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锌(II)配位络合物作为膜活性荧光探针和抗生素。

Zinc(II) coordination complexes as membrane-active fluorescent probes and antibiotics.

作者信息

DiVittorio Kristy M, Leevy W Matthew, O'Neil Edward J, Johnson James R, Vakulenko Sergei, Morris Joshua D, Rosek Kristine D, Serazin Nathan, Hilkert Sarah, Hurley Scott, Marquez Manuel, Smith Bradley D

机构信息

Department of Chemistry and Biochemistry, University of Notre Dame, 251 Nieuwland Science Hall, Notre Dame, IN 46556, USA.

出版信息

Chembiochem. 2008 Jan 25;9(2):286-93. doi: 10.1002/cbic.200700489.

Abstract

Molecular probes with zinc(II)-(2,2'-dipicolylamine) coordination complexes associate with oxyanions in aqueous solution and target biomembranes that contain anionic phospholipids. This study examines a new series of coordination complexes with 2,6-bis(zinc(II)-dipicolylamine)phenoxide as the molecular recognition unit. Two lipophilic analogues are observed to partition into the membranes of zwitterionic and anionic vesicles and induce the transport of phospholipids and hydrophilic anions (carboxyfluorescein). These lipophilic zinc complexes are moderately toxic to mammalian cells. A more hydrophilic analogue does not exhibit mammalian cell toxicity (LD(50) >50 microg mL(-1)), but it is highly active against the Gram-positive bacteria Staphylococcus aureus (MIC of 1 microg mL(-1)). Furthermore, it is active against clinically important S. aureus strains that are resistant to various antibiotics, including vancomycin and oxacillin. The antibiotic action is attributed to its ability to depolarize the bacterial cell membrane. The intense bacterial staining that was exhibited by a fluorescent conjugate suggests that this family of zinc coordination complexes can be used as molecular probes for the detection and imaging of bacteria.

摘要

带有锌(II)-(2,2'-联吡啶甲胺)配位络合物的分子探针在水溶液中与氧阴离子结合,并靶向含有阴离子磷脂的生物膜。本研究考察了一系列以2,6-双(锌(II)-联吡啶甲胺)苯氧基作为分子识别单元的新型配位络合物。观察到两种亲脂性类似物可分配到两性离子和阴离子囊泡的膜中,并诱导磷脂和亲水性阴离子(羧基荧光素)的转运。这些亲脂性锌络合物对哺乳动物细胞具有中等毒性。一种亲水性更强的类似物对哺乳动物细胞无毒性(半数致死量>50μg/mL),但对革兰氏阳性菌金黄色葡萄球菌具有高活性(最低抑菌浓度为1μg/mL)。此外,它对耐多种抗生素(包括万古霉素和苯唑西林)的临床上重要的金黄色葡萄球菌菌株也有活性。抗生素作用归因于其使细菌细胞膜去极化的能力。一种荧光缀合物所表现出的强烈细菌染色表明,该系列锌配位络合物可作为检测和成像细菌的分子探针。

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