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Updated: Jul 20, 2025

Preparation of Neutrally-charged, pH-responsive Polymeric Nanoparticles for Cytosolic siRNA Delivery
Published on: May 2, 2019
Lipid nanoparticles for siRNA delivery in cancer treatment
Souhaila H El Moukhtari1, Elisa Garbayo1, Ane Amundarain2
1Department of Pharmaceutical Technology and Chemistry, School of Pharmacy and Nutrition, University of Navarra, C/Irunlarrea 1, 31008 Pamplona, Spain; Instituto de Investigación Sanitaria de Navarra, IdiSNA, C/Irunlarrea 3, 31008 Pamplona, Spain.
Abstract:
RNA-based therapies, and siRNAs in particular, have attractive therapeutic potential for cancer treatment due to their ability to silence genes that are imperative for tumor progression. To be effective and solve issues related to their poor half-life and poor pharmacokinetic properties, siRNAs require adequate drug delivery systems that protect them from degradation and allow intracellular delivery. Among the various delivery vehicles available, lipid nanoparticles have emerged as the leading choice. These nanoparticles consist of cholesterol, phospholipids, PEG-lipids and most importantly ionizable cationic lipids. These ionizable lipids enable the binding of negatively charged siRNA, resulting in the formation of stable and neutral lipid nanoparticles with exceptionally high encapsulation efficiency. Lipid nanoparticles have demonstrated their effectiveness and versatility in delivering not only siRNAs but also multiple RNA molecules, contributing to their remarkable success. Furthermore, the advancement of efficient manufacturing techniques such as microfluidics, enables the rapid mixing of two miscible solvents without the need for shear forces. This facilitates the reproducible production of lipid nanoparticles and holds enormous potential for scalability. This is shown by the increasing number of preclinical and clinical trials evaluating the potential use of siRNA-LNPs for the treatment of solid and hematological tumors as well as in cancer immunotherapy. In this review, we provide an overview of the progress made on siRNA-LNP development for cancer treatment and outline the current preclinical and clinical landscape in this area. Finally, the translational challenges required to bring siRNA-LNPs further into the clinic are also discussed.
Insights
Small interfering RNAs (siRNAs) show promise for cancer therapy. Lipid nanoparticles (LNPs) effectively deliver these RNA molecules, overcoming delivery challenges and advancing cancer treatment research.
Area of Science:
- Biochemistry
- Nanotechnology
- Oncology
Background:
- Small interfering RNAs (siRNAs) offer therapeutic potential for cancer by silencing genes critical for tumor growth.
- siRNAs require effective drug delivery systems to protect against degradation and ensure intracellular delivery due to poor pharmacokinetic properties.
- Lipid nanoparticles (LNPs) are a leading delivery vehicle, comprising cholesterol, phospholipids, PEG-lipids, and ionizable cationic lipids.
Conclusions:
- siRNA-LNPs are a versatile and effective platform for cancer therapy delivery.
- Advancements in LNP formulation and manufacturing support their clinical translation.
- Overcoming translational challenges is crucial for the widespread clinical adoption of siRNA-LNPs in oncology.
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