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碳头孢烯类与头孢菌素类的构效关系:抗菌活性及与Caco-2细胞肠道质子依赖性二肽转运载体的相互作用

Structure-activity relationship of carbacephalosporins and cephalosporins: antibacterial activity and interaction with the intestinal proton-dependent dipeptide transport carrier of Caco-2 cells.

作者信息

Snyder N J, Tabas L B, Berry D M, Duckworth D C, Spry D O, Dantzig A H

机构信息

Lilly Research Laboratories, Lilly Corporate Center, Eli Lilly and Company, Indianapolis, Indiana 46285, USA.

出版信息

Antimicrob Agents Chemother. 1997 Aug;41(8):1649-57. doi: 10.1128/AAC.41.8.1649.

Abstract

An intestinal proton-dependent peptide transporter located on the lumenal surface of the enterocyte is responsible for the uptake of many orally absorbed beta-lactam antibiotics. Both cephalexin and loracarbef are transported by this mechanism into the human intestinal Caco-2 cell line. Forty-seven analogs of the carbacephalosporin loracarbef and the cephalosporin cephalexin were prepared to evaluate the structural features necessary for uptake by this transport carrier. Compounds were evaluated for their antibacterial activities and for their ability to inhibit 1 mM cephalexin uptake and, subsequently, uptake into Caco-2 cells. Three clinically evaluated orally absorbed carbacephems were taken up by Caco-2 cells, consistent with their excellent bioavailability in humans. Although the carrier preferred the L stereoisomer, these compounds lacked antibacterial activity and were hydrolyzed intracellularly in Caco-2 cells. Compounds modified at the 3 position of cephalexin and loracarbef with a cyclopropyl or a trifluoromethyl group inhibited cephalexin uptake. Analogs with lipophilic groups on the primary amine of the side chain inhibited cephalexin uptake, retained activity against gram-positive bacteria but lost activity against gram-negative bacteria. Substitution of the phenylglycl side chain with phenylacetyl side chains gave similar results. Compounds which lacked an aromatic ring in the side chain inhibited cephalexin uptake but lost all antibacterial activity. Thus, the phenylglycl side chain is not absolutely required for uptake. Different structural features are required for antibacterial activity and for being a substrate of the transporter. Competition studies with cephalexin indicate that human intestinal Caco-2 cells may be a useful model system for initially guiding structure-activity relationships for the rational design of new oral agents.

摘要

位于肠细胞腔面的肠道质子依赖性肽转运体负责许多口服吸收的β-内酰胺抗生素的摄取。头孢氨苄和氯碳头孢均通过这种机制转运至人肠道Caco-2细胞系。制备了47种碳头孢烯类氯碳头孢和头孢菌素类头孢氨苄的类似物,以评估该转运载体摄取所需的结构特征。评估了这些化合物的抗菌活性以及它们抑制1 mM头孢氨苄摄取以及随后摄取到Caco-2细胞中的能力。三种经临床评估的口服吸收的碳头孢烯类被Caco-2细胞摄取,这与它们在人体内优异的生物利用度一致。尽管该载体更喜欢L-立体异构体,但这些化合物缺乏抗菌活性且在Caco-2细胞内被水解。在头孢氨苄和氯碳头孢的3位用环丙基或三氟甲基修饰的化合物抑制了头孢氨苄的摄取。侧链伯胺上带有亲脂性基团的类似物抑制了头孢氨苄的摄取,保留了对革兰氏阳性菌的活性,但失去了对革兰氏阴性菌的活性。用苯乙酰侧链取代苯甘氨酰侧链得到了类似的结果。侧链中缺乏芳环的化合物抑制了头孢氨苄的摄取,但失去了所有抗菌活性。因此,摄取并非绝对需要苯甘氨酰侧链。抗菌活性和作为转运体底物需要不同的结构特征。与头孢氨苄的竞争研究表明,人肠道Caco-2细胞可能是一个有用的模型系统,可用于初步指导新口服药物合理设计的构效关系。

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