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Polymalic Acid-based Nano Biopolymers for Targeting of Multiple Tumor Markers: An Opportunity for Personalized Medicine?
Published on: June 13, 2014
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.
Abstract:
Triple-negative breast cancers (TNBCs), devoid of hormone receptors and human epidermal growth-factor receptor-2/Neu expression, bring about poor prognosis and induce a high rate of systematic metastases. The ineffectiveness of current therapies on TNBCs could be attributed to the lack of efficient targeted therapy. Paclitaxel (PTX) is considered one of first-line chemotherapeutics for TNBC treatment but, due to its low aqueous solubility and nonspecific accumulation, results in poor antitumor efficacy. The present study is aimed at enhancing the chemotherapeutic potency of PTX by improving the stability and targeting efficiency of PTX-loaded nanoparticulate drug carriers. Here, PTX was incorporated in nontoxic and endogenous material, human serum albumin (HSA), via an innovative disulfide reduction method to construct HSA-based PTX nanoparticle (HSA-PTX NP) to not only realize redox-responsive drug release but also improve in vivo stability. Besides, W peptide was selected as a target ligand to be conjugated with HSA-PTX NP for endowing active targeting ability. The resulting Wpep-HSA-PTX NP possessed a spherical structure (118 nm), 9.87% drug-loading content, and 86.3% entrapment efficiency. An in vitro drug release test showed that PTX release from Wpep-HSA-PTX NP was of a redox-responsive manner. Furthermore, cellular uptake of Wpep-HSA-PTX NP was significantly enhanced, exhibiting the improved antiproliferation and antitube formation effects of PTX in vitro. In comparison with those commercial formulations and conventional HSA NP, Wpep-HSA-PTX NP exhibited better pharmacokinetic behaviors and tumor homing characteristics. The antitumor efficacy of Wpep-HSA-PTX NP was further confirmed by the strong pro-apoptotic effect and reduced tumor burden. In a word, this evidence highlighted the proof of concept for Wpep-HSA NP as a promising conqueror to the ineffectiveness of TNBC therapy.
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.

