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Microwave Heating of Crystals with Gold Nanoparticlesand Synovial Fluid under SyntheticSkin Patches

机译:微波加热具有金纳米粒子的晶体合成液和滑液皮肤补丁

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摘要

Gout is a disease with elusive treatment options. Reduction of the size of l-alanine crystals as a model crystal for gouty tophi with the use of a monomode solid-state microwave was examined as a possible therapeutic aid. The effect of microwave heating on l-alanine crystals in the presence of gold nanoparticles (Au NPs) in solution and synovial fluid (SF) in a plastic pouch through a synthetic skin patch was investigated. In this regard, three experimental paradigms were employed: Paradigm 1 includes the effect of variable microwave power (5–10 W) and variable heating time (5–60 s) and Au NPs in water (20 nm size, volume of 10 μL) in a plastic pouch (1 × 2 cm2 in size). Paradigm 2 includes the effect of a variable volume of 20 nm Au NPs in a variable volume of SF up to 100 μL in a plastic pouch at a constant microwave power (10 W) for 30 s. Paradigm 3 includes the effect of constant microwave power (10 W) and microwave heating time (30 s), constant volume of Au NPs (100 μL), and variable size of Au NPs (20–200 nm) placed in a plastic pouch through a synthetic skin patch. In theseexperiments, an average of 60–100% reduction in the size ofan l-alanine crystal (initial size = 450 μm) withoutdamage to the synthetic skin or increasing the temperature of thesamples beyond the physiological range was reported.
机译:痛风是一种难以选择的治疗方法。作为一种可能的治疗辅助手段,研究了使用单模固态微波法将1-丙氨酸晶体的尺寸减小为痛风性痛风石的模型晶体。研究了在塑料袋中通过合成的皮肤贴剂在溶液中有金纳米颗粒(Au NPs)和滑液(SF)的情况下微波加热对l-丙氨酸晶体的影响。在这方面,采用了三种实验范式:范式1包括可变的微波功率(5–10 W)和可变的加热时间(5–60 s)和水中的金纳米颗粒(20 nm大小,体积为10μL)的影响。在一个塑料袋中(大小为1×2 cm 2 )。范例2包括在塑料袋中以恒定微波功率(10 W)持续30 s的可变体积的SF中可变体积的20 nm Au NPs高达100μL的影响。范例3包括恒定的微波功率(10 W)和微波加热时间(30 s),恒定体积的Au NPs(100μL)和可变大小的Au NPs(20–200 nm)的影响,该塑料袋通过合成的皮肤补丁。在这些实验中,平均尺寸减少了60–100%一个l-丙氨酸晶体(初始尺寸= 450μm),不含损坏合成皮肤或升高皮肤温度报告了超出生理范围的样品。

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