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新型螺噻嗪作为强效神经保护剂的合成、生物活性、分布及膜通透性

Synthesis, biological activity, distribution and membrane permeability of novel spiro-thiazines as potent neuroprotectors.

作者信息

Blokhina Svetlana V, Volkova Tatyana V, Ol'khovich Marina V, Sharapova Angelica V, Proshin Alexey N, Bachurin Sergey O, Perlovich German L

机构信息

Institute of Solution Chemistry, Russian Academy of Sciences, 153045 Ivanovo, Russia.

Institute of Solution Chemistry, Russian Academy of Sciences, 153045 Ivanovo, Russia.

出版信息

Eur J Med Chem. 2014 Apr 22;77:8-17. doi: 10.1016/j.ejmech.2014.02.052. Epub 2014 Feb 21.

Abstract

New spiro-derivatives of 1,3-thiazine - potential neuroprotectors have been synthesized. It has been determined that the obtained compounds are biologically active and capable of blocking the glutamate-induced calcium ion uptake into synaptosomes of rat brain cortex. The inhibitory activity of the test substances was shown to depend on the chemical nature and structure of the substituents bound with an exocyclic nitrogen atom. Non-polar alkyl and polar radicals with halogen, oxygen and nitrogen atoms were used as substituents. It is typical of the active spiro-thiazines to have alkyl substituents in ortho- and para-position of the benzene ring. Among the investigated spiro-thiazines it is the derivatives with ethyl- and isopropyl-groups in the aril part of the molecules that are the lead-compounds with a high inhibitory ability. We measured the distribution coefficients of the substances in octanol/buffer and hexane/buffer systems and made conclusions about the ability of the investigated drug-like compounds to penetrate the biological membranes. By using the parabolic model we derived a quadratic equation that allowed us to evaluate quantitatively the inhibitory activity of spiro-thiazines with hydrophobic substituents based on lipophilicity data. We also studied the permeability through the phospholipidic membrane and introduced a correlation equation describing the dependence of the investigated spiro-thiazines activity on the descriptors characterizing the donor-acceptor properties.

摘要

1,3 - 噻嗪的新型螺环衍生物——潜在的神经保护剂已被合成。已确定所获得的化合物具有生物活性,能够阻断谷氨酸诱导的钙离子摄取到大鼠脑皮质突触体中。测试物质的抑制活性显示取决于与环外氮原子结合的取代基的化学性质和结构。非极性烷基以及带有卤素、氧和氮原子的极性基团被用作取代基。活性螺环噻嗪的典型特征是在苯环的邻位和对位具有烷基取代基。在所研究的螺环噻嗪中,分子芳基部分带有乙基和异丙基的衍生物是具有高抑制能力的先导化合物。我们测量了这些物质在正辛醇/缓冲液和己烷/缓冲液体系中的分配系数,并就所研究的类药物化合物穿透生物膜的能力得出结论。通过使用抛物线模型,我们推导了一个二次方程,该方程使我们能够基于亲脂性数据定量评估具有疏水取代基的螺环噻嗪的抑制活性。我们还研究了通过磷脂膜的通透性,并引入了一个相关方程来描述所研究的螺环噻嗪活性与表征供体 - 受体性质的描述符之间的关系。

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