles; Photosensitizing Agents; Phototherapy; Pyrimidinones; Theranostic Nanomedicine
Type
journal article