首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >Interpreting the effect of confined cyclodextrin media on the FRET efficacy between Naproxen and a bio-active 3-pyrazolyl-2-pyrazoline derivative on the light of spectroscopic investigation appended by TD-DFT simulations and molecular docking analysis
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Interpreting the effect of confined cyclodextrin media on the FRET efficacy between Naproxen and a bio-active 3-pyrazolyl-2-pyrazoline derivative on the light of spectroscopic investigation appended by TD-DFT simulations and molecular docking analysis

机译:用TD-DFT模拟施加光谱调查对萘锡和生物活性3-吡唑基-2-吡唑啉衍生物的狭窄环糊精介质对萘芬和生物活性3-吡唑基-2-吡唑啉衍生物的影响

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摘要

Significant Fluorescence Resonance Energy Transfer (FRET) process was observed between Naproxen (NPX) and a pharmaceutically important 3-pyrazolyl-2-pyrazoline derivative (PYZ) in bulk aqueous and heterogeneous cyclodextrin medium. The FRET efficacy of NPX-PYZ pair varied considerably in different cyclodextrin environments. Variation in the FRET efficacy mainly occurs due to a change in microenvironment of the fluorophores from bulk to a confined one. The structures of the FRET-pair and their interactions with cyclodextrins invoke a change in their spatial arrangement and proximity, which noticeably affects the FRET efficacy. The plausible explanations for this modulation in FRET efficacy has been established by employing steady state and time resolved fluorescence techniques in which simultaneous time-correlated analysis of the donor decay was observed to be reduced through FRET rather than some other relaxation pathway. Molecular Docking Analysis provided evidence of the possible modes of spatial orientation of the FRET pair in different cyclodextrin nano-cavities. Further TD-DFT calculations using B3LYP/6-31G/(d,p) method provided an intriguing insight about the medium dependent changes in the energies of the frontier molecular orbitals (HOMO-LUMO) associated with the corresponding FRET pair. (C) 2017 Elsevier B.V. All rights reserved.
机译:在萘普克森(NPX)和块状水性和非均相环糊精介质中,在萘普伦(NPX)和药学上重要的3-吡唑基-2-吡唑啉衍生物(PIZ)之间观察到显着的荧光共振能量转移(FRET)方法。 NPX-PYZ对在不同的环糊精环境中,NPX-PYZ对的焦点效果显着变化。由于荧光团的微环境变化到狭窄的荧光团的变化,荧光功效的变化主要发生。 FRET-对的结构及其与环糊精的相互作用调用它们的空间布置和接近度的变化,这显着影响了FRET功效。通过采用稳态和时间分辨荧光技术建立了对FRET功效的这种调制的可兼容解释,其中观察到供体衰减的同时与释放的同时相关分析减少,而不是一些其他松弛途径。分子对接分析提供了在不同环糊精纳米腔中的褶皱对的可能模式的可能性。使用B3LYP / 6-31G /(D,P)方法的其他TD-DFT计算提供了关于与相应的FRET对相关的前部分子轨道(HOMO-LUMO)的能量的介质依赖性变化的有趣洞察力。 (c)2017 Elsevier B.v.保留所有权利。

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