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Iron oxide@chlorophyll clustered nanoparticles eliminate bladder cancer by photodynamic immunotherapy-initiated ferroptosis and immunostimulation.
Chin, Yu-Cheng; Yang, Li-Xing; Hsu, Fei-Ting; Hsu, Che-Wei; Chang, Te-Wei; Chen, Hsi-Ying; Chen, Linda Yen-Chien; Chia, Zi Chun; Hung, Chun-Hua; Su, Wu-Chou; Chiu, Yi-Chun; Huang, Chih-Chia; Liao, Mei-Yi.
Afiliação
  • Chin YC; Department of Photonics, National Cheng Kung University, Tainan, 70101, Taiwan.
  • Yang LX; Department of Photonics, National Cheng Kung University, Tainan, 70101, Taiwan.
  • Hsu FT; Department of Biological Science and Technology, China Medical University, Taichung, 406, Taiwan. sakiro920@mail.cmu.edu.tw.
  • Hsu CW; Division of Urology, Department of Surgery, Taipei City Hospital Zhongxing Branch, Taipei, 103, Taiwan.
  • Chang TW; Division of Urology, Department of Surgery, Taipei City Hospital Heping Fuyou Branch, Taipei, 100, Taiwan.
  • Chen HY; Department of Applied Chemistry, National Pingtung University, Pingtung, 900, Taiwan.
  • Chen LY; Nanofabrication Laboratory, Department of Electrical and Computer Engineering, University of Canterbury, Christchurch, New Zealand.
  • Chia ZC; Department of Photonics, National Cheng Kung University, Tainan, 70101, Taiwan.
  • Hung CH; Center of Applied Nanomedicine, National Cheng Kung University, Tainan, 70101, Taiwan.
  • Su WC; Center of Applied Nanomedicine, National Cheng Kung University, Tainan, 70101, Taiwan.
  • Chiu YC; Division of Urology, Department of Surgery, Taipei City Hospital Heping Fuyou Branch, Taipei, 100, Taiwan. DAM15@tpech.gov.tw.
  • Huang CC; Department of Urology, College of Medicine and Shu-Tien Urological Research Center, National Yang Ming Chiao Tung University, Taipei, 112, Taiwan. DAM15@tpech.gov.tw.
  • Liao MY; Department of Exercise and Health Sciences, University of Taipei, Taipei, 100, Taiwan. DAM15@tpech.gov.tw.
J Nanobiotechnology ; 20(1): 373, 2022 Aug 11.
Article em En | MEDLINE | ID: mdl-35953837
ABSTRACT
The escape of bladder cancer from immunosurveillance causes monotherapy to exhibit poor efficacy; therefore, designing a multifunctional nanoparticle that boosts programmed cell death and immunoactivation has potential as a treatment strategy. Herein, we developed a facile one-pot coprecipitation reaction to fabricate cluster-structured nanoparticles (CNPs) assembled from Fe3O4 and iron chlorophyll (Chl/Fe) photosensitizers. This nanoassembled CNP, as a multifunctional theranostic agent, could perform red-NIR fluorescence and change the redox balance by the photoinduction of reactive oxygen species (ROS) and attenuate iron-mediated lipid peroxidation by the induction of a Fenton-like reaction. The intravesical instillation of Fe3O4@Chl/Fe CNPs modified with 4-carboxyphenylboronic acid (CPBA) may target the BC wall through glycoproteins in the BC cavity, allowing local killing of cancer cells by photodynamic therapy (PDT)-induced singlet oxygen and causing chemodynamic therapy (CDT)-mediated ferroptosis. An interesting possibility is reprogramming of the tumor microenvironment from immunosuppressive to immunostimulatory after PDT-CDT treatment, which was demonstrated by the reduction of PD-L1 (lower "off" signal to the effector immune cells), IDO-1, TGF-ß, and M2-like macrophages and the induction of CD8+ T cells on BC sections. Moreover, the intravesical instillation of Fe3O4@Chl/Fe CNPs may enhance the large-area distribution on the BC wall, improving antitumor efficacy and increasing survival rates from 0 to 91.7%. Our theranostic CNPs not only demonstrated combined PDT-CDT-induced cytotoxicity, ROS production, and ferroptosis to facilitate treatment efficacy but also opened up new horizons for eliminating the immunosuppressive effect by simultaneous PDT-CDT.
Assuntos

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Fotoquimioterapia / Neoplasias da Bexiga Urinária / Nanopartículas / Ferroptose / Neoplasias Limite: Humans Idioma: En Ano de publicação: 2022 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Fotoquimioterapia / Neoplasias da Bexiga Urinária / Nanopartículas / Ferroptose / Neoplasias Limite: Humans Idioma: En Ano de publicação: 2022 Tipo de documento: Article