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首页> 外文期刊>Organic Chemistry Frontiers >A multi-responsive supramolecular heparin-based biohybrid metallogel constructed by controlled self-assembly based on metal-ligand, host-guest and electrostatic interactions
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A multi-responsive supramolecular heparin-based biohybrid metallogel constructed by controlled self-assembly based on metal-ligand, host-guest and electrostatic interactions

机译:一个multi-responsive超分子heparin-based合成metallogel由控制基于metal-ligand自组装,主-客体和静电相互作用

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摘要

Heparin-based gels constructed by non-covalent interactions can self-assemble into various nanostructures in solution, and can find applications in many fields such as nanodevices, drug delivery, and stimulus responsive materials synthesis. Herein, we describe the construction of a new class of supramolecular heparin-based biohybrid metallogels (HBMGs) with multiple stimuli-responsive behaviours through controlled self-assembly based on three orthogonal interactions, namely metal-ligand, host-guest and electrostatic interactions, within a single system. Specifically, a tris-[2]pseudorotaxane hexagonal metallacycle was synthesized by the orthogonal coordination-driven self-assembly and host-guest interactions. It was found that the obtained positively charged tris-[2]pseudorotaxane metallacycle can further form supramolecular HBMGs with heparin, one of the highest negatively charged biomolecule, via acid-base controlled multiple electrostatic interactions at lower concentrations. Notably, thermo-, acid-base and cation-induced gel-sol transitions were found to be completely reversible, reflecting the dynamic and controllable nature of such supramolecular materials. Hence, this research not only provides a simple yet highly efficient strategy for the fabrication of functional biohybrid materials involving metal-organic complexes and biomacromolecules, but also offers broad prospects for supramolecular engineering using precisely controlled self-assembly strategies.
机译:Heparin-based凝胶由非共价可以自组装成各种的交互纳米结构在溶液中,可以找到应用在许多领域,如nanodevices药物输送,刺激响应材料合成。超分子heparin-based的一个新类合成metallogels (HBMGs)与多个通过控制stimuli-responsive行为基于三个正交的自组装交互,即metal-ligand、主-客体和静电相互作用,在一个系统。六角metallacycle是合成的正交coordination-driven自组装,主-客体相互作用。获得带正电三羟甲基氨基甲烷-液[2]pseudorotaxane metallacycle可以进一步形成超分子HBMGs与肝素之一最高的带负电荷的生物分子,通过酸碱控制多个静电在低浓度的交互。热,酸碱和cation-induced gel-sol被发现是完全的转换可逆的,反映出动态和控制这类超分子的性质材料。一个简单而高效的战略功能性合成材料的制造涉及有机配合物和《生物高分子,但也提供了广泛超分子工程使用的前景精确控制自组装策略。

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