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Positively Charged Silver Nanoparticles Threaded on Carbon Nanotube for the Efficient Delivery of Negatively Charged Biomolecules

机译:碳纳米管上带螺纹的带正电的银纳米颗粒,可有效输送带负电的生物分子

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摘要

Silver nanoparticle (Ag-NPs)-immobilized and amine-functionalized carbon nanotubes (MWCNTs), MWCNT-Ag-NH2, were easily prepared in order to develop an efficient delivery system of biomolecules without complicated processes of manufacture. For this, Ag-NPs-immobilized MWCNTs, MWCNT-Ag, were initially prepared in order to create large surface area to enable more efficient linkage with guest-molecules using pristine MWCNTs. The Ag-NPs on MWCNTs were further positively functionalized with 2-aminoethanthiol to allow ionic linkage with biomolecules. Ultimately, the positively charged delivery system proved to be highly effective for the binding capacity of bovine serum albumin (BSA) as a negatively charged model protein, when compared to that of lysozyme used as a positively charged model protein. The releasing profile of BSA was observed in almost linear pattern for about two weeks in a saline solution. This study demonstrated the potential usefulness of the pristine MWCNTs in conjunction with Ag-NPs for the selective delivery of many (negatively or positively) charged biomolecules including proteins and genes.
机译:易于制备固定有银纳米粒子(Ag-NPs)和胺官能化的碳纳米管(MWCNT)MWCNT-Ag-NH2,以便开发高效的生物分子递送系统,而无需复杂的制造过程。为此,最初制备了固定有Ag-NPs的MWCNT,即MWCNT-Ag,以产生较大的表面积,从而能够使用原始MWCNT与客体分子更有效地连接。 MWCNT上的Ag-NP被2-氨基乙硫醇进一步正官能化,以使其与生物分子发生离子键合。最终,与用作正电荷模型蛋白的溶菌酶相比,带正电荷的递送系统被证明对牛血清白蛋白(BSA)作为负电荷模型蛋白的结合能力非常有效。在盐溶液中约两周观察到BSA的释放曲线几乎呈线性。这项研究表明,原始的MWCNTs与Ag-NPs结合在一起对于选择性输送许多(带负电或带正电的)生物分子(包括蛋白质和基因)具有潜在的实用性。

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