TU Dortmund University, Department of Chemistry and Chemical Biology, Otto-Hahn-Str. 6, 44227, Dortmund.
Max Planck Institute of Molecular Physiology, Department of Structural Biochemistry, Otto-Hahn-Str. 11, 44227, Dortmund.
Chemistry. 2024 Aug 12;30(45):e202401833. doi: 10.1002/chem.202401833. Epub 2024 Jul 15.
Ionic detergents enable applications and cause harm in biospheres due to cell toxicity. The utility of covalent combinations between ionic and non-ionic detergent headgroups in modulating cell toxicity remains speculative due to the yet rarely explored synthesis. We close this gap and establish the modular synthesis of ionic/non-ionic hybrid detergents. We restructure a combinatorial methallyl dichloride one-pot coupling into a two-step coupling, which reduces by-products, improves product yields, and enables the gram-scale preparation of asymmetric, cationic/non-ionic and anionic/non-ionic hybrid detergents. Our modular synthesis delivers new modalities for the design of ionic detergents, including an unprecedented scaling of properties that determine applications, such as charge, critical micelle concentration, solubilizing properties, hard water tolerance, and cell compatibility. We uncover that shielding the charge in ionic headgroups can switch the detergent species that is toxic to cells from monomers to mixtures of monomers and micellar assemblies. Establishing the chemistry of ionic/non-ionic hybrid detergents provides a missing evolutionary link in the structural comparison of ionic and non-ionic detergents, enables an easy synthesis access to yet unexplored chemical spaces of asymmetric hybrid materials, and delivers new modalities for designing the toxicity of supramolecular nanomaterials.
离子型清洁剂由于细胞毒性而在生物圈中得到应用并造成危害。由于尚未探索的合成,离子型和非离子型清洁剂头基之间共价结合在调节细胞毒性方面的实用性仍然是推测性的。我们弥补了这一空白,并建立了离子/非离子混合清洁剂的模块化合成。我们将组合的甲烯基二氯的一锅偶联重构为两步偶联,这减少了副产物,提高了产率,并能够进行克级规模的不对称、阳离子/非离子和阴离子/非离子混合清洁剂的制备。我们的模块化合成提供了设计离子清洁剂的新方法,包括以前所未有的规模来确定应用的性质,如电荷、临界胶束浓度、增溶性能、耐硬水能力和细胞相容性。我们发现,屏蔽离子头基中的电荷可以将对细胞有毒的清洁剂从单体转变为单体和胶束混合物。建立离子/非离子混合清洁剂的化学为离子和非离子清洁剂的结构比较提供了缺失的进化联系,为不对称混合材料的尚未探索的化学空间提供了简便的合成途径,并为设计超分子纳米材料的毒性提供了新方法。