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Effects of multiwalled carbon nanotube surface modification and purification on bovine serum albumin binding and biological responses

机译:多壁碳纳米管表面修饰和纯化对牛血清白蛋白结合及生物学响应的影响

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摘要

The potential diagnostic and therapeutic applications such as drug delivery of multi-walled carbon nanotubes (MWCNTs) are being increasingly explored due to their unique mechanical, chemical and biological properties. Carboxylation of MWCNTs has been widely used to improve the solubility in aqueous systems, and for further functionalization with biologically active moieties. Purity of carboxylated MWCNTs is of great importance in nanomedicine. An important consideration is that oxidation debris is generated during the process of carboxylation, which can be removed by base washing. We hypothesized that surface modification as well as further purification by debris removal may alter physicochemical properties of MWCNTs and their ability to bind proteins. In this study, we utilized pristine MWCNT carboxylated MWCNTs (F-MWCNTs) and base-washed carboxylated MWCNTs (BW-F-MWCNTs) to examine formation of a bovine serum albumin (BSA) protein corona and impact on biological responses. We found that carboxylation increased the capability of F-MWCNTs to bind BSA, and base washing further increased this binding by 41% implying that purification of F-MWCNTs is an important consideration in biological applications. The BSA protein corona decreased the hydrodynamic size of MWCNTs by nearly 50% because the coating improved colloidal behavior. The effect was significantly less pronounced for F-MWCNTs and BW-F-MWCNTs because they were highly dispersible to begin with. Functionalization increased cellular uptake by both rat aortic endothelial cells (RAEC) and macrophage-like murine cells (RAW264.7), while base washing showed results similar to the functionalized analog. Interestingly, BSA binding downregulated mRNA levels of interleukin-6 (IL-6) and heme oxygenase 1 (Hmox1) in RAEC cells but upregulated the expression of IL-6 and Hmox1 in RAW264.7 cells, indicating the dependence of cell types in biological responses to MWCNTs. Overall, our study demonstrated that surface modification as well as further purification impacted the interaction of MWCNTs with proteins and subsequent cellular responses. Interestingly, while the corona associated with the F-MWCNTs and BW-F-MWCNTs were significantly different, their respective cellular uptake and biological responses were similar. This implied that surface functionalization played a more important role than surface corona.
机译:由于其独特的机械,化学和生物学特性,越来越多地探索诸如多壁碳纳米管(MWCNT)的药物输送等潜在的诊断和治疗应用。 MWCNT的羧化已被广泛用于改善在水性体系中的溶解度,并用于进一步利用生物活性部分进行功能化。羧化MWCNT的纯度在纳米医学中非常重要。一个重要的考虑因素是在羧基化过程中会产生氧化碎片,可以通过碱洗将其清除。我们假设表面改性以及通过去除碎片进一步纯化可能会改变MWCNT的理化性质及其结合蛋白的能力。在这项研究中,我们利用原始的MWCNT羧化的MWCNTs(F-MWCNTs)和碱洗的羧化的MWCNTs(BW-F-MWCNTs)来检查牛血清白蛋白(BSA)蛋白电晕的形成及其对生物学反应的影响。我们发现羧化增加了F-MWCNTs结合BSA的能力,碱洗进一步使这种结合增加了41%,这意味着F-MWCNTs的纯化是生物学应用中的重要考虑因素。 BSA蛋白电晕将MWCNT的流体动力学尺寸降低了近50%,因为涂层改善了胶体行为。对于F-MWCNTs和BW-F-MWCNTs,这种作用明显不那么明显,因为它们从一开始就高度分散。功能化增加了大鼠主动脉内皮细胞(RAEC)和巨噬细胞样鼠细胞(RAW264.7)的细胞摄取,而碱洗显示的结果与功能化类似物相似。有趣的是,BSA结合可下调RAEC细胞中白介素6(IL-6)和血红素加氧酶1(Hmox1)的mRNA水平,但上调RAW264.7细胞中IL-6和Hmox1的表达,表明细胞类型对生物学的依赖性对MWCNT的响应。总体而言,我们的研究表明,表面修饰以及进一步纯化会影响MWCNT与蛋白质的相互作用以及随后的细胞反应。有趣的是,尽管与F-MWCNTs和BW-F-MWCNTs相关的电晕显着不同,但它们各自的细胞摄取和生物学反应却相似。这表明表面功能化比表面电晕起着更重要的作用。

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