Hirst Andrew R, Smith David K, Feiters Martin C, Geurts Huub P M
University of York, Heslington, York, YO10 5DD, UK.
Chemistry. 2004 Nov 19;10(23):5901-10. doi: 10.1002/chem.200400502.
The self-assembly of diaminododecane solubilised by four different stereoisomeric dendritic peptides to form gel-phase materials in toluene was investigated. The second generation dendritic peptides were based on D- and L-lysine building blocks, and each contained three chiral centres. By designing dendritic peptides in which the configurations of the chiral centres were modified, and applying them as gelator units, the assembly of stereoisomers could be investigated. In all cases, the self-assembly of gelator units resulted in macroscopic gelation. However, the degree of structuring was modulated by the stereoisomers employed, an effect which changed the morphology and macroscopic behavior of the self-assembled state. Enantiomeric (L,L,L or D,D,D) gelator units formed fibrous molecular assemblies, whilst the racemic gel (50 % L,L,L : 50 % D,D,D) formed a flat structure with a "woven" appearance. Gelator units based on L,D,D or D,L,L dendritic peptides also formed fibrous assemblies, but small-angle X-ray scattering indicated significant morphological differences were caused by the switch in chirality. Furthermore, the macroscopic stability of the gel was diminished when these peptides were compared with their L,L,L or D,D,D analogues. In this paper it is clearly shown that individual stereocentres, on the molecular level, are directly related to the helicity within the fibre. It is argued that the chirality controls the pattern of hydrogen bonding within the assembly, and hence determines the extent of fibre formation and the macroscopic gel strength.
研究了由四种不同立体异构树枝状肽增溶的二氨基十二烷在甲苯中自组装形成凝胶相材料的过程。第二代树枝状肽基于D-和L-赖氨酸构建单元,每个都包含三个手性中心。通过设计其中手性中心构型被修饰的树枝状肽,并将其用作凝胶剂单元,可以研究立体异构体的组装情况。在所有情况下,凝胶剂单元的自组装都导致了宏观凝胶化。然而,结构程度受到所用立体异构体的调节,这种效应改变了自组装状态的形态和宏观行为。对映体(L,L,L或D,D,D)凝胶剂单元形成纤维状分子聚集体,而外消旋凝胶(50% L,L,L : 50% D,D,D)形成具有“编织”外观的扁平结构。基于L,D,D或D,L,L树枝状肽的凝胶剂单元也形成纤维状聚集体,但小角X射线散射表明手性的转变导致了显著的形态差异。此外,与它们的L,L,L或D,D,D类似物相比,这些肽形成的凝胶的宏观稳定性降低。本文清楚地表明,在分子水平上,单个手性中心与纤维内的螺旋度直接相关。有人认为,手性控制组装内氢键的模式,从而决定纤维形成的程度和宏观凝胶强度。