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Updated: Jan 12, 2026

Polymalic Acid-based Nano Biopolymers for Targeting of Multiple Tumor Markers: An Opportunity for Personalized Medicine?
Published on: June 13, 2014
Development of Trastuzumab-coupled, siRNA encapsulating mPolyplexes targeting HER2 overexpressing cancer cells
Joschka T Müller1, Salvatore Caruso2, Anny Nguyen1
1Department of Pharmacy, Ludwig-Maximilians-University Munich, Butenandtstrasse 5-13, Haus B, 81377 Munich, Germany.
Abstract:
Over the past decades, significant advancements have been made in various medical fields; however, ovarian cancer (OC) remains inadequately addressed, predominantly relying on relatively toxic cytostatic treatments. In this study, we applied newly developed poly(β-amino) esters (PBAEs) for siRNA delivery. As recent literature has shown, the introduction of a hydrophobic, unsaturated fatty acid together with polycationic spermines as the PBAE side chains are leading to a favourable transfection efficiency, and the resulting materials form a unique class of micelleplexes, termed micelle-embedded polyplexes (mPolyplexes). Here, such mPolyplexes were modified post-particle formation with the approved monoclonal antibody Trastuzumab for HER2 targeting, as supported by a receptor binding analysis through fluorescence shift assay. Physicochemical analysis revealed suitable hydrodynamic diameters of modified mPolyplexes, as determined by dynamic light scattering. Improved cellular uptake when targeted with Trastuzumab was optimized by applying Design of Experiment (DoE). We demonstrated superior gene silencing efficiency of EGFR as well as PLK1, both involved in OC progression, with knockdown values exceeding 82% and 70%, respectively. These findings were corroborated by a relevant cell migration assay. The macroscopic impact after PLK1 silencing on epithelial-mesenchymal transition (EMT) was visualized using confocal microscopy. This work addresses critical questions in the field of ovarian cancer therapy and confirms the suitability of siRNA encapsulating PBAE nanocarriers as promising non-viral vectors.
Insights
New nanocarriers effectively deliver siRNA to target ovarian cancer (OC) cells, silencing key genes like EGFR and PLK1. This approach shows promise as a less toxic alternative to traditional chemotherapy for OC treatment.
Area of Science:
- Biotechnology
- Nanomedicine
- Oncology
Background:
- Ovarian cancer (OC) treatment relies on toxic cytostatic therapies.
- There is a need for novel, effective, and less toxic therapeutic strategies for OC.
Purpose of the Study:
- To develop and evaluate novel poly(β-amino) esters (PBAEs) as nanocarriers for siRNA delivery in OC.
- To enhance targeted delivery using Trastuzumab for HER2-positive OC cells.
- To assess the gene silencing efficacy of these nanocarriers against key OC progression genes.
Main Methods:
- Synthesis and characterization of micelle-embedded polyplexes (mPolyplexes) using PBAEs.
- Modification of mPolyplexes with Trastuzumab for HER2 targeting.
- Optimization of cellular uptake using Design of Experiments (DoE).
- Evaluation of gene silencing efficiency for EGFR and PLK1 via siRNA delivery.
- Assessment of cell migration and epithelial-mesenchymal transition (EMT) impact.
Main Results:
- Trastuzumab-modified mPolyplexes showed efficient HER2 targeting and improved cellular uptake.
- Significant gene silencing of EGFR (>82%) and PLK1 (>70%) was achieved.
- Reduced cell migration and visualized impact on EMT were observed after PLK1 silencing.
Conclusions:
- PBAE-based mPolyplexes are effective non-viral vectors for siRNA delivery in OC.
- Trastuzumab-targeted nanocarriers offer a promising strategy for advanced OC therapy.
- This approach demonstrates potential for improved OC treatment with reduced toxicity.

