首页 | 本学科首页   官方微博 | 高级检索  
     


Poly(Sarcosine) Surface Modification Imparts Stealth‐Like Properties to Liposomes
Authors:Stefan Bleher  Jonas Buck  Christian Muhl  Sandro Sieber  Sabine Barnert  Dominik Witzigmann  Jrg Huwyler  Matthias Barz  Regine Süss
Affiliation:Stefan Bleher,Jonas Buck,Christian Muhl,Sandro Sieber,Sabine Barnert,Dominik Witzigmann,Jörg Huwyler,Matthias Barz,Regine Süss
Abstract:Circulation lifetime is a crucial parameter for a successful therapy with nanoparticles. Reduction and alteration of opsonization profiles by surface modification of nanoparticles is the main strategy to achieve this objective. In clinical settings, PEGylation is the most relevant strategy to enhance blood circulation, yet it has drawbacks, including hypersensitivity reactions in some patients treated with PEGylated nanoparticles, which fuel the search for alternative strategies. In this work, lipopolysarcosine derivatives (BA‐pSar, bisalkyl polysarcosine) with precise chain lengths and low polydispersity indices are synthesized, characterized, and incorporated into the bilayer of preformed liposomes via a post insertion technique. Successful incorporation of BA‐pSar can be realized in a clinically relevant liposomal formulation. Furthermore, BA‐pSar provides excellent surface charge shielding potential for charged liposomes and renders their surface neutral. Pharmacokinetic investigations in a zebrafish model show enhanced circulation properties and reduction in macrophage recognition, matching the behavior of PEGylated liposomes. Moreover, complement activation, which is a key factor in hypersensitivity reactions caused by PEGylated liposomes, can be reduced by modifying the surface of liposomes with an acetylated BA‐pSar derivative. Hence, this study presents an alternative surface modification strategy with similar benefits as the established PEGylation of nanoparticles, but with the potential of reducing its drawbacks.
Keywords:complement activation  liposomes  pharmacokinetics  polysarcosine  surface modification
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号