4.8 Article

A Nanostrategy for Efficient Imaging-Guided Antitumor Therapy through a Stimuli-Responsive Branched Polymeric Prodrug

期刊

ADVANCED SCIENCE
卷 7, 期 6, 页码 -

出版社

WILEY
DOI: 10.1002/advs.201903243

关键词

biodegradability; branched polymers; drug delivery; stimuli-responsive; theranostic nanomedicines

资金

  1. National Natural Science Foundation of China [51873120, 51673127, 81621003]
  2. National Science and Technology Major Project of China [2017ZX09304023]
  3. Department of Science and Technology of Sichuan Province [2018JY0574, 2018HH0006]
  4. 1.3.5 Research Funds in West China Hospital of Sichuan University [ZYGD18028]
  5. Ministry of Science and Technology of the People's Republic of China [2015DFE52780]

向作者/读者索取更多资源

A stimuli-responsive polymeric prodrug-based nanotheranostic system with imaging agents (cyanine5.5 and gadolinium-chelates) and a therapeutic agent paclitaxel (PTX) is prepared via polymerization and conjugating chemistry. The branched polymeric PTX-Gd-based nanoparticles (BP-PTX-Gd NPs) demonstrate excellent biocompatibility, and high stability under physiological conditions, but they stimuli-responsively degrade and release PTX rapidly in a tumor microenvironment. The in vitro behavior of NPs labeled with fluorescent dyes is effectively monitored, and the NPs display high cytotoxicity to 4T1 cells similar to free PTX by impairing the function of microtubules, downregulating anti-apoptotic protein Bcl-2, and upregulating the expression of Bax, cleaved caspase-3, cleaved caspase-9, cleaved-PARP, and p53 proteins. Great improvement in magnetic resonance imaging (MRI) is demonstrated by these NPs, and MRI accurately maps the temporal change profile of the tumor volume after injection of NPs and the tumor treatment process is also closely correlated with the T-1 values measured from MRI, demonstrating the capability of providing real-time feedback to the chemotherapeutic treatment effectiveness. The imaging-guided chemotherapy to the 4T1 tumor in the mice model achieves an excellent anti-tumor effect. This stimuli-responsive polymeric nano-agent opens a new door for efficient breast cancer treatment under the guidance of fluorescence/MRI.

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