PLGA公司
小干扰RNA
化学
人口
生物物理学
基因沉默
转染
体外
生物化学
生物
医学
环境卫生
基因
作者
Danielle Campiol Arruda,Anne-Marie Lachagès,Hélène Demory,Guillaume Escriou,René Laï-Kuen,Pierre‐Yves Dugas,Céline Hoffmann,Stéphanie Bessoles,Guillaume Sarrabayrouse,Ângelo Malachias,Stéphanie Finet,Pedro Lana Gastelois,W. A. A. Macedo,Armando Silva-Cunha,Pascal Bigey,Virginie Escriou
标识
DOI:10.1016/j.jconrel.2022.08.030
摘要
Vectorized small interfering RNAs (siRNAs) are widely used to induce gene silencing. Among the delivery systems used, lipid-based particles are the most effective. Our objective was the development of novel lipid-polymer hybrid nanoparticles, from lipoplexes (complexes of cationic lipid and siRNAs), and poly (lactic-co-glycolic acid) (PLGA), using a simple modified nanoprecipitation method. Due to their morphology, we called these hybrid nanoparticles Spheroplexes. We elucidated their structure using several physico-chemical techniques and showed that they are composed of a hydrophobic PLGA matrix, surrounded by a lipid envelope adopting a lamellar structure, in which the siRNA is complexed, and they retain surface characteristics identical to the starting nanoparticles, i.e. lipoplexes siRNA. We analyzed the composition of the particle population and determined the final percentage of spheroplexes within this population, 80 to 85% depending on the preparation conditions, using fluorescent markers and the ability of flow cytometry to detect nanometric particles (approximately 200 nm). Finally, we showed that spheroplexes are very stable particles and more efficient than siRNA lipoplexes for the delivery of siRNA to cultured cells. We administered spheroplexes contain siRNAs targeting TNF-α to mice with ulcerative colitis induced by dextran sulfate and our results indicate a disease regression effect with a response probably mediated by their uptake by macrophages / monocytes at the level of lamina propria of the colon. The efficacy of decreased level of TNF-α in vivo seemed to be an association of spheroplexes polymer-lipid composition and the specific siRNA. These results demonstrate that spheroplexes are a promising hybrid nanoparticle for the oral delivery of siRNA to the colon.
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