Issue 22, 2022

Dual-responsive nano-prodrug micelles for MRI-guided tumor PDT and immune synergistic therapy

Abstract

Micelles as nanocarriers not only offer new opportunities for early diagnosis and treatment of malignant cancers but also encounter numerous barriers in the path of efficient delivery of drugs to diseased areas in the body. To address these issues, we developed a pH/GSH responsive nano-prodrug micelle (NLG919/PGA–Cys–PPA@Gd) with a high drug-loading ratio and controlled drug release performance for MRI-guided tumor photodynamic therapy (PDT) and immune synergistic therapy. Under normal conditions, theranostic nanomicelles remained stable and in a photo-quenched state. Upon accumulation in the tumor site, however, the micelles demonstrated tumor microenvironment (TME) triggered photoactive formed-PPA (a photosensitizer) and NLG919 (an indoleamine 2,3-dioxygenase (IDO) inhibitor) release because the amide bonds of PGA–Cys–PPA and the disulfide linkage of Cys were sensitive to pH and GSH, respectively. More importantly, these micelles could avoid the undesired PPA leakage in blood circulation due to the conjugation between PPA and polymers. Furthermore, the obtained micelles could also enhance the contrast of T1-weighted MRI of tumors by virtue of their high relaxivity (r1 = 29.85 mM−1 s−1). In vitro and in vivo results illustrated that the micelles had good biocompatibility and biosafety. On the basis of the efficient drug delivery strategies in PDT and IDO pathway inhibition, this intelligent dual-drug delivery system could serve as an effective approach for MRI guided combination therapy of cancer.

Graphical abstract: Dual-responsive nano-prodrug micelles for MRI-guided tumor PDT and immune synergistic therapy

Supplementary files

Article information

Article type
Paper
Submitted
20 Dec 2021
Accepted
13 Apr 2022
First published
26 Apr 2022

J. Mater. Chem. B, 2022,10, 4261-4273

Dual-responsive nano-prodrug micelles for MRI-guided tumor PDT and immune synergistic therapy

H. Guo, F. Liu, E. Liu, S. Wei, W. Sun, B. Liu, G. Sun and L. Lu, J. Mater. Chem. B, 2022, 10, 4261 DOI: 10.1039/D1TB02790E

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