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尺寸可调的 MRI 可见氮氧自由基基磁性混合胶束的制备、稳定性及诊疗应用。

Size-tunable MRI-visible nitroxide-based magnetic mixed micelles: preparation, stability, and theranostic application.

机构信息

Graduate School of Human and Environmental Studies, Kyoto University, Kyoto 606-8501, Japan.

出版信息

Nanotechnology. 2019 May 31;30(22):224002. doi: 10.1088/1361-6528/ab0627. Epub 2019 Feb 11.

Abstract

Metal-free magnetic mixed micelles (mean diameter: 16 nm) composed of biocompatible surfactant Tween 80 and hydrophobic pyrrolidine-N-oxyl radical were prepared by mixing them in phosphate-buffered saline. The magnetic mixed micelles were characterized by dynamic light scattering and small angle neutron scattering measurements. The stability of the micelles is found to depend on the length of alkyl side chain in the nitroxide compounds and degree of unsaturation in the hydrophobic chain in the surfactant. The size of the mixed micelle can be tuned by changing the molar ratio of Tween 80 and nitroxyl radical. In view of theranostic application of the micelle, the cytotoxicity and stability in a physiological environment was investigated; the mixed micelle exhibited no cytotoxicity, high colloidal stability and high resistance towards reduction by large excess ascorbic acid. The in vitro and in vivo magnetic resonance imaging (MRI) revealed sufficient contrast enhancement in the proton longitudinal relaxation time (T ) weighted images. In addition, hydrophobic fluorophores and an anticancer drug are stably encapsulated in the mixed micelles and showed fluorescence (FL) upon reduction by ascorbic acid and cytotoxicity to cancer cells, respectively. For example, the paclitaxel-loaded mixed micelles efficiently suppressed cancer cell growth. Furthermore, they were found to give higher MRI contrast (higher r value) in vitro than the micelles without paclitaxel. The magnetic mixed micelles presented here are promising theranostic agents in nanomedicine due to their high biocompatibility and high resistivity towards reduction as well as functioning as a drug carrier in therapy and MR or FL imaging probe in diagnosis.

摘要

由生物相容性表面活性剂吐温 80 和疏水性吡咯烷-N-氧自由基混合而成的无金属磁性混合胶束(平均直径:16nm)在磷酸盐缓冲盐水中混合制备。通过动态光散射和小角中子散射测量对磁性混合胶束进行了表征。发现胶束的稳定性取决于氮氧自由基中烷基侧链的长度和表面活性剂中疏水链的不饱和度。通过改变吐温 80 和氮氧自由基的摩尔比可以调节混合胶束的尺寸。鉴于胶束的治疗应用,研究了其在生理环境中的细胞毒性和稳定性;混合胶束表现出无细胞毒性、高胶体稳定性和对大过量抗坏血酸还原的高抗性。体外和体内磁共振成像(MRI)显示质子纵向弛豫时间(T )加权图像中的对比增强足够。此外,疏水性荧光团和抗癌药物稳定地包裹在混合胶束中,并在被抗坏血酸还原时显示荧光(FL)和对癌细胞的细胞毒性。例如,载紫杉醇的混合胶束能够有效抑制癌细胞生长。此外,它们在体外表现出比不含紫杉醇的胶束更高的 MRI 对比度(更高的 r 值)。由于其高生物相容性和对还原的高抵抗力,以及在治疗中作为药物载体和在诊断中作为磁共振或荧光成像探针的功能,本文提出的磁性混合胶束是纳米医学中有前途的治疗诊断试剂。

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