Department of Chemistry, University of Liverpool, Crown Street, Liverpool L69 7ZD, UK.
Langmuir. 2010 Aug 17;26(16):13466-71. doi: 10.1021/la102059x.
Dipeptide-conjugates can be efficient low molecular weight hydrogelators. However, the effective design of a gelator for a specific application is compromised by the lack of a clear understanding of the design rules that govern assembly and hence gelation. Here, we report a library of naphthalene-dipeptides, their physical chemical properties, and gelation ability. We have varied both the amino acids in the dipeptides and the substitution on the naphthalene ring to allow variation of the structure throughout the molecule. We have examined the effects of these permutations on the critical micelle concentration and air-water partition coefficient at high pH and the apparent pK(a). We show that there is a clear link between these properties and the predicted hydrophobicity of the overall conjugates, rather than the properties varying with, for example, the dipeptide sequence. The majority of these dipeptide-conjugates are effective hydrogelators, although there is no apparent link between the solution properties and whether or not a conjugate is a hydrogelator. Nevertheless, where gelation occurs, the link between hydrophobicity and apparent pK(a) allows the prediction of the pH at which a gel will be formed and hence informed choice of gelator for specific applications.
二肽缀合物可以作为有效的低分子量水凝胶剂。然而,由于缺乏对控制组装从而凝胶化的设计规则的清晰理解,针对特定应用设计凝胶剂的效果受到了影响。在这里,我们报告了一系列萘二肽,包括它们的物理化学性质和凝胶能力。我们改变了二肽中的氨基酸和萘环上的取代基,从而使分子中的结构发生变化。我们研究了这些变化对高 pH 值下临界胶束浓度和气-水分配系数以及表观 pKa 的影响。我们表明,这些性质与整个缀合物的预测疏水性之间存在明显的联系,而不是随着例如二肽序列的变化而变化。这些二肽缀合物中的大多数都是有效的水凝胶剂,尽管在溶液性质与缀合物是否为水凝胶剂之间没有明显的联系。然而,在发生凝胶化的地方,疏水性和表观 pKa 之间的联系允许预测形成凝胶的 pH 值,从而为特定应用选择合适的凝胶剂提供信息。