Related Experiment Video
Updated: Jan 3, 2026

Utilizing Functional Genomics Screening to Identify Potentially Novel Drug Targets in Cancer Cell Spheroid Cultures
Published on: December 26, 2016
A systematic comparison of lipopolymers for siRNA delivery to multiple breast cancer cell lines: In vitro studies
Hamidreza Montazeri Aliabadi1, Remant Bahadur K C2, Emira Bousoik3
1Department of Biomedical and Pharmaceutical Sciences, Chapman University School of Pharmacy, Harry and Diane Rinker Health Science Campus, #211, 9401 Jeronimo Road, Irvine, CA 92618, United States; Center for Targeted Drug Delivery, Chapman University School of Pharmacy, Harry and Diane Rinker Health Science Campus, Irvine, CA 92618, United States.
Abstract:
Small interfering RNA (siRNA) therapy is a promising approach for treatment of a wide range of cancers, including breast cancers that display variable phenotypic features. To explore the general utility of siRNA therapy to control aberrant expression of genes in breast cancer, we conducted a detailed analysis of siRNA delivery and silencing response in vitro in 6 separate breast cancer cell models (MDA-MB-231, MDA-MB-231-KRas-CRM, MCF-7, AU565, MDA-MB-435 and MDA-MB-468 cells). Using lipopolymers for siRNA complexation and delivery, we found a large variation in siRNA delivery efficiency depending on the specific lipopolymer used for siRNA complexation and delivery. Some lipopolymers were effective in all cell types used in this study, indicating the possibility of universal carriers for siRNA therapy. The delivery efficiency for effective lipopolymers was not correlated with dextran uptake in the cells tested, which indicated a receptor-mediated internalization for siRNA complexes with lipopolymers, unlike fluid-phase transfer associated with dextran uptake. Consistent with this, specific inhibitors involved in clathrin- and caveolin-mediated endocytosis significantly (>50%) reduced the internalization of siRNA complexes in all cell types. Using JAK2 and STAT3 silencing in MDA-MB-231 and MDA-MB-468 cells, a general correlation between the uptake and silencing efficiency at the mRNA level was evident, but it appeared that the choice of the target rather than the cell type was more critical for consistent silencing. We conclude that siRNA therapy with lipopolymers can be undertaken in multiple breast cancer cell phenotypes with similar efficiency, indicating the general applicability of non-viral RNAi in clinical management of molecularly heterogeneous breast cancers. STATEMENT OF SIGNIFICANCE: The manuscript investigated the efficacy of siRNA carriers across multiple breast cancer cell lines. The lipopolymeric carriers were capable of delivering effective dose of siRNA to a range of breast cancer cells. Despite some differences in uptake efficiency among cell types, the mechanism of delivery was similar, with CME and CvME significantly involved in the internalization of polyplexes, while fluid-phase endocytosis was not significant. Specific target silencing was correlated to delivery efficiency, but we did notice the presence of lipopolymers that achieved high silencing with minimal siRNA delivery. Silencing specific targets in different cell types were more uniformly achieved as compared to targeting different targets in the same cells. Our studies enhance the feasibility of delivering siRNA to different types of breast cancer cells.
Insights
Small interfering RNA (siRNA) therapy shows promise for breast cancer treatment. Lipopolymeric carriers effectively deliver siRNA across various breast cancer cell types, indicating broad applicability for non-viral RNAi cancer therapies.
Area of Science:
- Biochemistry
- Molecular Biology
- Cancer Research
Background:
- Small interfering RNA (siRNA) therapy is a potential treatment for diverse cancers, including heterogeneous breast cancers.
- Effective delivery of siRNA to cancer cells is crucial for therapeutic success.
Purpose of the Study:
- To evaluate the efficacy and mechanism of lipopolymeric carriers for siRNA delivery and gene silencing in multiple breast cancer cell models.
- To determine the general applicability of siRNA therapy in molecularly diverse breast cancers.
Main Methods:
- In vitro analysis of siRNA delivery and gene silencing in six breast cancer cell lines (MDA-MB-231, MDA-MB-231-KRas-CRM, MCF-7, AU565, MDA-MB-435, MDA-MB-468).
- Utilized lipopolymers for siRNA complexation and delivery, assessing delivery efficiency and internalization mechanisms (clathrin- and caveolin-mediated endocytosis).
- Investigated JAK2 and STAT3 gene silencing in specific cell lines to correlate delivery with silencing efficiency.
Main Results:
- Lipopolymeric carriers demonstrated variable but effective siRNA delivery across different breast cancer cell types, suggesting potential universal carriers.
- siRNA complex internalization was primarily mediated by clathrin- and caveolin-dependent endocytosis, not fluid-phase uptake.
- Gene silencing efficiency correlated with siRNA uptake, with target selection being more critical than cell type for consistent silencing.
Conclusions:
- Lipopolymer-based siRNA therapy is broadly applicable to various breast cancer phenotypes.
- Non-viral RNAi holds significant potential for the clinical management of heterogeneous breast cancers.
- The study validates lipopolymeric carriers as effective tools for siRNA delivery in diverse cancer models.

