Sitsanidis Efstratios D, Piras Carmen C, Alexander Bruce D, Siligardi Giuliano, Jávorfi Tamás, Hall Andrew J, Edwards Alison A
Medway School of Pharmacy, Universities of Greenwich and Kent at Medway, Kent, UK.
Department of Pharmaceutical, Chemical and Environmental Sciences, University of Greenwich, Kent, UK.
Chirality. 2018 Jun;30(6):708-718. doi: 10.1002/chir.22850. Epub 2018 Apr 12.
Circular dichroism (CD) spectroscopy has been used extensively for the investigation of the conformation and configuration of chiral molecules, but its use for evaluating the mode of self-assembly in soft materials has been limited. Herein, we report a protocol for the study of such materials by electronic CD spectroscopy using commercial/benchtop instruments and synchrotron radiation (SR) using the B23 beamline available at Diamond Light Source. The use of the B23 beamtime for SRCD was advantageous because of the unique enhanced spatial resolution achieved because of its highly collimated and small beamlight cross section (ca. 250 μm) and higher photon flux in the far UV region (175-250 nm) enhancing the signal-to-noise ratio relative to benchtop CD instruments. A set of low molecular weight (LMW) hydrogelators, comprising two Fmoc-protected enantiomeric monosaccharides and one Fmoc dipeptide (Fmoc-FF), were studied. The research focused on the optimization of sample preparation and handling, which then enabled the characterization of sample conformational homogeneity and thermal stability. CD spectroscopy, in combination with other spectroscopic techniques and microscopy, will allow a better insight into the self-assembly of chiral building blocks into higher order structural architectures.
圆二色光谱(CD)已被广泛用于研究手性分子的构象和构型,但其在评估软材料自组装模式方面的应用一直有限。在此,我们报告了一种通过电子CD光谱研究此类材料的方案,该方案使用商用/台式仪器以及利用钻石光源(Diamond Light Source)的B23光束线进行同步辐射(SR)。利用B23光束时间进行SRCD是有利的,因为其高度准直且光束横截面小(约250μm),从而实现了独特的增强空间分辨率,并且在远紫外区域(175 - 250nm)具有更高的光子通量,相对于台式CD仪器提高了信噪比。研究了一组低分子量(LMW)水凝胶剂,其由两种Fmoc保护的对映体单糖和一种Fmoc二肽(Fmoc - FF)组成。该研究重点在于样品制备和处理的优化,进而能够表征样品的构象均匀性和热稳定性。CD光谱与其他光谱技术和显微镜相结合,将有助于更深入地了解手性构建块自组装成高阶结构体系的过程。