G'/> A novel self-assembly Lentinan-tetraphenylethylene? composite with strong blue? fluorescence in water and its properties
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A novel self-assembly Lentinan-tetraphenylethylene? composite with strong blue? fluorescence in water and its properties

机译:一种新颖的自组装香菇 - 四炔基乙烯? 综合强蓝色? 水中的荧光及其性质

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Graphical abstract Display Omitted Highlights ? t-LNT self-assembled into dendrite-like aggregates via parallel alignment in water. ? t-LNT enhanced the blue fluorescence of TPE in water. ? t-LNT/TPE showed high water-dispersibility, good stability and biocompatibility. Abstract We report a unique self-assembly of lentinan, a triple helical β-(1→3)-glucan (t-LNT), in water. By molecular dynamics simulation, it was found that t-LNT aggregated preferentially along the chain direction to form long chains, accompanied by side-direction linkage to form branches. Transmission electron microscopy images demonstrated that t-LNT formed dendrite-like fibers, which further formed fishnet-like porous/mesoporous aggregates with increasing concentration. The meshes in the fishnet were ascribed to the intersection of branches. The major driving force for aggregation was expected to be hydrogen bonding between hydroxyl groups in t-LNT chains. Based on this self-assembly behavior, a novel composite was prepared from t-LNT and tetraphenylethylene (TPE) by entrapping TPE aggregates into the meshes of t-LNT fishnets. The as-prepared t-LNT/TPE composite largely enhanced the blue fluorescence of TPE in water, exhibiting stable optical property and good biocompatibility, and t-LNT is expected to show great potential as a carrier of hydrophobic molecules for biomedical application. ]]>
机译:<![cdata [ 图形抽象 显示省略 亮点 t-lnt自组装成树枝状像agg通过水中的平行对准进行缩小。 T-lnt增强了水中TPE的蓝色荧光。 t-lnt / tpe显示出高水分散性,良好的稳定性和生物相容性。 抽象 我们举报了Lentinan的独特自组装,三重螺旋β-(1→3) - 葡聚糖(T-LNT),水中。通过分子动力学模拟,发现T-LNT优先沿链条方向聚集以形成长链,伴随侧向连杆以形成分支。透射电子显微镜图像表明T-LNT形成了树枝状纤维,其进一步形成了浓度的浓度的鱼网状多孔/介孔聚集体。鱼网中的网格归因于分支的交叉点。预期聚集的主要驱动力在T-LNT链中的羟基之间是氢键。基于这种自组装行为,通过将TPE聚集体捕获到T-LNT渔网网的网眼中,由T-LNT和四苯基乙烯(TPE)制备一种新型复合物。制备的T-LNT / TPE复合材料大大提高了水中TPE的蓝色荧光,表现出稳定的光学性能和良好的生物相容性,并且预期T-LNT作为生物医学应用的疏水分子的载体呈现巨大潜力。 ]]>

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