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Monodisperse Nanocarriers: Novel Fabrication of Polymeric Nanoparticles for Bio-Nanotechnology

机译:单分散纳米载体:用于生物纳米技术的聚合物纳米颗粒的新型制备。

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The delivery of therapeutic, detection and imaging agents for the diagnosis and treatment of cancer patients has improved dramatically over the years with the development of nano-carriers such as liposomes, micelles, dendrimers, biomolecules, polymer particles, and colloidal precipitates. While many of these carriers have been used with great success in vitro and in vivo, each suffers from serious drawbacks with regard to stability, flexibility, or functionality. To date, there has been no general particle fabrication method available that afforded rigorous control over particle size, shape, composition, cargo and chemical structure. By utilizing the method we has designed referred to as Particle Replication In Non-wetting Templates, or PRINT, we can fabricate monodisperse particles with simultaneous control over structure (i.e. shape, size, composition) and function (i.e. cargo, surface structure). Unlike other particle fabrication techniques, PRINT is delicate and general enough to be compatible with a variety of important next-generation cancer therapeutic, detection and imaging agents, including various cargos (e.g. DNA, proteins, chemotherapy drugs, biosensor dyes, radio-markers, contrast agents), targeting ligands (e.g. antibodies, cell targeting peptides) and functional matrix materials (e.g. bioabsorbable polymers or stimuli responsive matrices). PRINT makes this possible by utilizing low-surface energy, chemically resistant fluoropolymers as molding materials and patterned substrates to produce functional, harvestable, monodisperse polymeric particles.
机译:多年来,随着纳米载体的发展,诸如脂质体,胶束,树状聚合物,生物分子,聚合物颗粒和胶体沉淀物,用于诊断和治疗癌症患者的治疗剂,检测剂和成像剂的提供已大大改善。尽管这些载体中的许多已经在体外和体内获得了巨大的成功,但是每种载体在稳定性,柔韧性或功能性方面都存在严重的缺陷。迄今为止,还没有可用的通用颗粒制造方法来对颗粒尺寸,形状,组成,货物和化学结构进行严格控制。通过使用我们设计的称为``非润湿模板中的颗粒复制''或PRINT的方法,我们可以制造单分散颗粒,同时控制结构(即形状,大小,组成)和功能(即货物,表面结构)。与其他粒子制造技术不同,PRINT精致且通用,可与各种重要的下一代癌症治疗,检测和成像剂兼容,包括各种货物(例如DNA,蛋白质,化学疗法药物,生物传感器染料,放射性标记,造影剂),靶向配体(例如抗体,细胞靶向肽)和功能性基质材料(例如可生物吸收的聚合物或刺激反应性基质)。 PRINT通过利用低表面能,耐化学腐蚀的含氟聚合物作为成型材料和带图案的基材来生产功能性,可收获的单分散聚合物颗粒,从而实现了这一目标。

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