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Published on: June 13, 2014
Nature-Inspired Nanoparticles as Paclitaxel Targeted Carrier for the Treatment of HER2-Positive Breast Cancer
Celia Nieto1, Milena A Vega1, Eva Martín Del Valle1
1Chemical Engineering Department, Faculty of Chemical Sciences, University of Salamanca, 37008 Salamanca, Spain.
Abstract:
Despite the advances made in the fight against HER2-positive breast cancer, the need for less toxic therapies and strategies that avoid the apparition of resistances is indisputable. For this reason, a targeted nanovehicle for paclitaxel and trastuzumab, used in the first-line treatment of this subtype of breast cancer, had already been developed in a previous study. It yielded good results in vitro but, with the aim of further reducing paclitaxel effective dose and its side effects, a novel drug delivery system was prepared in this work. Thus, polydopamine nanoparticles, which are gaining popularity in cancer nanomedicine, were novelty loaded with paclitaxel and trastuzumab. The effectiveness and selectivity of the nanoparticles obtained were validated in vitro with different HER2-overexpressing tumor and stromal cell lines. These nanoparticles showed more remarkable antitumor activity than the nanosystem previously designed and, in addition, to affect stromal cell viability rate less than the parent drug. Moreover, loaded polydopamine nanoparticles, which notably increased the number of apoptotic HER2-positive breast cancer cells after treatment, also maintained an efficient antineoplastic effect when validated in tumor spheroids. Thereby, these bioinspired nanoparticles charged with both trastuzumab and paclitaxel may represent an excellent approach to improve current HER2-positive breast cancer therapies.
Insights
Novel polydopamine nanoparticles loaded with paclitaxel and trastuzumab show enhanced antitumor activity against HER2-positive breast cancer. This new drug delivery system reduces side effects and improves therapeutic outcomes.
Area of Science:
- Nanomedicine
- Oncology
- Biomaterials
Background:
- HER2-positive breast cancer requires less toxic therapies to overcome resistance.
- Previous nanovehicles showed promise but had limitations in reducing drug dosage and side effects.
Purpose of the Study:
- To develop a novel drug delivery system using polydopamine nanoparticles for paclitaxel and trastuzumab.
- To evaluate the effectiveness and selectivity of these nanoparticles in HER2-positive breast cancer treatment.
Main Methods:
- Loading paclitaxel and trastuzumab onto polydopamine nanoparticles.
- In vitro validation using HER2-overexpressing tumor and stromal cell lines.
- Assessment of antitumor activity and apoptosis induction in tumor spheroids.
Main Results:
- Polydopamine nanoparticles demonstrated superior antitumor activity compared to previous systems.
- The nanoparticles reduced toxicity to stromal cells compared to paclitaxel alone.
- Significant increase in apoptosis of HER2-positive breast cancer cells was observed.
Conclusions:
- Bioinspired polydopamine nanoparticles loaded with trastuzumab and paclitaxel offer a promising approach for improved HER2-positive breast cancer therapy.
- This novel system enhances efficacy while potentially minimizing side effects.
- Further development may lead to advanced treatment strategies for this cancer subtype.
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