Biomimetic Human Serum Albumin Nanoparticle for Efficiently Targeting Therapy to Metastatic Breast Cancers

Lisha Liu1,2,3, Yunke Bi1,2,4, Muru Zhou3

  • 1Key Laboratory of Smart Drug Delivery, Ministry of Education, Department of Pharmaceutics, School of Pharmacy, Fudan University , 826 Zhangheng Road, Shanghai 201203, China.

Insights

This study developed targeted nanoparticles using human serum albumin and W peptide to improve paclitaxel delivery for triple-negative breast cancer (TNBC) treatment, enhancing efficacy and reducing side effects.

Area of Science:

  • Biomedical Engineering
  • Nanotechnology
  • Oncology

Background:

  • Triple-negative breast cancer (TNBC) lacks targeted therapy options, leading to poor prognosis and metastasis.
  • Paclitaxel (PTX) is a first-line treatment but suffers from low solubility and nonspecific accumulation, limiting its efficacy.
  • Developing novel drug delivery systems is crucial to enhance PTX's therapeutic potential for TNBC.

Purpose of the Study:

  • To enhance the chemotherapeutic potency of paclitaxel (PTX) for TNBC treatment.
  • To improve the stability and targeting efficiency of PTX-loaded nanoparticulate drug carriers.
  • To develop a redox-responsive, actively targeted nanoparticle system for improved TNBC therapy.

Main Methods:

  • Paclitaxel (PTX) was incorporated into human serum albumin (HSA) nanoparticles (HSA-PTX NP) using a disulfide reduction method.
  • W peptide was conjugated to HSA-PTX NP to create Wpep-HSA-PTX NP for active targeting.
  • Characterization included nanoparticle size, drug-loading content, entrapment efficiency, in vitro drug release, cellular uptake, and in vivo antitumor efficacy.

Main Results:

  • Wpep-HSA-PTX NP exhibited a spherical structure (118 nm) with 9.87% drug-loading and 86.3% entrapment efficiency.
  • Redox-responsive PTX release was observed, with enhanced cellular uptake and improved in vitro antiproliferation and antitube formation effects.
  • Wpep-HSA-PTX NP demonstrated superior pharmacokinetic profiles, tumor homing, pro-apoptotic effects, and reduced tumor burden compared to controls.

Conclusions:

  • Wpep-HSA-PTX NP represents a promising strategy to overcome the limitations of current TNBC therapies.
  • The developed nanoparticle system enhances PTX stability, targeting, and therapeutic efficacy.
  • This study provides a proof of concept for actively targeted HSA nanoparticles in combating ineffective TNBC treatments.