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磷脂囊泡表面涂层的非离子聚合物研究。

Studies on surface coating of phospholipid vesicles with a non-ionic polymer.

机构信息

The SiteDel Group, Department of Pharmacy, School of Pharmacy, University of Oslo, Norway.

The SiteDel Group, Department of Pharmacy, School of Pharmacy, University of Oslo, Norway.

出版信息

Colloids Surf B Biointerfaces. 2014 Feb 1;114:45-52. doi: 10.1016/j.colsurfb.2013.09.054. Epub 2013 Oct 6.

Abstract

Liposomes coated with polymers may have a great potential in drug delivery. In this study, adsorption of the non-ionic hydroxyethyl cellulose (HEC) onto non-charged phospholipid vesicles was investigated. Both unmodified and hydrophobically modified (HM) HEC were included in the study. Possible interactions between the liposomes and the polymers were determined by changes in the size and the size distribution. Rheo-SALS measurements were carried out to verify the successfulness of the coating process. The stability was investigated by zeta potential measurements, UV-analysis and HPTLC. Mixing unmodified HEC (Mw 90,000 and 300,000) with the liposomes yielded no increase in the particle size. HM-HEC, however, was adsorbed onto both the fluid phase egg-PC liposomes and the gel phase DPPC liposomes. The Rheo-SALS measurements confirmed the successful coating of the liposomes. Complete coating resulted in increased chemical stability of the dispersion and in addition prevented aggregation. This study has shown that the non-ionic HM-HEC can be used to form polymer coated liposomes with neutral surface charge for enhanced stability.

摘要

用聚合物包被的脂质体在药物传递方面有很大的潜力。在这项研究中,研究了非离子型羟乙基纤维素(HEC)在不带电荷的磷脂囊泡上的吸附。研究中包括未改性和疏水改性(HM)HEC。通过大小和大小分布的变化来确定脂质体和聚合物之间可能的相互作用。流变学 SALS 测量用于验证涂层过程的成功。通过zeta 电位测量、UV 分析和 HPTLC 研究了稳定性。将未改性 HEC(Mw 90,000 和 300,000)与脂质体混合不会导致粒径增加。然而,HM-HEC 被吸附到流体相的卵磷酯脂质体和凝胶相的 DPPC 脂质体上。流变学 SALS 测量证实了脂质体的成功涂层。完全涂层增加了分散体的化学稳定性,并防止了聚集。这项研究表明,非离子型 HM-HEC 可用于形成具有中性表面电荷的聚合物包被脂质体,以提高稳定性。

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