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Mono or Dual-Ligand Nanoparticles: Theoretical Study

机译:单体或双配体纳米粒子:理论研究

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Dual-ligand nanocarriers have been developed to target over-expressed receptors, such as epidermal growth factor receptors (EGFR) and folate receptors (FR), in cancer cells.The dual ligand technique has been developed to enhance nanocarrier targeting, by binding to two kinds of over-expressed receptors instead of one.This study theoretically designs the binding of dual-ligand to two types of over-expressed receptors on cancer cells.We developed molecular theory that considers van der Waals, steric, and electrostatic interactions under a decoupled self-consistent field (SCF) approach.Our developed theory determines the dual-ligand-receptor binding regulations, and it can be applied for triple-ligand nanocarriers.The developed theory shows that dual-ligand nanocarriers are more effective than two mono-ligand nanocarriers combined.Manipulating some of the environmental parameters, such as salt concentration, temperature, and pH, along with the design parameters, such as polyelectrolytes pKa, number of polymers, and their density, can improve the functionality of the therapeutic nanocarriers.Besides, the size of the targeted nanocarriers is determined in this work to an efficient binding to two or more receptors on the cancer cell.
机译:已经开发了双配体纳米载体,以靶向癌细胞中表达的受体,例如表皮生长因子受体(EGFR)和叶酸受体(FR)。已经开发了双配体技术以增强纳米载体靶向,通过结合两个各种过度表达的受体而不是一个。从理论上研究了双配体对两种癌细胞上的过度表达受体的结合。我们开发了考虑去耦下的范德华,空间和静电相互作用的分子理论自洽的领域(SCF)方法。开发理论决定了双配体 - 受体结合规定,可用于三重配体纳米载体。发达的理论表明,双配体纳米载体更有效于两种单对配体纳米载波组合。散留一些环境参数,例如盐浓度,温度和pH,以及设计参数,例如聚电解质P. Ka,聚合物的数量及其密度,可以改善治疗纳米载体的功能。基础,靶心化纳米载体的尺寸在这项工作中测定至癌细胞上的两个或更多个受体的有效结合。

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