Shortwave infrared imaging-guided radiosensitization using rare-earth-doped nanoparticles delivered via microneedles

Mohd Yaqub Khan1, Jen-Kun Chen2, Lokesh Agrawal3

  • 1Department of Biomedical Engineering, Chung Yuan Christian University, Taoyuan City 320314, Taiwan.

PubMed

Insights

Rare-earth-doped nanoparticles (RENPs) integrated with microneedles and SWIR imaging enhance precision radiotherapy for early-stage melanoma, improving treatment efficacy and reducing toxicity.

Area of Science:

  • Oncology
  • Nanotechnology
  • Medical Imaging

Background:

  • Melanoma poses a significant health challenge due to treatment resistance and poor prognosis in advanced stages.
  • Localized, early-stage melanoma is curable with timely intervention, but progression leads to metastasis and limited therapeutic options.
  • Conventional treatments like surgery and radiotherapy have limitations, including incomplete targeting and damage to healthy tissues.

Purpose of the Study:

  • To investigate rare-earth-doped nanoparticles (RENPs) as radiosensitizers for localized, early-stage melanoma.
  • To enhance radiotherapy precision by combining RENPs with microneedles (MNs) and shortwave infrared (SWIR) imaging.
  • To improve melanoma targeting, reduce off-target effects, and increase radiosensitization efficiency.

Main Methods:

  • Synthesized and surface-modified RENPs with Tween 20 (Tw) for aqueous compatibility.
  • Incorporated RENP-Tw into microneedles (MNs) for precise localized delivery into melanoma tissue.
  • Utilized SWIR imaging for real-time monitoring of RENP-Tw localization and distribution in vivo.

Main Results:

  • RENP-Tw/MNs demonstrated enhanced radiation-induced cell death in melanoma-bearing mice.
  • The combined approach significantly minimized systemic toxicity compared to conventional methods.
  • SWIR imaging confirmed sustained RENP-Tw luminescence at the melanoma site, indicating precise localization.

Conclusions:

  • The RENP-Tw/MNs system offers a promising strategy for precise, imaging-guided radiotherapy in early-stage melanoma.
  • This innovative approach improves melanoma specificity and radiosensitization efficiency.
  • The findings support the potential of this technology to advance localized melanoma treatment outcomes.

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