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Impact of chirality on the photoinduced charge transfer in linked systems containing naproxen enantiomers

机译:手性对含有萘普生对映体的连接系统中光诱导电荷转移的影响

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The model reaction of photoinduced donor-acceptor interaction in linked systems (dyads) has been used to study the comparative reactivity of a well-known anti-inflammatory drug, (S)-naproxen (NPX) and its (R)-isomer. (R)- or (S)-NPX in these dyads is linked to (S)-N-methylpyrrolidine (Pyr) using a linear or cyclic amino acid bridge (AA or CyAA), to give (R)-/(S)-NPX-AA-(S)-Pyr flexible and (R)-/(S)-NPX-CyAA-(S)-Pyr rigid dyads. The donor-acceptor interaction is reminiscent of the binding (partial charge transfer, CT) and electron transfer (ET) processes involved in the extensively studied inhibition of the cyclooxygenase enzymes (COXs) by the NPX enantiomers. Besides that, both optical isomers undergo oxidative metabolism by enzymes from the P450 family, which also includes ET. The scheme proposed for the excitation quenching of the (R)- and (S)-NPX excited state in these dyads is based on the joint analysis of the chemically induced dynamic nuclear polarization (CIDNP) and fluorescence data. The H-1 CIDNP effects in this system appear in the back electron transfer in the biradical-zwitterion (BZ), which is formed via dyad photoirradiation. The rate constants of individual steps in the proposed scheme and the fluorescence quantum yields of the local excited (LE) states and exciplexes show stereoselectivity. It depends on the bridge's length, structure and solvent polarity. The CIDNP effects (experimental and calculated) also demonstrate stereodifferentiation. The exciplex quantum yields and the rates of formation are larger for the dyads containing (R)-NPX, which let us suggest a higher contribution from the CT processes with the (R)-optical isomer.
机译:在链接的系统(二元组)中光诱导的供体-受体相互作用的模型反应已用于研究众所周知的抗炎药(S)-萘普生(NPX)及其(R)-异构体的比较反应性。使用线性或环状氨基酸桥(AA或CyAA)将这些二元组中的(R)-或(S)-NPX与(S)-N-甲基吡咯烷(Pyr)连接,得到(R)-/(S) -NPX-AA-(S)-Pyr柔性和(R)-/(S)-NPX-CyAA-(S)-Pyr刚性二元组。供体与受体的相互作用使人联想到结合(部分电荷转移,CT)和电子转移(ET)的过程,这些过程与NPX对映异构体对环氧合酶(COXs)的抑制作用进行了广泛研究。除此之外,两种光学异构体都通过P450家族(包括ET)的酶进行氧化代谢。为在这些二元组中的(R)-和(S)-NPX激发态进行激发猝灭而提出的方案基于化学诱导的动态核极化(CIDNP)和荧光数据的联合分析。该系统中的H-1 CIDNP效应出现在双自由基两性离子(BZ)中的反向电子传递中,该双自由基两性离子是通过二元光辐照形成的。所提出的方案中各个步骤的速率常数以及局部激发态和激基复合物的荧光量子产率显示出立体选择性。它取决于桥的长度,结构和溶剂极性。 CIDNP效应(实验的和计算的)也证明了立体分化。含(R)-NPX的二元化合物的激基复合物量子产率和形成速率较大,这使我们建议使用(R)-光学异构体的CT过程具有更高的贡献。

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