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Effect of Anesthesia on Magnetic Nanoparticle Biodistribution After Intravenous Injection

机译:麻醉对静脉注射后磁性纳米颗粒生物分布的影响

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The role of anesthesia on magnetic nanoparticle biodistribution among different organs after intravenous injection has been studied in a murine model. Animals were anesthetized by inhalation with isoflurane (0.5% in oxygen) or by intraperitoneal injection with a mixture of ketamine and xylazine. Then, monodisperse dimercaptosuccinic acid coated magnetic nanoparticles (diameter of $9.2 {rm nm} 1.2 {rm nm}$) were administered intravenously to the animals. Lung and liver tissues were collected after the particle administration and the amount of particles in each tissue was determined by alternating current magnetic susceptibility measurements. Whereas the amount of particles that reaches the liver seems not to be affected by the anesthesia used, the amount of particles that reaches the lungs for inhaled isoflurane is three times less than for the intraperitoneally injected anesthetic.
机译:已经在鼠模型中研究了麻醉对静脉内注射后不同器官之间磁性纳米粒子生物分布的作用。通过吸入异氟烷(0.5%的氧气)或通过氯胺酮和甲苯噻嗪的混合物腹膜内注射来麻醉动物。然后,静脉内施用单分散的二巯基琥珀酸涂层磁性纳米颗粒(直径 $ 9.2 {rm nm} 1.2 {rm nm} $ )给动物。颗粒给药后收集肺和肝组织,并通过交流磁化率测量确定每个组织中的颗粒量。尽管到达肝脏的微粒数量似乎不受所用麻醉的影响,但是吸入异氟烷到达肺部的微粒数量是腹腔注射麻醉剂的三倍。

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