首页> 外文期刊>Journal of biomedical nanotechnology >Preliminary Evaluation of a ~(99m)Tc Labeled Hybrid Nanoparticle Bearing a Cobalt Ferrite Core: In Vivo Biodistribution
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Preliminary Evaluation of a ~(99m)Tc Labeled Hybrid Nanoparticle Bearing a Cobalt Ferrite Core: In Vivo Biodistribution

机译:〜(99m)Tc标记的带有钴铁氧体磁芯的杂化纳米颗粒的初步评估:体内生物分布。

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Magnetic nanoparticles have become important tools for imaging a wide range of diseases, improving drug delivery and applying hyperthermic treatment. Iron oxide based nanoparticles have been widely examined, unlike cobalt ferrite based ones. Herein, monodisperse and stable CoFe_2O_4 nanoparticles have been produced, coated and further stabilized using ethyl 12-(hydroxyamino)-12- oxododecanoate, poly(lactic-co-glycolic acid) and bovine serum albumin. The final product, NBRh1, was fully characterized and has been directly radiolabeled with ~(99m)Tc using SnCl_2 as the reducing agent in high yields. In vitro stability and hyperthermic properties of ~(99m)Tc-NBRh1 were encouraging for further application in low frequencies hyperthermia and biomagnetic applications. In vivo evaluation followed after injection in healthy mice. The planar and SPECT imaging data as well as the biodistribution results were in accordance, showing high liver and spleen uptake as expected starting almost immediately after administration. In conclusion the preliminary results for nanoparticles bearing a cobalt ferrite core justify further investigations towards potential hyperthermic applications, drug transportation and liver or spleen imaging.
机译:磁性纳米粒子已成为重要的工具,可用于对各种疾病进行成像,改善药物输送并进行高温治疗。与基于钴铁氧体的纳米颗粒不同,已广泛研究了基于氧化铁的纳米颗粒。在此,已经制备了单分散且稳定的CoFe_2O_4纳米颗粒,使用12-(羟基氨基)-12-氧十二烷酸乙酯,聚(乳酸-共-乙醇酸)乙酯和牛血清白蛋白对其进行了涂覆和进一步稳定化。最终产物NBRh1已得到充分表征,并已使用SnCl_2作为还原剂以〜(99m)Tc直接进行了放射性标记,产率很高。 〜(99m)Tc-NBRh1的体外稳定性和高温特性为进一步应用在低频高温和生物磁学应用中鼓舞。在健康小鼠中注射后进行体内评估。平面和SPECT成像数据以及生物分布结果均一致,显示在给药后几乎立即开始,肝和脾的摄取量就很高。总之,带有钴铁氧体核的纳米颗粒的初步结果证明了对潜在的高温应用,药物运输以及肝或脾成像的进一步研究的合理性。

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