Lambert G, Fattal E, Pinto-Alphandary H, Gulik A, Couvreur P
Laboratoire de Physico-chimie, Pharmacotechnie et Biopharmacie, UMR CNRS 8612, Faculté de Pharmacie, Chatenay-Malabry, France.
Pharm Res. 2000 Jun;17(6):707-14. doi: 10.1023/a:1007582332491.
The goal of the present paper was to encapsulate oligonucleotides in a new particulate carrier in order to protect them from enzymatic degradation.
Nanocapsules with an aqueous core containing oligonucleotides were prepared by interfacial polymerization of isobutylcyanoacrylate in a W/O emulsion. Ultracentrifugation and re-suspension in water yielded a dispersion of these containing an aqueous core nanocapsules. Zeta potential measurements and quenching of fluorescence of fluorescein-bounded oligonucleotides were used to study the localization of the oligonucleotides. Oligonucleotide degradation studies were carried out in fetal calf serum.
Polydisperse nanocapsules of size ranging from 20 to 400 nm were obtained. Oligonucleotide loading did not significantly influence the zeta potential, suggesting they were located within the core of the nanocapsules. Fluorescence quenching assays confirmed this localization. When encapsulated in the nanocapsules and incubated in the presence of serum, the oligonucleotides were efficiently protected from degradation by nucleases, whereas oligonucleotides adsorbed onto nanospheres were protected less efficiently.
This paper describes, for the first time, a nanotechnology able to encapsulate oligonucleotides rather than adsorbing them at the surface of a solid support. Such a formulation has great potential for oligonucleotide delivery.
本文的目的是将寡核苷酸包裹在一种新型颗粒载体中,以保护它们免受酶降解。
通过在水包油乳液中对异丁基氰基丙烯酸酯进行界面聚合,制备了具有含水核且包载寡核苷酸的纳米胶囊。经超速离心并重新悬浮于水中后,得到了这些含水性核纳米胶囊的分散体。利用ζ电位测量和荧光素标记寡核苷酸的荧光猝灭来研究寡核苷酸的定位。在胎牛血清中进行寡核苷酸降解研究。
获得了尺寸范围为20至400nm的多分散纳米胶囊。寡核苷酸负载对ζ电位没有显著影响,表明它们位于纳米胶囊的核心内。荧光猝灭测定证实了这种定位。当包裹在纳米胶囊中并在血清存在下孵育时,寡核苷酸能有效免受核酸酶降解,而吸附在纳米球上的寡核苷酸受到的保护效率较低。
本文首次描述了一种能够包裹寡核苷酸而非将其吸附在固体载体表面的纳米技术。这种制剂在寡核苷酸递送方面具有巨大潜力。