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An unusual role of folate in the self-assembly of heparin-folate conjugates into nanoparticles

机译:一个不寻常的叶酸的自组装的作用heparin-folate配合成纳米粒子

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Tumor targeting agents including antibodies, peptides, and small molecules, are often used to improve the delivery efficiency of nanoparticles. Despite numerous studies investigating the abilities of targeting agents to increase the accumulation of nanosized therapeutics within diseased tissues, little attention has been focused on how these ligands can affect the self-assembly of the nanoparticle's modified polymer constituents upon chemical conjugation. Here we present an actively tumor targeted nanoparticle constructed via the self-assembly of a folate modified heparin. Folate conjugation unexpectedly allowed the self-assembly of heparin, where a majority of the folate molecules (>80%) resided inside the core of the nanoparticle. The folate-heparin nanoparticles could also physically encapsulate lipophilic fluorescent dyes, enabling the use of the constructs as activatable fluorescent probes for targeted in vivo tumor imaging.
机译:肿瘤靶向制剂包括抗体,肽和小分子,常用于提高纳米颗粒的输送效率。尽管大量研究调查针对代理的能力增加积累的纳米尺度的疗法病变组织,人们却很少关注专注于如何将这些配体影响自组装纳米粒子的修改聚合物组分的化学结合。这里我们提出一个积极肿瘤靶向通过自组装的纳米构造叶酸改性肝素。竟然允许的自组装肝素,多数叶酸分子(> 80%)的核心内居住纳米颗粒。身体还可以封装亲脂性的荧光染料,使的使用结构的激活做荧光探针有针对性的体内肿瘤成像。

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