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首页> 外文期刊>Medicinal Chemistry >Design of Ciprofloxacin Derivatives that Inhibit Growth of Methicillin Resistant Staphylococcus aureus (MRSA) and Methicillin Susceptible Staphylococcus aureus (MSSA)
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Design of Ciprofloxacin Derivatives that Inhibit Growth of Methicillin Resistant Staphylococcus aureus (MRSA) and Methicillin Susceptible Staphylococcus aureus (MSSA)

机译:抑制耐甲氧西林金黄色葡萄球菌(MRSA)和耐甲氧西林金黄色葡萄球菌(MSSA)生长的环丙沙星衍生物的设计

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Three derivatives of ciprofloxacin (compound B, C, and D) were constructed utilizing microwave synthesis methodology (compound D) or diazoalkane reaction in nonaqueous solvent (compounds B and C). The final structures of the derivatives featured an ester group in place of the original carboxyl group of the ciprofloxacin. These ester groups contained aliphatic single carbon (compound B), two carbon length (compound C), or three carbon length propyl ester group (compound D). The ester groups strongly affected the molecular properties of the parent ciprofloxacin. As the size of the ester group increased the formula weight, molar volume, and number of rotatable bonds increased. The Log P for these compounds were -0.701, -0.441, -0.065, 0.437 for ciprofloxacin, B, C, and compound D, respectively. Numerical values of dermal permeability coefficient (Kp) increased rapidly as length of the ester carbon chain increased. The immediate consequence of Kp increase is an increased skin penetration rate based on dose and time span of administration. Polar surface area for ciprofloxacin is 74.569 Angstroms2, but decreases to 63.575 Angstroms2 for all three derivatives. All three derivatives of ciprofloxacin showed zero violations of the Rule of 5, indicating these drugs would have favorable bioavailability. Compounds A, B, C, and D were placed into tissue culture with methicillin resistant and susceptible Staphylococcus aureus (MRSA and MSSA, respectively) to determine levels of bacterial growth inhibition. All compounds induced greater than 60 % inhibition of MSSA at concentrations as low as 15.63 micrograms/milliliter. All four compounds induced greater than 80 % inhibition of MRSA at concentratins as low as 15.63 micrograms/milliliter. Development of novel drug designs will benefit the clinical treatment of dangerous infections of MSSA and MRSA.
机译:利用微波合成方法(化合物D)或重氮烷烃在非水溶剂中的反应(化合物B和C)构建了环丙沙星的三种衍生物(化合物B,C和D)。衍生物的最终结构以酯基取代环丙沙星的原始羧基为特征。这些酯基包含脂族单碳(化合物B),两个碳长(化合物C)或三个碳长的丙酸酯基(化合物D)。酯基强烈影响母体环丙沙星的分子性质。随着酯基尺寸的增加,配方重量,摩尔体积和可旋转键的数量增加。对于环丙沙星,B,C和化合物D,这些化合物的Log P分别为-0.701,-0.441,-0.065、0.437。皮肤渗透系数(Kp)的数值随着酯碳链长度的增加而迅速增加。 Kp增加的直接后果是基于给药剂量和时间跨度的皮肤渗透率增加。环丙沙星的极性表面积为74.569埃,但对于所有三种衍生物,极性表面积均减小至63.575埃。环丙沙星的所有三种衍生物均显示出对5规则的零违反,表明这些药物具有良好的生物利用度。将化合物A,B,C和D与耐甲氧西林且易感的金黄色葡萄球菌(分别为MRSA和MSSA)一起放入组织培养物中,以确定细菌生长抑制的水平。在低至15.63微克/毫升的浓度下,所有化合物均能诱导60%以上的MSSA抑制作用。在浓度低至15.63微克/毫升的情况下,所有四种化合物均对MRSA产生大于80%的抑制作用。新药设计的开发将有益于MSSA和MRSA危险感染的临床治疗。

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