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Non-ionic dendronized multiamphiphilic polymers as nanocarriers for biomedical applications

机译:非离子树状多亲聚合物作为生物医学应用的纳米载体

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摘要

A new class of non-ionic dendronized multiamphiphilic polymers is prepared from a biodegradable (AB)_n-type diblock polymer synthesized from 2-azido-1,3-propanediol (azido glycerol) and polyethylene glycol (PEG)-600 diethylester using Novozym-435 (Candida antarctica lipase) as a biocatalyst, following a well-established biocatalytic route. These polymers are functionalized with dendritic polyglycerols (G1 and G2) and octadecyl chains in different functionalization levels via click chemistry to generate dendronized multiamphiphilic polymers. Surface tension measurements and dynamic light scattering studies reveal that all of the multiamphiphilic polymers spontaneously self-assemble in aqueous solution. Cryogenic transmission electron microscopy further proves the formation of multiamphiphiles towards monodisperse spherical micelles of about 7-9 nm in diameter. The evidence from UV-vis and fluorescence spectroscopy suggests the effective solubilization of hydrophobic guests like pyrene and 1-anilinonaphthalene-8-sulfonic acid within the hydrophobic core of the micelles. These results demonstrate the potential of these dendronized multiamphiphilic polymers for the development of prospective drug delivery systems for the solubilization of poorly water soluble drugs.
机译:新型的非离子树状多亲两性聚合物是由一种可生物降解的(AB)_n型二嵌段聚合物,它是利用Novozym- 435(南极洲Candida脂肪酶)作为生物催化剂,遵循公认的生物催化路线。这些聚合物通过点击化学用树突状聚甘油(G1和G2)和十八烷基链以不同的官能度官能化,从而生成树突化的两亲聚合物。表面张力测量和动态光散射研究表明,所有多亲聚合物均在水溶液中自发自组装。低温透射电子显微镜进一步证明了多亲分子向直径约7-9 nm的单分散球形胶束的形成。紫外可见光谱和荧光光谱的证据表明,在胶束的疏水核内疏水性客体如pyr和1-苯胺基萘-8-磺酸的有效溶解。这些结果证明了这些树突化的两亲聚合物在开发用于水溶性差的药物增溶的预期药物递送系统方面的潜力。

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