Targeting and repolarizing M2-like tumor-associated macrophage-mediated MR imaging and tumor immunotherapy by biomimetic nanoparticles

被引:0
|
作者
Lijuan Chong
Yao-Wen Jiang
Dongxu Wang
Pengzhao Chang
Kai Xu
Jingjing Li
机构
[1] Xuzhou Medical University,School of Medical Imaging
[2] Affiliated Hospital of Xuzhou Medical University,Department of Radiology
关键词
Biomimetic nanoparticles; Magnetic resonance imaging; Tumor-associated macrophages; Re-polarization; Immumotherapy;
D O I
暂无
中图分类号
学科分类号
摘要
Anti-tumor M1-like and pro-tumor M2-like tumor-associated macrophages (TAMs) coexist in tumor microenvironments (TME). The adverse effects of these M1/M2 subsets on tumors directly affect the current strategies to improve anti-tumor immune response. Therefore, it has attracted great attention to change the tumor immunosuppressive microenvironment by reprogramming TAMs. In this paper, we constructed biomimetic nanoparticles (HMMDN-Met@PM) targeting M2-like TAMs for macrophage re-polarization. In detail, the core of the biomimetic nanoparticles is metformin-loaded hollow mesoporous manganese dioxide nanoparticles (HMMDN-Met). Benefited from the hollow and porous structure of HMMDN, metformin, the regulator of M1/M2 adopted in this work, can be easily and widely loaded into HMMDN. Moreover, macrophage membranes were utilized for HMMDN-Met coating (HMMDN-Met@MM) to prevent the premature drug leakage and provide specific molecular recognition/TME targeting. In addition, M2 macrophage targeting peptide (M2pep) was modified on the surface of macrophage membrane to specifically deliver the drug to M2-like TAMs to promote the polarization of M2 to M1 macrophages. Through in vitro and in vivo studies, we found that the expression of surface markers and inflammatory factors CD206, Arg-1 and IL-10 of type M2 macrophages decreased, while the surface markers of type M1 macrophages and the expression of inflammatory factors CD80, TNF-α and iNOS increased, indicating the successful re-polarization of M2 macrophages and finally realizing the inhibition of tumor growth. At the same time, under the acidic and GSH conditions of tumor, HMMDN was decomposed into Mn2+, which is a contrast agent for magnetic resonance imaging, thus realizing the tracking of tumor. This work practices biomimetic nanosystem in targeted imaging and immunotherapy, paving the way for strategy designing for tumor inhibition.
引用
收藏
相关论文
共 50 条
  • [21] In vivo imaging reveals a tumor-associated macrophage-mediated resistance pathway in anti-PD-1 therapy
    Arlauckas, Sean P.
    Garris, Christopher S.
    Kohler, Rainer H.
    Kitaoka, Maya
    Cuccarese, Michael F.
    Yang, Katherine S.
    Miller, Miles A.
    Carlson, Jonathan C.
    Freeman, Gordon J.
    Anthony, Robert M.
    Weissleder, Ralph
    Pittet, Mikael J.
    SCIENCE TRANSLATIONAL MEDICINE, 2017, 9 (389)
  • [22] Curcumol Synergizes with Cisplatin in Osteosarcoma by Inhibiting M2-like Polarization of Tumor-Associated Macrophages
    Wang, Jincheng
    Jin, Jialu
    Chen, Ting
    Zhou, Qian
    MOLECULES, 2022, 27 (14):
  • [23] Aerobic glycolysis is a metabolic requirement to maintain the M2-like polarization of tumor-associated macrophages
    de-Brito, Natalia M.
    Duncan-Moretti, Julia
    da-Costa, Hayandra C.
    Saldanha-Gama, Roberta
    Paula-Neto, Heitor A.
    Dorighello, Gabriel G.
    Simoes, Rafael L.
    Barja-Fidalgo, Christina
    BIOCHIMICA ET BIOPHYSICA ACTA-MOLECULAR CELL RESEARCH, 2020, 1867 (02):
  • [24] Tumor-Associated Macrophage-Mediated Targeted Therapy of Triple-Negative Breast Cancer
    Niu, Mengmeng
    Valdes, Solange
    Naguib, Youssef W.
    Hursting, Stephen D.
    Cui, Zhengrong
    MOLECULAR PHARMACEUTICS, 2016, 13 (06) : 1833 - 1842
  • [25] Spatial targeting of tumor-associated macrophage and tumor cells with a designer nanocarrier for cancer chemo-immunotherapy
    Wang, Jun
    2017 39TH ANNUAL INTERNATIONAL CONFERENCE OF THE IEEE ENGINEERING IN MEDICINE AND BIOLOGY SOCIETY (EMBC), 2017, : 291 - 291
  • [26] AXL antibody and AXL-ADC mediate antitumor efficacy via targeting AXL in tumor-intrinsic epithelial-mesenchymal transition and tumor-associated M2-like macrophage
    Pei, Jin-peng
    Wang, Yue
    Ma, Lan-ping
    Wang, Xin
    Liu, Liang
    Zhang, Yu
    Jin, Rui
    Ren, Zhi-qiang
    Deng, Yan
    Shen, Jing-kang
    Meng, Tao
    Yu, Ker
    ACTA PHARMACOLOGICA SINICA, 2023, 44 (06) : 1290 - 1303
  • [27] AXL antibody and AXL-ADC mediate antitumor efficacy via targeting AXL in tumor-intrinsic epithelial-mesenchymal transition and tumor-associated M2-like macrophage
    Jin-peng Pei
    Yue Wang
    Lan-ping Ma
    Xin Wang
    Liang Liu
    Yu Zhang
    Rui Jin
    Zhi-qiang Ren
    Yan Deng
    Jing-kang Shen
    Tao Meng
    Ker Yu
    Acta Pharmacologica Sinica, 2023, 44 : 1290 - 1303
  • [28] Highly Sensitive Imaging of Tumor Metastasis Based on the Targeting and Polarization of M2-like Macrophages
    Yuan, Pengcheng
    Xu, Xiaodan
    Hu, Doudou
    Chen, Yong
    Fan, Jiaqi
    Yao, Shasha
    Piao, Ying
    Zhou, Zhuxian
    Shao, Shiqun
    Slater, Nigel K. H.
    Shen, Youqing
    Tang, Jianbin
    JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2023, 145 (14) : 7941 - 7951
  • [29] CD133-containing microvesicles promote cancer progression by inducing M2-like tumor-associated macrophage polarization in the tumor microenvironment of colorectal cancer
    Kim, Sang Yun
    Park, Sungyeon
    Kim, Suhyun
    Ko, Jesang
    CARCINOGENESIS, 2024, 45 (05) : 300 - 310
  • [30] Polarization of tumor-associated macrophage phenotype via porous hollow iron nanoparticles for tumor immunotherapy in vivo
    Li, Ke
    Lu, Lu
    Xue, Chencheng
    Liu, Ju
    He, Ye
    Zhou, Jun
    Xia, Zengzilu
    Dai, Liangliang
    Luo, Zhong
    Mao, Yulan
    Cai, Kaiyong
    NANOSCALE, 2020, 12 (01) : 130 - 144