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A Thermodynamic Study on the Interaction of Quinolone Antibiotics and DNA

机译:喹诺酮类抗生素与DNA相互作用的热力学研究

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Fluorescence of quinolones including norfloxacin, ciprofloxacin and S- and R-ofloxacin is quenched upon association with single and double-stranded DNA (ss- and ds-DNA). The ratios of fluorescence intensity in the presence of DNA to its absent were plotted with respect to the DNA concentration to construct the Stern-Volmer plot. The slope of the Stern-Volmer plot become larger as the temperature is lowered, ensuring that the fluorescence quenching is static process, i.e., the fluorescence is quenched by formation of the non-fluorescent complex between quinolone and DNA. In the static quenching mechanism, the quenching constant which is equivalent to the slope of the Stern-Volmer plot, is considered as the equilibrium constant for the association of quinolones and DNA. From the temperature-dependent equilibrium constant, ツH0 and ツS0 was obtained using the van’t Hoff relation. In general, association of the quinolone with ds- as well as ss-DNA is energetically favorable (an exothermic) process while the entropy change was unfavorable. Due to the steric effect of the substituents, the effect of the quinolone ring is smaller on the ss-DNA compared to ds-DNA.
机译:与单链和双链DNA(ss-和ds-DNA)结合后,包括诺氟沙星,环丙沙星和S-和R-氧氟沙星的喹诺酮类药物的荧光被猝灭。相对于DNA浓度,绘制在DNA存在下与其不存在下的荧光强度之比,以构建Stern-Volmer图。随着温度降低,Stern-Volmer图的斜率变大,从而确保荧光猝灭是静态过程,即,通过喹诺酮和DNA之间形成非荧光复合物来猝灭荧光。在静态猝灭机理中,等同于Stern-Volmer图的斜率的猝灭常数被认为是喹诺酮与DNA缔合的平衡常数。从温度相关的平衡常数中,利用范式获得obtained H 0 和ツ S 0 霍夫关系。通常,喹诺酮与ds-以及ss-DNA的结合在能量上是有利的(放热)过程,而熵变则是不利的。由于取代基的空间作用,与ds-DNA相比,喹诺酮环对ss-DNA的作用较小。

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