Dual Stimuli-Responsive Micelles for Imaging-Guided Mitochondrion-Targeted Photothermal/Photodynamic/Chemo Combination Therapy-Induced Immunogenic Cell Death

被引:5
作者
Liang, Yan [1 ,2 ]
Wang, Ping-Yu [1 ]
Liu, Ze-Yun [3 ]
Sun, Hong-Fang [1 ]
Wang, Qin [1 ]
Sun, Guang-Bin [1 ]
Zhang, Xia [1 ]
Li, You-Jie [1 ]
Xie, Shu-Yang [1 ,2 ]
机构
[1] Binzhou Med Univ, Dept Biochem & Mol Biol, Yantai 264003, Shandong, Peoples R China
[2] Qingdao Univ, Sch Basic Med, Dept Physiol & Pathophysiol, Qingdao 266071, Shandong, Peoples R China
[3] Binzhou Med Univ, Sch Int Studies, Yantai 264003, Shandong, Peoples R China
基金
中国国家自然科学基金;
关键词
immunogenic cell death; photothermal; photodynamic; chemo therapy; dual-stimuli-responsive; poly(amino acid)s micelles; imaging-guided therapy; mitochondria targeting; PHYSICOCHEMICAL PROPERTIES; NANOPARTICLES;
D O I
10.2147/IJN.S410047
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Introduction: As the special modality of cell death, immunogenic cell death (ICD) could activate immune response. Phototherapy in combination with chemotherapy (CT) is a particularly efficient tumor ICD inducing method that could overcome the defects of monotherapies.Methods: In this study, new dual stimuli-responsive micelles were designed and prepared for imaging-guided mitochondrion-targeted photothermal/photodynamic/CT combination therapy through inducing ICD. A dual-sensitive methoxy-polyethylene glycol-SS-poly (L-& gamma;-glutamylglutamine)-SS-IR780 (mPEG-SS-PGG-SS-IR780) polymer was synthesized by grafting IR780 with biodegradable di-carboxyl PGG as the backbone, and mPEG-SS-PGG-SS-IR780/paclitaxel micelles (mPEG-SS-PGG-SS-IR780/PTXL MCs) were synthesized by encapsulating PTXL in the hydrophobic core.Results: In-vivo and-vitro results demonstrated that the three-mode combination micelles inhibited tumor growth and enhanced the therapeutic efficacy of immunotherapy. The dual stimuli-responsive mPEG-SS-PGG-SS-IR780/PTXL MCs were able to facilitate tumor cell endocytosis of nanoparticles. They were also capable of promoting micelles disintegration and accelerating PTXL release. The mPEG-SS-PGG-SS-IR780/PTXL MCs induced mitochondrial dysfunction by directly targeting the mitochondria, considering the thermo-and reactive oxygen species (ROS) sensitivity of the mitochondria. Furthermore, the mPEG-SS-PGG-SS-IR780/PTXL MCs could play the diagnostic and therapeutic roles via imaging capabilities. Conclusion: In summary, this study formulated a high-efficiency nanoscale platform with great potential in combined therapy for tumors ICD.
引用
收藏
页码:4381 / 4402
页数:22
相关论文
共 46 条
[1]   Targeting immunogenic cancer cell death by photodynamic therapy: past, present and future [J].
Alzeibak, Razan ;
Mishchenko, Tatiana A. ;
Shilyagina, Natalia Y. ;
Balalaeva, Irina V. ;
Vedunova, Maria V. ;
Krysko, Dmitri V. .
JOURNAL FOR IMMUNOTHERAPY OF CANCER, 2021, 9 (01)
[2]   Photodynamic therapy with the dual-mode association of IR780 to PEG-PLA nanocapsules and the effects on human breast cancer cells [J].
Carvalho Machado, Marina Guimaraes ;
de Oliveira, Maria Alice ;
Lanna, Elisa Gomes ;
Siqueira, Raoni Pais ;
Pound-Lana, Gwenaelle ;
Branquinho, Renata Tupinamba ;
Furtado Mosqueira, Vanessa Carla .
BIOMEDICINE & PHARMACOTHERAPY, 2022, 145
[3]   A sequentially responsive cascade nanoplatform for increasing chemo-chemodynamic therapy [J].
Cheng, Xu ;
Wang, Lu ;
Liu, Liwen ;
Shi, Shuiqing ;
Xu, Yingran ;
Xu, Zhengrong ;
Wei, Bing ;
Li, Conghu .
COLLOIDS AND SURFACES B-BIOINTERFACES, 2023, 222
[4]   Augmenting Immunogenic Cell Death and Alleviating Myeloid-Derived Suppressor Cells by Sono-Activatable Semiconducting Polymer Nanopartners for Immunotherapy [J].
Ding, Mengbin ;
Zhang, Yijing ;
Yu, Ningyue ;
Zhou, Jianhui ;
Zhu, Liyun ;
Wang, Xing ;
Li, Jingchao .
ADVANCED MATERIALS, 2023, 35 (33)
[5]   Hepatoma-targeting and pH-sensitive nanocarriers based on a novel D-galactopyranose copolymer for efficient drug delivery [J].
Ding, Yuanyuan ;
Han, Jingtian ;
Tian, Baocheng ;
Han, Jian ;
Zhang, Jing ;
Zheng, Hong ;
Han, Yuzhen ;
Pei, Meishan .
INTERNATIONAL JOURNAL OF PHARMACEUTICS, 2014, 477 (1-2) :187-196
[6]   Design of Nanoparticles in Cancer Therapy Based on Tumor Microenvironment Properties [J].
Firouzabadi, Bita Mahdavi ;
Gigliobianco, Maria Rosa ;
Joseph, Joice Maria ;
Censi, Roberta ;
Di Martino, Piera .
PHARMACEUTICS, 2022, 14 (12)
[7]   A multi-national, randomised, open-label, parallel, phase III non-inferiority study comparing NK105 and paclitaxel in metastatic or recurrent breast cancer patients [J].
Fujiwara, Yasuhiro ;
Mukai, Hirofumi ;
Saeki, Toshiaki ;
Ro, Jungsil ;
Lin, Yung-Chang ;
Nagai, Shigenori E. ;
Lee, Keun Seok ;
Watanabe, Junichiro ;
Ohtani, Shoichiro ;
Kim, Sung Bae ;
Kuroi, Katsumasa ;
Tsugawa, Koichiro ;
Tokuda, Yutaka ;
Iwata, Hiroji ;
Park, Yeon Hee ;
Yang, Youngsen ;
Nambu, Yoshihiro .
BRITISH JOURNAL OF CANCER, 2019, 120 (05) :475-480
[8]   Synthesis of a versatile mitochondria-targeting small molecule for cancer near-infrared fluorescent imaging and radio/photodynamic/photothermal synergistic therapies [J].
Gao, Mingquan ;
Huang, Xie ;
Wu, Zifei ;
Wang, Liting ;
Yuan, Shaolong ;
Du, Zaizhi ;
Luo, Shenglin ;
Li, Rong ;
Wang, Weidong .
MATERIALS TODAY BIO, 2022, 15
[9]   Reduction-triggered polycyclodextrin supramolecular nanocage induces immunogenic cell death for improved chemotherapy [J].
Hu, Junfeng ;
Liang, Mengyun ;
Ye, Mengjie ;
Xu, Jiming ;
Liu, Hongmei ;
Zhang, Xiaoli ;
Sun, Wei ;
Xue, Peng ;
Kang, Yuejun ;
Xu, Zhigang .
CARBOHYDRATE POLYMERS, 2023, 301
[10]   Onion-like doxorubicin-carrying polymeric nanomicelles with tumor acidity-sensitive dePEGylation to expose positively-charged chitosan shell for enhanced cancer chemotherapy [J].
Huang, Shih-Yu ;
Yeh, Nien-Tzu ;
Wang, Tzu-Hao ;
Hsu, Tsai-Ching ;
Chin, Hao-Yang ;
Tzang, Bor-Show ;
Chiang, Wen-Hsuan .
INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 2023, 227 :925-937