Anticancer activity of paclitaxel-loaded keratin nanoparticles in two-dimensional and perfused three-dimensional

Federica Foglietta1, Giulio C Spagnoli2,3, Manuele Giuseppe Muraro2

  • 1Department of Drug Science & Technology, University of Torino, Torino, Italy.

Abstract

Insights

New keratin nanoparticles (KER-NPs-PTX) effectively deliver paclitaxel (PTX) to breast cancer cells. These nanoparticles show promise in both 2D and 3D models, offering improved solubility and loading compared to albumin nanoparticles.

Area of Science:

  • Biomedical Engineering
  • Nanotechnology
  • Oncology

Background:

  • Taxanes are crucial for treating advanced breast cancer but suffer from poor solubility and high toxicity.
  • Innovative drug delivery systems are needed to improve the efficacy and reduce the side effects of taxanes.

Purpose of the Study:

  • To develop and evaluate paclitaxel (PTX)-loaded keratin nanoparticles (KER-NPs-PTX) as a novel formulation for breast cancer treatment.
  • To compare the anti-cancer activity of KER-NPs-PTX with free PTX and PTX-loaded albumin nanoparticles (HSA-NPs-PTX) in 2D and 3D breast cancer models.

Main Methods:

  • Paclitaxel (PTX) was loaded into keratin nanoparticles (KER-NPs-PTX) using a simple aggregation method.
  • The efficacy of KER-NPs-PTX was tested against human breast cancer cell lines (MCF-7 and MDA MB 231) in 2D cultures and a dynamic 3D perfused bioreactor (p3D) model.
  • Assays included cell viability, apoptosis induction, and gene expression analysis.

Main Results:

  • KER-NPs-PTX demonstrated comparable anti-cancer activity to free PTX and HSA-NPs-PTX in 2D cultures.
  • In the p3D model, KER-NPs-PTX significantly increased apoptosis in both MCF-7 and MDA MB 231 cells.
  • Gene expression analysis showed increased BAX and cleaved caspase 3 (CC3) in KER-NPs-PTX treated MCF-7 cells.

Conclusions:

  • KER-NPs-PTX exhibit enhanced water solubility and PTX-loading capacity compared to HSA-NPs-PTX.
  • This novel keratin nanoparticle formulation effectively targets breast cancer cells in both 2D and 3D culture models.
  • KER-NPs-PTX represent a promising advanced formulation for breast cancer therapy.

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