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Bioimpacts of nanoparticle size: why it matters?

机译:纳米尺寸的生物影响:为什么重要?

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During the last two decades, applications of nanotechnology are delivered to benefit the human society. The fact is that various nanomaterials are able to be tailor made to achieve desired properties. In biomedical field, nanotechnology has created great excitements to advance both diagnosis and therapy areas a?? the field so-called nanomedicines in different forms of nanoparticles (NPs) and nanosystems (NSs). It is noteworthy to mention NPs/NSs do not act similarly in the biological milieu, in which their biological behaviors/impacts varies with size, morphology, and physicochemical characteristics. On the other hand, nanomedicines impacts on biological systems seem to be influenced by its possible interaction(s) with different bioelements of cell membrane, in particular the endocytic pathway(s) by which NPs/NSs can be internalized and localized. This latter phenomenon is influenced by membrane viscoelastic property, polymerization/depolymerization of cytoskeletal system, and the particle specification itself. Among all other properties of NPs/NSs, as shown by various researchers, the size is an important parameter in the fate of the particle. Accordingly, in-depth efforts to unravel the size dependent effects of nanomedicins can provide insights to design and develop more efficacious NSs with greater benefits and lower side effects. This editorial aims to highlight some important aspects of size dependent impacts NPs/NSs.
机译:在过去的二十年中,纳米技术的应用被交付给人类社会。事实是,可以定制各种纳米材料以获得所需的性能。在生物医学领域,纳米技术为推动诊断和治疗领域的发展带来了极大的刺激。纳米粒子(NPs)和纳米系统(NSs)形式不同的领域所谓的纳米药物。值得注意的是,NPs / NSs在生物学环境中的作用不同,其生物学行为/影响随大小,形态和理化特性而变化。另一方面,纳米药物对生物系统的影响似乎受到其与细胞膜不同生物元素的可能相互作用的影响,尤其是可以内化和定位NP / NS的内吞途径。后一种现象受膜粘弹性,细胞骨架系统的聚合/解聚以及颗粒本身的规格影响。 NPs / NSs的所有其他特性中,正如各种研究人员所表明的那样,大小是决定粒子命运的重要参数。因此,深入研究纳米药物的大小依赖性作用的努力可以提供洞察力,以设计和开发具有更大益处和更低副作用的更有效的NS。这篇社论旨在强调与规模有关的影响NP / NS的一些重要方面。

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