Department of Chemical and Biomolecular Engineering, University of Illinois, Urbana-Champaign, 600 South Mathews Street, Urbana, IL, 61801, USA.
Department of Pharmaceutical Sciences, College of Pharmacy, University of Michigan, Ann Arbor, 428 Church Street, Ann Arbor, MI, 48109, USA.
Angew Chem Int Ed Engl. 2017 Feb 6;56(7):1815-1819. doi: 10.1002/anie.201611195. Epub 2017 Jan 12.
Supramolecular crystalline assembly constitutes a rational approach to bioengineer intracellular structures. Here, biocrystals of clofazimine (CFZ) that form in vivo within macrophages were measured to have marked curvature. Isolated crystals, however, showed reduced curvature suggesting that intracellular forces bend these drug crystals. Consistent with the ability of biocrystals to elastically deform, the inherent crystal structure of the principal molecular component of the biocrystals-the hydrochloride salt of CFZ (CFZ-HCl)-has a corrugated packing along the (001) face and weak dispersive bonding in multiple directions. These characteristics were previously found to be linked to the elasticity of other organic crystals. Internal stress in bent CFZ-HCl led to photoelastic effects on the azimuthal orientation of polarized light transmittance. We propose that elastic, intracellular crystals can serve as templates to construct functional microdevices with different applications.
超分子晶体组装是一种构建生物工程细胞内结构的合理方法。本文中,我们对巨噬细胞内形成的氯法齐明(CFZ)生物晶体进行了测量,发现其具有明显的曲率。然而,分离出的晶体显示曲率减小,这表明细胞内的力使这些药物晶体弯曲。与生物晶体能够弹性变形的能力一致,生物晶体主要分子成分盐酸氯法齐明(CFZ-HCl)的固有晶体结构在(001)面上具有波纹状堆积,并且在多个方向上具有较弱的分散键合。这些特性以前被发现与其他有机晶体的弹性有关。弯曲的 CFZ-HCl 中的内应力导致偏振光透过的方位角取向的光弹效应。我们提出,弹性的细胞内晶体可以作为模板,构建具有不同应用的功能性微器件。