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Parameters and characteristics governing cellular internalization and trans-barrier trafficking of nanostructures

机译:控制细胞内在化和跨结构纳米结构的参数和特征

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摘要

Cellular internalization and trans-barrier transport of nanoparticles can be manipulated on the basis of the physicochemical and mechanical characteristics of nanoparticles. Research has shown that these factors significantly influence the uptake of nanoparticles. Dictating these characteristics allows for the control of the rate and extent of cellular uptake, as well as delivering the drug-loaded nanosystem intra-cellularly, which is imperative for drugs that require a specific cellular level to exert their effects. Additionally, physicochemical characteristics of the nanoparticles should be optimal for the nanosystem to bypass the natural restricting phenomena of the body and act therapeutically at the targeted site. The factors at the focal point of emerging smart nanomedicines include nanoparticle size, surface charge, shape, hydrophobicity, surface chemistry, and even protein and ligand conjugates. Hence, this review discusses the mechanism of internalization of nanoparticles and ideal nanoparticle characteristics that allow them to evade the biological barriers in order to achieve optimal cellular uptake in different organ systems. Identifying these parameters assists with the progression of nanomedicine as an outstanding vector of pharmaceuticals.
机译:纳米粒子的细胞内在化和跨屏障运输可以根据纳米粒子的理化和机械特性进行控制。研究表明,这些因素显着影响纳米颗粒的吸收。决定这些特征允许控制细胞摄取的速率和程度,以及在细胞内递送载有药物的纳米系统,这对于需要特定细胞水平发挥其作用的药物是必不可少的。另外,纳米粒子的理化特性对于纳米系统应该是最佳的,以绕过人体的自然限制性现象并在目标部位进行治疗。新兴智能纳米药物关注的焦点包括纳米颗粒大小,表面电荷,形状,疏水性,表面化学,甚至蛋白质和配体结合物。因此,这篇综述讨论了纳米粒子的内在化机制和理想的纳米粒子特性,这些特性使它们能够逃避生物屏障,从而在不同器官系统中实现最佳的细胞摄取。识别这些参数有助于纳米医学作为药物的杰出载体发展。

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