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壳聚糖-丙烯酸/多壁碳纳米管复合材料的合成及其用于从中子辐照钛靶中分离放射性钪的治疗诊断。

Synthesis of chitosan-acrylic acid/multiwalled carbon nanotubes composite for theranostic Sc separation from neutron irradiated titanium target.

机构信息

Radioisotopes Production Facility (RPF), Second Research Reactor (ETRR-2) and Labeled Compounds Department, Hot Labs Center, Atomic Energy Authority, P.O. Box 13759, Cairo, Egypt.

Radioisotopes Production Facility (RPF), Second Research Reactor (ETRR-2) and Labeled Compounds Department, Hot Labs Center, Atomic Energy Authority, P.O. Box 13759, Cairo, Egypt.

出版信息

Int J Biol Macromol. 2020 Nov 15;163:79-86. doi: 10.1016/j.ijbiomac.2020.06.249. Epub 2020 Jun 27.

Abstract

A simple and efficient separation method of carrier-free Sc from neutron irradiated titanium target using a novel chitosan-acrylic acid/multiwalled carbon nanotubes (CS-AA/MWCNTs) composite was established. The synthesis of the CS-AA/MWCNTs composite was achieved using gamma radiation-induced template polymerization. The grafting efficiency (GE%) of AA on CS onto the surface of f-MWCNTs reached a maximum of~84% under the optimized conditions (30 wt% CS, 1.0 wt% AA, 0.15 wt% f-MWCNTs, >0.2 wt% N,N'-Methylenebisacrylamide (NMBA), and irradiation dose ~25 kGy). Different analyses (FT-IR, SEM, TGA and DTA) were examined for confirming the structural morphology and mechanical properties of the new synthesized composite. Interestingly, the CS-AA/MWCNTs composite depicted a selective adsorption of Sc(III) rather than Ti(IV) ions at pH 5 with adsorption efficiency of ~93.93%. The ionic exchange separation of no-carrier-added (NCA)Sc(III) from irradiated TiO target on CS-AA/MWCNTs composite packed column efficiently eluted Sc(III) by 91 ± 0.8% using 1 M HCl solution. The quality control tests (radionuclidic, radiochemical, and chemical purities) for the eluted Sc(III) clarified its high purity and validity for cancer theranostics.

摘要

采用一种新型壳聚糖-丙烯酸/多壁碳纳米管(CS-AA/MWCNTs)复合材料,建立了一种从中子辐照钛靶中简单高效分离无载体 Sc 的方法。通过γ辐射诱导模板聚合合成了 CS-AA/MWCNTs 复合材料。在优化条件下(30wt%CS、1.0wt%AA、0.15wt%f-MWCNTs、>0.2wt%N,N'-亚甲基双丙烯酰胺(NMBA)和辐照剂量25kGy),AA 在 CS 上接枝到 f-MWCNTs 表面的接枝效率(GE%)达到84%。通过不同的分析(FT-IR、SEM、TGA 和 DTA)证实了新合成复合材料的结构形态和机械性能。有趣的是,CS-AA/MWCNTs 复合材料在 pH 5 时对 Sc(III)离子表现出选择性吸附,而不是 Ti(IV)离子,吸附效率约为 93.93%。无载体添加(NCA)Sc(III)从辐照 TiO2 靶在 CS-AA/MWCNTs 复合填充柱上的离子交换分离,使用 1M HCl 溶液有效地洗脱了 91±0.8%的 Sc(III)。对洗脱的 Sc(III)进行质量控制测试(放射性核素、放射化学和化学纯度),证明其具有高纯度和用于癌症治疗的有效性。

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