...
Thursday, February 19, 2026
.
1M+
.
website counter widget
.
.
More
    Thursday, February 19, 2026
    1M+ Views
    ...
    website counter
    ...
    ...
    More

      Orchestrated Photothermal Nanoreactor Promoted Cuproptosis for Synergistic Cancer Therapy Through Glutathione Depletion and Gene Regulation – Research

      Orchestrated Photothermal Nanoreactor Promoted Cuproptosis for Synergistic Cancer Therapy Through Glutathione Depletion and Gene Regulation – Research


      Cuproptosis, a novel form of copper-dependent cell death, holds great promise for cancer therapy. However, the induction of cuproptosis is challenged by its reliance on copper ions and the high levels of glutathione (GSH) in the tumor microenvironment. In this study, an all-in-one nanoparticle, ICG-Cu-ASO was developed for triple-negative breast cancer (TNBC) treatment, integrating dual phototherapy with a copper-mediated metabolic disruption strategy via a cascading mechanism. Under NIR irradiation, indocyanine green (ICG) enhances cuproptosis through generating reactive oxygen species to deplete GSH, while antisense oligonucleotides (ASO) targeting HSP90 silence heat stress protection to amplify mild photothermal effects. In addition, excess Cu2+ also reacts with GSH, reducing its inhibitory effect on cuproptosis. The pH-responsive nanoparticle releases components in the tumor niche and features excellent photothermal conversion efficiency for spatiotemporal dual therapy control. Leveraging TNBC cells’ high copper metabolic dependence, this strategy selectively induces cancer cell death with minimal normal tissue injury. The results of this study show significant tumor suppression and low systemic toxicity. In summary, our research introduces an innovative metabolic-targeted nanotherapeutic approach, elucidating the synergistic effects between photothermal therapy and copper-mediated mechanisms, which holds potential as a promising strategy for TNBC treatment.


      Keywords:

      cuproptosis; gene regulations; hsp90; photothermal therapies; self‐assembly.



      Read more about this post…

      Credits: Source

      Disclaimer

      [td_block_social_counter facebook="/groups/facultypositions" twitter="Drafs007" style="style1" tdc_css="eyJhbGwiOnsibWFyZ2luLWJvdHRvbSI6IjUwIiwiZGlzcGxheSI6IiJ9LCJsYW5kc2NhcGUiOnsibWFyZ2luLWJvdHRvbSI6IjQwIiwiZGlzcGxheSI6IiJ9LCJsYW5kc2NhcGVfbWF4X3dpZHRoIjoxMTQwLCJsYW5kc2NhcGVfbWluX3dpZHRoIjoxMDE5LCJwb3J0cmFpdCI6eyJtYXJnaW4tYm90dG9tIjoiMzAiLCJkaXNwbGF5IjoiIn0sInBvcnRyYWl0X21heF93aWR0aCI6MTAxOCwicG9ydHJhaXRfbWluX3dpZHRoIjo3NjgsInBob25lIjp7Im1hcmdpbi1ib3R0b20iOiIzNSIsImRpc3BsYXkiOiIifSwicGhvbmVfbWF4X3dpZHRoIjo3Njd9" custom_title="Join us" manual_count_facebook="28500" manual_count_twitter="400" open_in_new_window="y" manual_count_youtube="600" youtube="/@scholarships4all"]

      Local Weather

      New York
      overcast clouds
      3.9 ° C
      4.6 °
      2.7 °
      69 %
      4.6kmh
      100 %
      Fri
      4 °
      Sat
      6 °
      Sun
      5 °
      Mon
      2 °
      Tue
      0 °

      Web Hits

      website counter

      Visitor Count

      hit counter

      In-Service

      AF.com AI Powered 7-years

      Latest Posts

      spot_imgspot_img

      Textbooks Challenged: Scientists Discover New Mechanism of Cell Division – Science News

      Scientists have uncovered a new way embryonic cells divide when conventional mechanisms fail. Cell division underpins all forms of life, but scientists have long...

      Related articles

      Leave a reply

      Please enter your comment!
      Please enter your name here

      spot_imgspot_img
      Privacy Overview

      This website uses cookies so that we can provide you with the best user experience possible. Cookie information is stored in your browser and performs functions such as recognising you when you return to our website and helping our team to understand which sections of the website you find most interesting and useful.