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The nanobig rod class of gold nanorods: Optimized dimensions for improved in vivo therapeutic and imaging efficacy

机译:金纳米棒的nanobig棒类:优化尺寸以提高体内治疗和成像功效

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Currently, gold nanorods can be synthesized in a wide range of sizes. However, for the intended biological applications gold nanorods with approximate dimensions 50 nm × 15 nm are used. We investigate by computer simulation the effect of particle dimensions on the optical and thermal properties in the context of the specific applications of photoacoustic imaging. In addition we discuss the influence of particle size in overcoming the following biophysical barriers when administrated in vivo: extravasation, avoidance of uptake by organs of the reticuloendothelial system, penetration through the interstitium, binding capability and uptake by the target cells. Although more complex biological influences can be introduced in future analysis, the present work illustrates that larger gold nanorods, designated by us as 'nanobig rods', may perform better at meeting the requirements for successful in vivo applications compared to their smaller counterparts, which are conventionally used.
机译:当前,金纳米棒可以以各种尺寸合成。但是,对于预期的生物学应用,使用尺寸约为50 nm×15 nm的金纳米棒。我们通过计算机模拟研究在光声成像的特定应用的上下文中粒子尺寸对光学和热学性质的影响。另外,我们讨论了在体内给药时粒径对克服以下生物物理屏障的影响:外渗,避免网状内皮系统器官摄取,通过间质的渗透,结合能力和靶细胞摄取。尽管可以在未来的分析中引入更复杂的生物学影响,但目前的工作表明,与较小的同类金纳米棒相比,被我们称为“纳米大棒”的较大金纳米棒在满足成功的体内应用要求方面可能表现更好。常规使用。

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