| Literature DB >> 32812632 |
Meng Wang1, Benqing Zhou1, Lu Wang2, Feifan Zhou1, Nataliya Smith3, Debra Saunders3, Rheal A Towner3, Jun Song1, Junle Qu1, Wei R Chen2.
Abstract
Development of bioresponsive theranostic nanoparticles to enhance cancer diagnostics and control cancer metastasis is highly desirable. In this study, we developed such a bioresponsive theranostic nanoparticle for synergistic photoimmunotherapy. In particular, these nanoparticles were constructed by embedding indocyanine green (ICG) into Mn2+-doped amorphous calcium carbonate (ACC(Mn)) nanoparticles, followed by loading of the Toll-like-receptor-7 agonist imiquimod (IMQ). The IMQ@ACC(Mn)-ICG/PEG nanoparticles respond to the acidic pH of the tumor microenvironment (TME) and co-deliver ICG and IMQ into the tumor. Selective phototherapy was achieved upon activation using a near-infrared laser. In the presence of IMQ and arising from phototherapeutically treated tumor cells, tumor-associated antigens give rise to a strong antitumor immune response. Reversal of the immunosuppressive TME via H+ scavenging of the tumor through ACC nanoparticles effectively inhibits tumor metastases. Moreover, the combination of ICG and Mn2+ also serves as an advanced contrast agent for cancer multimode imaging. Overall, these bioresponsive nanoparticles provide a promising approach for cancer theranostics with promising potential for future clinical translation.Entities:
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Year: 2020 PMID: 32812632 PMCID: PMC7530098 DOI: 10.1039/d0tb01453b
Source DB: PubMed Journal: J Mater Chem B ISSN: 2050-750X Impact factor: 6.331