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Synthesis and Characterization of Various Protein α-Lactalbumin Nanotubes Structures by Chemical Hydrolysis Method

机译:化学水解法合成各种蛋白质α-乳清蛋白纳米管结构及表征

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New water-based nanofluids including unparalleled milk protein α-lactalbumin hollow nano-bio-tubes using low cost, available and advanced partial chemical hydrolysis strategy in bottom-up nano-assembly have been employed in this work. The aqueous sol-gel chemistry in nanotechnology which we selected for this goal offers new fabrication as interesting smart protein nanotubes. The kinds of nanometer sized tubular structures such as waved, helically coiled, bent, bamboo-shaped, bead-like and branched single-walled protein nanotubes (SWPNTs) with a range of 3 - 8 nm in outer diameters were produced by this method. Complete characterization for natural produced nanotubes including SEM, TEM images, G bond and D bond in Raman spectroscopy, XRD patterns, DLS (Dynamic Light Scattering) and FTIR analysis were evaluated which they are most significant experiments in synthesized protein nanotubes soluble in clear water nanofluids and stabilization of transparent nanofluids was proved within more than one year after preparation. Various necessary ligand ion salts such as Mn2+, Zn2+ and Ca2+ or mixtures as bridge makers and producing biological self-assembly hollow SWPNTs were performed and we focused on new chemical technology under specific acidic hydrolysis method not conventional enzymatic proteolysis and applying surfactants, pH reagent, Tris-HCl buffer, polar solvent which could be produced by β-sheet stacked hydrolysed protein α-lactalbumin mechanism under appropriate conditions to achieving high efficiency new protein nanotubes skeleton. They can be promising materials applied in food science, diet nutrition, nanomedicine, nano-biotechnology and surgery.
机译:这项新的水基纳米流体包括无与伦比的牛奶蛋白α-乳白蛋白空心纳米生物管,其在低成本,自下而上的纳米组件中使用了低成本,可用的和先进的部分化学水解策略。我们为此目的选择的纳米技术中的水溶胶-凝胶化学提供了有趣的智能蛋白质纳米管的新制造方法。通过这种方法,可以制得各种纳米尺寸的管状结构,例如波浪形,螺旋形,弯曲形,竹形,珠状和分支的单壁蛋白纳米管(SWPNTs),其外径范围为3-8 nm。评估了自然产生的纳米管的完整特征,包括拉曼光谱中的SEM,TEM图像,G键和D键,XRD图,DLS(动态光散射)和FTIR分析,它们是可溶于透明水纳米流体的合成蛋白纳米管中最重要的实验。在制备后一年多的时间内,证明了透明纳米流体的稳定性。进行了各种必要的配体离子盐(例如Mn2 +,Zn2 +和Ca2 +)或作为桥联剂的混合物,并产生了生物自组装空心SWPNT,我们专注于采用特定酸性水解方法而非常规酶蛋白水解的新化学技术,并使用表面活性剂,pH试剂, Tris-HCl缓冲液,极性溶剂,可在适当条件下通过β-折叠堆叠水解蛋白α-乳清蛋白机理制备,以实现高效的新型蛋白纳米管骨架。它们可能是应用于食品科学,饮食营养,纳米医学,纳米生物技术和外科手术的有前途的材料。

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