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Size-Controlled Synthesis of Carboxyl-Functionalized Magnetite Particles: Effects of Molecular Weight of the Polymer and Aging

机译:羧基官能化磁铁矿颗粒的尺寸控制合成:聚合物分子量和老化的影响

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摘要

Magnetic particles (MPs) are of great interest in many varied applications in the fields of biotechnology, biomedicine, and environmental remediation. To accommodate different applications, size-control synthesis of MPs is of particular interest. Here, we report a simple synthesis of MPs in the range of nano to microsize (23 nm to 1.2 μm). Specifically, the particle size of MPs was tuned by the (i) molecular weight (Mw) of poly(acrylic acid) (PAA) and (ii) aging process. Three different hydrothermal procedures using different Mw of PAA were compared, namely, one-step hydrothermal, two-step hydrothermal, and coating-after hydrothermal methods. The Mw of PAA used was 1.8k, 30k, 50k, and 100k g/mol. The resulted particle sizes of the one-step hydrothermally synthesized 1.8k, 30k, 50k, and 100k MPs were 1202 ± 359, 447 ± 156, 418 ± 88, and 247 ± 34 nm, respectively, and those of the two-step ones were 23 ± 3, 100 ± 14.1, 116 ± 26, and 78 ± 6 nm, respectively. The crystal composition, ζ-potentials, magnetic properties, magnetic separation efficiencies, and protein conjugation properties were studied systematically. The results showed that MPs synthesized via one-step hydrothermal synthesis demonstrated the highest yield and the highest magnetic separation efficiency. Bovine serum albumin, lysozyme, and enhanced green fluorescent protein as protein models were successfully conjugated with the MPs, and the application of antibody-conjugated PAA-MPs for bacterial capture was demonstrated.
机译:磁性颗粒(MPs)在生物技术,生物医学和环境修复领域的许多不同应用中引起了极大兴趣。为了适应不同的应用,MP的尺寸控制合成特别受关注。在这里,我们报告了从纳米到微米(23 nm至1.2μm)范围内MP的简单合成。具体地,通过(i)聚(丙烯酸)(PAA)的分子量(Mw)和(ii)老化过程调节MP的粒度。比较了使用不同Mw的PAA的三种不同的水热程序,即一步水热法,两步水热法和涂覆后水热法。使用的PAA的Mw为1.8k,30k,50k和100k g / mol。一步水热合成的1.8k,30k,50k和100k MP的粒径分别为1202±359、447±156、418±88和247±34 nm,以及两步法的粒径分别为23±3、100±14.1、116±26和78±6 nm。系统地研究了晶体组成,ζ电势,磁性能,磁分离效率和蛋白质结合性能。结果表明,通过一步水热合成法合成的MPs具有最高的收率和最高的磁选效率。作为蛋白质模型的牛血清白蛋白,溶菌酶和增强型绿色荧光蛋白已成功与MP偶联,并证明了抗体偶联的PAA-MP在细菌捕获中的应用。

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