4.7 Article

Cascade two-stage tumor re-oxygenation and immune re-sensitization mediated by self-assembled albumin-sorafenib nanoparticles for enhanced photodynamic immunotherapy

Journal

ACTA PHARMACEUTICA SINICA B
Volume 12, Issue 11, Pages 4204-4223

Publisher

INST MATERIA MEDICA, CHINESE ACAD MEDICAL SCIENCES
DOI: 10.1016/j.apsb.2022.07.023

Keywords

Photodynamic immunotherapy; Sorafenib; Hypoxia; Tumor vessel normalization; Mitochondrial oxidative phosphorylation; Programmed death ligand-1

Funding

  1. National Natural Science Foundation of China [82003697, 21977081]
  2. Zhejiang Provincial Natural Science of Foundation of China [LZ19H180001]
  3. Wenzhou Medical University [KYYW201901]
  4. Wenzhou Science and Technology Plan Project [Y2020827]
  5. Key Laboratory of Diagnosis and Treatment of Severe HepatoPancreatic Diseases of Zhejiang Province [2018E100 08]

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This study designed and prepared nanoparticles that can enhance the efficacy of photodynamic therapy by promoting tumor re-oxygenation and immune sensitization. The results showed that these nanoparticles have potential clinical applications in inhibiting tumor growth.
As a promising modality for cancer therapy, photodynamic therapy (PDT) still acquired limited success in clinical nowadays due to the extremely serious hypoxia and immunosuppression tumor microenvironment. To ameliorate such a situation, we rationally designed and prepared cascade two-stage re-oxygenation and immune re-sensitization BSA-MHI148@SRF nanoparticles via hydrophilic and hydrophobic self-assembly strategy by using near-infrared photodynamic dye MHI148 chemically modified bovine serum albumin (BSA-MHI148) and multi-kinase inhibitor Sorafenib (SRF) as a novel tumor oxygen and immune microenvironment regulation drug. Benefiting from the accumulation of SRF in tumors, BSA-MHI148@SRF nanoparticles dramatically enhanced the PDT efficacy by promoting cascade two-stage tumor re-oxygenation mechanisms: (i) SRF decreased tumor oxygen consumption via inhibiting mitochondria respiratory. (ii) SRF increased the oxygen supply via inducing tumor vessel normalization. Meanwhile, the immunosuppression micro-environment was also obviously reversed by two-stage immune re-sensitization as follows: (i) Enhanced immunogenic cell death (ICD) production amplified by BSA-MHI148@SRF induced reactive oxygen species (ROS) generation enhanced T cell infiltration and improve its tumor cell killing ability. (ii) BSA-MHI148@SRF amplified tumor vessel normalization by VEGF inhibition also obviously reversed the tumor immune-suppression microenvironment. Finally, the growth of solid tumors was significantly depressed by such well-designed BSAMHI148@SRF nanoparticles, which could be potential for clinical cancer therapy. (C) 2022 Chinese Pharmaceutical Association and Institute of Materia Medica, Chinese Academy of Medical Sciences. Production and hosting by Elsevier B.V.

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