6533b7d4fe1ef96bd126349a
RESEARCH PRODUCT
Tackling the Limitations of Copolymeric Small Interfering RNA Delivery Agents by a Combined Experimental–Computational Approach
Maziar HeidariRaffaello PotestioKerstin Nagel-wolfrumKaloian KoynovChristoph FreidelPhilip BiehlIlja TabujewLars TebbeKalina PenevaUwe WolfrumMark HelmFelix H. Schachersubject
Small interfering RNAPolymers and PlasticsBioengineering02 engineering and technologyComputational biologyBiology010402 general chemistry01 natural sciencesVirusBiomaterialsDrug Delivery SystemsText miningMaterials ChemistryHumansComputer SimulationRNA Small Interferingbusiness.industryRNA021001 nanoscience & nanotechnology0104 chemical sciencesHEK293 CellsModels ChemicalMCF-7 Cells0210 nano-technologybusinessHeLa Cellsdescription
Despite the first successful applications of nonviral delivery vectors for small interfering RNA in the treatment of illnesses, such as the respiratory syncytial virus infection, the preparation of a clinically suitable, safe, and efficient delivery system still remains a challenge. In this study, we tackle the drawbacks of the existing systems by a combined experimental-computational in-depth investigation of the influence of the polymer architecture over the binding and transfection efficiency. For that purpose, a library of diblock copolymers with a molar mass of 30 kDa and a narrow dispersity (Đ1.12) was synthesized. We studied in detail the impact of an altered block size and/or composition of cationic diblock copolymers on the viability of each respective structure as a delivery agent for polynucleotides. The experimental investigation was further complemented by a computational study employing molecular simulations as well as an analytical description of systemic properties. This is the first report in which molecular dynamics simulations of RNA/cationic polymer complexes have been performed. Specifically, we developed and employed a coarse-grained model of the system at the molecular level to study the interactions between polymer chains and small interfering RNA. We were further able to confirm a threshold length
year | journal | country | edition | language |
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2019-11-07 | Biomacromolecules |