Bereczki Ilona, Szűcs Zsolt, Batta Gyula, Nagy Tamás Milán, Ostorházi Eszter, Kövér Katalin E, Borbás Anikó, Herczegh Pál
Department of Pharmaceutical Chemistry, University of Debrecen, Egyetem tér 1, H-4032 Debrecen, Hungary.
Department of Organic Chemistry, University of Debrecen, H-4032 Debrecen, Hungary.
Pharmaceuticals (Basel). 2022 Jan 8;15(1):77. doi: 10.3390/ph15010077.
Various dimeric derivatives of the glycopeptide antibiotic teicoplanin were prepared with the aim of increasing the activity of the parent compound against glycopeptide-resistant bacteria, primarily vancomycin-resistant enterococci. Starting from teicoplanin, four covalent dimers were prepared in two orientations, using an α,ω-bis-isothiocyanate linker. Formation of a dimeric cobalt coordination complex of an -terminal L-histidyl derivative of teicoplanin pseudoaglycone has been detected and its antibacterial activity evaluated. The Co(III)-induced dimerization of the histidyl derivative was demonstrated by DOSY experiments. Both the covalent and the complex dimeric derivatives showed high activity against VanA teicoplanin-resistant enterococci, but their activity against other tested bacterial strains did not exceed that of the monomeric compounds.
制备了糖肽抗生素替考拉宁的各种二聚体衍生物,目的是提高母体化合物对耐糖肽细菌(主要是耐万古霉素肠球菌)的活性。从替考拉宁出发,使用α,ω-双异硫氰酸酯连接体,以两种方向制备了四种共价二聚体。已检测到替考拉宁假糖苷配基的N-末端L-组氨酸基衍生物的二聚钴配位络合物的形成,并评估了其抗菌活性。通过扩散排序谱(DOSY)实验证明了组氨酸基衍生物的Co(III)诱导二聚化。共价和络合物二聚体衍生物对VanA耐替考拉宁肠球菌均显示出高活性,但它们对其他测试细菌菌株的活性不超过单体化合物。