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January 26, 2026NANO0 citations

Tumor-Targeted and HSP90-Silenced Nanoplatform Combining Mild Photothermal/Chemodynamic Therapy for Breast Cancer

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WDWangda DuanQHQi HuaQSQiuze Shao

Key Points

  • The aim is to develop a targeted therapeutic nanoplatform for treating triple-negative breast cancer by silencing HSP90.
  • Constructed a folic acid-targeted multifunctional nanoplatform using MXene and CuO2.
  • Loaded the platform with heat shock protein 90 antisense oligonucleotide (HSP90 ASO).
  • Performed viability analysis on 4T1 cells under 808 nm laser irradiation.
  • FA@MXene/CuO2/ASO group showed a viability of 15.17%, indicating effective treatment.
  • The platform enhances thermal sensitivity and suppresses HSP90 expression in cancer cells.
  • Generated hydroxyl radicals in the acidic tumor environment to destruct cancer cells.

Abstract

To address the therapeutic challenges of triple-negative breast cancer (TNBC), this study constructed a folic acid-targeted multifunctional nanoplatform, FA@MXene/CuO 2 /ASO. The platform was developed by modifying MXene with FA-PEGSH and subsequently loading it with CuO 2 and heat shock protein 90 antisense oligonucleotide (HSP90 ASO). Under 808 nm laser irradiation (1.0 W/cm 2 ), viability analysis of 4T1 cells yielded the following results: FA@MXene group (39%), FA@MXene/CuO 2 group (35.26%), and FA@MXene/CuO 2 /ASO group (15.17%). Experimental results demonstrate that within the constructed folic acid-targeted nanoplatform, folic acid directs materials to tumor sites, while HSP90 ASO effectively suppresses HSP90 expression and enhances tumor thermal sensitivity. The materials generate hydroxyl radicals in the acidic tumor microenvironment and achieve cancer cell destruction through mild photothermal effects under 808 nm laser irradiation. This nanosystem exhibits excellent targeting capability, biocompatibility, and outstanding photothermal performance, providing a novel highly effective and low-toxicity therapeutic strategy for breast cancer.

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Cite This Study

Duan et al. (2026) studied this question.

synapsesocial.com/papers/69770353722626c4468e84cdhttps://doi.org/10.1142/s1793292026500670
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