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首页> 外文期刊>Chemical and Pharmaceutical Bulletin >PH-dependent coordination of metal-lisinopril complex investigated by attenuated total reflection/Fourier transform infrared spectroscopy.
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PH-dependent coordination of metal-lisinopril complex investigated by attenuated total reflection/Fourier transform infrared spectroscopy.

机译:通过衰减全反射/傅里叶变换红外光谱法研究了金属-赖诺普利络合物的PH依赖配位。

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In order to simulate the in vivo binding behavior of angiotensin-converting enzyme (ACE) inhibitors to the zinc-containing active center of ACE, the in vitro interaction between lisinopril and zinc or nickel ions was investigated in aqueous solutions of different pH by using attenuated total reflection (ATR)/Fourier transform infrared (FT-IR) spectroscopy with second-derivative IR spectral analysis. The results indicated that the lisinopril dissociation process occurred in a stepwise fashion during increase in pH. The IR peaks at 1642 cm(-1) (carbonyl stretching of tertiary amide) and at 1582 cm(-1) (asymmetric COO- stretching) for lisinopril in solution at pH 3.5 shifted to 1606 and 1586 cm(-1) after addition of Ni2+ ions, respectively, but there was no marked changes in IR spectra of lisinopril after addition of Zn2+ ions. When the Zn2+ ions were added to lisinopril solution at pH 5.0, the peak at 1642 cm(-1) also shifted to 1604 cm(-1) and the peak at 1582 cm(-1) shifted to 1586 cm(-1), similar to the changes at pH 3.5 after adding Ni2+ ions. However, the peaks at 1582 and 1642 cm(-1) both shifted to 1599 cm(-1) after addition of Ni2+ ions at pH 5.0 or at pH 7.3. The peak at 1576 cm(-1) also shifted to 1599 cm(-1) after addition of Zn2+ ions to lisinopril solution at pH 7.3. Different coordination sites or types (chelating, bridging or pseudounidentate complex) between lisinopril and Zn2+ or Ni2+ ions were proposed, based on the separation value between v(as) (COO-) and v(s) (COO-), and the shifting of carbonyl groups. Coordination of the secondary amine in lisinopril to metal ions was also evidenced.
机译:为了模拟血管紧张素转化酶(ACE)抑制剂与ACE含锌活性中心的体内结合行为,在不同pH的水溶液中,通过使用弱化剂,研究了赖诺普利与锌或镍离子之间的体外相互作用。具有二阶导数红外光谱分析的全反射(ATR)/傅立叶变换红外(FT-IR)光谱。结果表明,赖诺普利解离过程在pH升高过程中以逐步的方式发生。加入后赖诺普利在pH 3.5的溶液中的IR峰在1642 cm(-1)(叔酰胺的羰基拉伸)和1582 cm(-1)(不对称COO拉伸)处移至添加后的1606和1586 cm(-1)分别添加了Ni2 +离子,但是加入Zn2 +离子后,赖诺普利的IR光谱没有明显变化。当在pH 5.0的赖诺普利溶液中添加Zn2 +离子时,1642 cm(-1)的峰也移至1604 cm(-1),1582 cm(-1)的峰移至1586 cm(-1),与添加Ni2 +离子后pH 3.5的变化相似。但是,在pH 5.0或pH 7.3下添加Ni2 +离子后,在1582和1642 cm(-1)处的峰都移至1599 cm(-1)。向pH 7.3的赖诺普利溶液中添加Zn2 +离子后,在1576 cm(-1)处的峰也移至1599 cm(-1)。基于v(as)(COO-)和v(s)(COO-)之​​间的分离值和位移,提出了赖诺普利与Zn2 +或Ni2 +离子之间的不同配位点或类型(螯合,桥联或假不明络合物)羰基。还证实了赖诺普利中的仲胺与金属离子的配位。

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