4.8 Article

Tumor microenvironment pH-responsive pentagonal gold prism-based nanoplatform for multimodal imaging and combined therapy of castration-resistant prostate cancer

期刊

ACTA BIOMATERIALIA
卷 141, 期 -, 页码 408-417

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.actbio.2022.01.012

关键词

Pentagonal gold prisms; Castration-resistant prostate cancer; Combined therapy; Multimodal imaging

资金

  1. National Natural Science Foundation of China [81970656, 82072846, 81472398, 82073380, 81803094, 81701353]
  2. Sino-German Center for Research Promotion [M-0171]
  3. Innovative research team of high-level local universities in Shanghai
  4. Interdisciplinary Program of Shanghai Jiao Tong University [YG2022ZD011]

向作者/读者索取更多资源

A multifunctional nanoplatform was designed for delivering agents into the tumor microenvironment, achieving synergistic photothermal therapy/photodynamic therapy/chemical therapy, with tumor-targeting capacity and biocompatibility.
Given that there is lack of effective therapies for castration-resistant prostate cancer (CRPC), the combination of photothermal (PTT), photodynamic (PDT), and chemical therapy (CT) has emerged as a prominent strategy. Tumor-targeted delivery and controlled release of antitumor drug are key-elements of any combined therapy. Considering these important elements, we designed and constructed tumor microenvironment (TME)-activated nanoprobes (PGP/CaCO3 @IR820/DTX-HA). The CaCO3 shell could efficiently entrap the photosensitizer IR820 and the chemotherapeutic docetaxel (DTX) on the surface of pentagonal gold prisms (PGPs) to prevent elimination from the circulation, and it could act as a TME-trigger to achieve TME-responsive drug release. After modification with hyaluronic acid, PGP/CaCO3@IR820/DTX-HA was capable of synergistic TME-triggered PTT/PDT/CT and tumor-targeted delivery. Our in vitro and in vivo studies demonstrate that PGP/CaCO3 @IR820/DTX-HA could achieve synergistic antitumor effects following near-infrared (NIR)-light irradiation. In addition, using the NIR fluorescence signal from IR820 and the photoacoustic (PA) signal from PGPs, i.e., through multimodal fluorescence/photoacoustic imaging, we could monitor the in vivo distribution and excretion of PGP/CaCO3 @IR820/DTX-HA. Therefore, it can be concluded that PGP/CaCO3 @IR820/DTX-HA shows promising clinical translational potential as a treatment for CRPC. Statement of significance Utilizing pentagonal gold prisms (PGPs), we constructed a multifunctional nanoplatform (PGP/CaCO3 @IR820/DTX-HA) for effectively delivering agents into the tumor microenvironment (TME) for the diagnosis and therapy of castration-resistant prostate cancer (CRPC). The synthetic nanoplatform can satisfy TME-activated synergistic photothermal therapy (PTT)/photodynamic therapy (PDT)/chemical therapy (CT) and NIR fluorescence imaging/photoacoustic (PA) imaging. Hyaluronic acid (HA) on the surface of nanoplatform allowed the specific tumor-targeting capacity and biocompatibility. In conclusion, PGP/CaCO3 @IR820/DTX-HA could be a promising integrated nanoplatform for CRPC diagnosis and treatment. (C) 2022 Published by Elsevier Ltd on behalf of Acta Materialia Inc.

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