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Bioorganometallic ferrocene-tripeptide nanoemulsions

机译:Bioorganometallic ferrocene-tripeptide

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摘要

We demonstrate an effective strategy to prepare highly stable nanoemulsions using ferrocene-modified tripeptides. Compared with traditional nanoemulsions, bioorganometallic peptide nanoemulsions are appealing for a number of reasons, including long-term and outstanding thermal stability, redox activity and biocompatibility. The formed nanoemulsions could remain stable for more than four months at room temperature, which is the highest stability reported so far for peptide and protein emulsifiers. The phase behaviour and size distribution of the emulsions could be precisely tailored by altering the temperature, solvent ratio and redox state of the ferrocene moiety. In this process, we observed a unique enthalpy-driven phase transition from nanoemulsions to hydrogels, which could be attributed to the competition between the interfacial free energy and the association energy among the self-assembling peptides. Moreover, we could impart catalytic activity to the nanoemulsions through rationally altering the sequence of the tripeptides. The structurally tunable, functional bioorganometallic nanoemulsions offer new opportunities in many areas including drug delivery, and the food and cosmetic industries.
机译:我们将演示一个有效的战略准备高度稳定的这种被使用ferrocene-modified三肽。传统的这种,bioorganometallic肽这种呼吁一个数字的原因,包括长期的和突出热稳定性、氧化还原和活动生物相容性。保持稳定的四个多月的房间最高温度,稳定报道到目前为止对多肽和蛋白质乳化剂。乳剂可以精确的分布通过改变温度,溶剂比和二茂铁基的氧化还原状态。这个过程中,我们观察到的一个独特的enthalpy-driven相变从这种水凝胶,这可能归因于之间的竞争界面自由能和协会能源在自组装多肽。此外,我们可以传授催化活性这种通过理性改变三肽的序列。可调、功能bioorganometallic这种在很多提供了新机会领域,包括药物输送和食品化妆品行业。

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