Au/Doc/Quer@PDA/A10-3.2 Nanoparticles for targeted treatment of docetaxel-resistant prostate cancer

Junjie Ye1, Qi Wu1, Qingfen Ji1

  • 1Urology Department, Lishui City People's Hospital; Postgraduate training base Alliance of Wenzhou Medical University (Lishui City People's Hospital), Lishui City, Zhejiang Province, China.

Insights

Researchers developed a novel nanoparticle drug combining docetaxel and quercetin to overcome prostate cancer resistance. This targeted therapy shows promise for improving treatment efficacy in resistant prostate cancer models.

Area of Science:

  • Biomedical Engineering
  • Nanotechnology
  • Oncology

Background:

  • Docetaxel is a primary chemotherapy for prostate cancer (PC) but faces challenges with drug resistance and specificity.
  • Developing novel therapeutics is crucial to overcome docetaxel resistance and enhance targeting in PC progression.

Purpose of the Study:

  • To synthesize and validate a novel nano-composite drug, Au/Doc/Quer@PDA/A10-3.2 nanoparticles (NPs), to combat docetaxel-resistant prostate cancer.
  • To enhance drug targeting specificity and overcome acquired resistance in PC treatment.

Main Methods:

  • Preparation of Au/Doc/Quer@PDA/A10-3.2 NPs encapsulating docetaxel and quercetin within polydopamine-coated gold nanoparticles, modified with A10-3.2 aptamer for PSMA-positive cell targeting.
  • Characterization using UV-vis, TEM, DLS, XPS, and FTIR.
  • In vitro evaluation of targeting ability, cell proliferation, apoptosis, invasion, migration, and chemo-sensitization mechanisms.
  • In vivo therapeutic efficacy assessment in a mouse model of PC.

Main Results:

  • Successful synthesis and characterization of Au/Doc/Quer@PDA/A10-3.2 NPs confirmed by various physical methods.
  • Demonstrated specific targeting of PSMA-positive PC cells (LNCaP/R) via fluorescence imaging and flow cytometry.
  • Quercetin effectively reversed docetaxel resistance in LNCaP/R cells, enhancing anti-cancer effects.
  • The novel nano-composite drug exhibited significant therapeutic efficacy in a preclinical mouse model.

Conclusions:

  • The synthesized Au/Doc/Quer@PDA/A10-3.2 NPs represent a promising strategy for overcoming docetaxel resistance in prostate cancer.
  • This novel nano-composite drug holds potential for clinical application in treating advanced and resistant forms of PC.