Polycationic nanocarriers attract increasing attention to the field of siRNA delivery. We investigated the self-assembly of siRNA vs pDNA with polycations, which are broadly used for nonviral gene and siRNA delivery. Although polyethyleneimine (PEI) was routinely adopted as siRNA carrier based on its efficacy in delivering pDNA, it has not been investigated yet why PEI efficiently delivers pDNA to cells but is controversially discussed in terms of efficacy for siRNA delivery. We are the first to investigate the self-assembly of PEI/siRNA vs PEI/pDNA and the steps of complexation and aggregation through different levels of hierarchy on the atomic and molecular scale with the novel synergistic use of molecular modeling, molecular dynamics simulation, isothermal titration calorimetry, and other characterization techniques. We are also the fist to elucidate atomic interactions, size, shape, stoichiometry, and association dynamics for polyplexes containing siRNA vs pDNA. Our investigation highlights differences in the hierarchical mechanism of formation of related polycation-siRNA and polycation-pDNA complexes. The results of fluorescence quenching assays indicated a biphasic behavior of siRNA binding with polycations where molecular reorganization of the siRNA within the polycations occurred at lower N/P ratios (nitrogen/phosphorus). Our results, for the first time, emphasize a biphasic behavior in siRNA complexation and the importance of low N/P ratios, which allow for excellent siRNA delivery efficiency. Our investigation highlights the formulation of siRNA complexes from a thermodynamic point of view and opens new perspectives to advance the rational design of new siRNA delivery systems.
Polycationic nanocarriers attract increasing attention to the field of siRNA delivery. We investigated the self-assembly of siRNA vs pDNA with polycations, which are broadly used for nonviral gene and siRNA delivery. Although n>an class="Chemical">polyethyleneimine (PEI) was routinely adopted as siRNA carrier based on its efficacy in delivering pDNA, it has not been investigated yet why PEI efficiently delivers pDNA to cells but is controversially discussed in terms of efficacy for siRNA delivery. We are the first to investigate the self-assembly of PEI/siRNA vs PEI/pDNA and the steps of complexation and aggregation through different levels of hierarchy on the atomic and molecular scale with the novel synergistic use of molecular modeling, molecular dynamics simulation, isothermal titration calorimetry, and other characterization techniques. We are also the fist to elucidate atomic interactions, size, shape, stoichiometry, and association dynamics for polyplexes containing siRNA vs pDNA. Our investigation highlights differences in the hierarchical mechanism of formation of related polycation-siRNA and polycation-pDNA complexes. The results of fluorescence quenching assays indicated a biphasic behavior of siRNA binding with polycations where molecular reorganization of the siRNA within the polycations occurred at lower N/P ratios (nitrogen/phosphorus). Our results, for the first time, emphasize a biphasic behavior in siRNA complexation and the importance of low N/P ratios, which allow for excellent siRNA delivery efficiency. Our investigation highlights the formulation of siRNA complexes from a thermodynamic point of view and opens new perspectives to advance the rational design of new siRNA delivery systems.
Authors: Olivia M Merkel; Meredith A Mintzer; Damiano Librizzi; Olga Samsonova; Tanja Dicke; Brian Sproat; Holger Garn; Peter J Barth; Eric E Simanek; Thomas Kissel Journal: Mol Pharm Date: 2010-08-02 Impact factor: 4.939
Authors: Linda B Jensen; Kell Mortensen; Giovanni M Pavan; Marina R Kasimova; Ditte K Jensen; Veronika Gadzhyeva; Hanne M Nielsen; Camilla Foged Journal: Biomacromolecules Date: 2010-11-10 Impact factor: 6.988
Authors: Giovanni M Pavan; Meredith A Mintzer; Eric E Simanek; Olivia M Merkel; Thomas Kissel; Andrea Danani Journal: Biomacromolecules Date: 2010-03-08 Impact factor: 6.988
Authors: Kristina Riehemann; Stefan W Schneider; Thomas A Luger; Biana Godin; Mauro Ferrari; Harald Fuchs Journal: Angew Chem Int Ed Engl Date: 2009 Impact factor: 15.336
Authors: Olivia M Merkel; Andrea Beyerle; Damiano Librizzi; Andreas Pfestroff; Thomas M Behr; Brian Sproat; Peter J Barth; Thomas Kissel Journal: Mol Pharm Date: 2009 Jul-Aug Impact factor: 4.939
Authors: Bettina Krieg; Markus Hirsch; Erik Scholz; Lutz Nuhn; Ilja Tabujew; Heiko Bauer; Sandra Decker; Andriy Khobta; Manfred Schmidt; Wolfgang Tremel; Rudolf Zentel; Kalina Peneva; Kaloian Koynov; A James Mason; Mark Helm Journal: Pharm Res Date: 2014-12-09 Impact factor: 4.200
Authors: Tobias W M Keil; Daniel P Feldmann; Gabriella Costabile; Qian Zhong; Sandro da Rocha; Olivia M Merkel Journal: Eur J Pharm Biopharm Date: 2019-08-21 Impact factor: 5.571
Authors: Anisha Shakya; Casey A Dougherty; Yi Xue; Hashim M Al-Hashimi; Mark M Banaszak Holl Journal: Biomacromolecules Date: 2015-12-11 Impact factor: 6.988