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S-nitrosylation and attenuation of excessive calcium flux by pentacycloundecane derivatives.

机译:五环十一烷衍生物的S-亚硝基化作用和过量钙通量的衰减。

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A novel series of polycyclic amines, containing nitrogen monoxide donating moieties, were synthesised and tested for calcium channel and N-methyl-D-aspartate receptor modulating activity. The synthesised compounds were classified into two groups, based on their nitrogen monoxide donating moieties: unsaturated nitro compounds (1, 2 and 3) and nitro esters, or nitrates (4, 5 and 6). The nitrates were obtained via the reaction of hydroxyl functionalities with thionylchloride nitrate. All of the compounds synthesised exhibited significant (p < 0.01) S-nitrosylation capacity. The calcium channel activity of the polycyclic amines was evaluated using a KCl mediated fluorescent calcium flux assay. All the compounds exhibited better calcium channel antagonism than the lead structure, NGP1-01, with compound 1 exhibiting calcium channel blockade comparable to the commercially available nimodipine at concentrations of 10 μM and 1 μM. Compounds 3 and 4 inhibited calcium flux to these levels at 10 μM concentrations. NMDA/glycine mediated N-methyl-D-aspartate receptor (NMDAR) calcium influx inhibition was evaluated at a 100 ?M concentration using a fluorescent calcium flux assay. All the compounds exhibited NMDAR antagonism with compounds 1 (25.4 %), 2 (20.24 %), 3 (33.14 %) and 6 (24.55 %) showing the most significant NMDAR inhibitory activity (p < 0.01). No clear correlation was observed between the S-nitrosylation capabilities of the compounds and their calcium channel activity or NMDAR channel antagonism, indicating that other factors probably play a more decisive role in the mechanism of pentacycloundecylamine channel modulation. This could include the geometric and steric bulk considerations that have been described to contribute to the channel activities of the pentacycloundecylamines. All the compounds synthesised exhibited promising calcium channel and NMDAR channel inhibitory activity and show promise as potential lead compounds for drug development against neurodegeneration.
机译:合成了一系列新颖的含一氧化氮供体的多环胺,并测试了其钙通道和N-甲基-D-天冬氨酸受体调节活性。合成的化合物根据其一氧化氮给体部分分为两类:不饱和硝基化合物(1、2和3)和硝基酯,或硝酸盐(4、5和6)。通过羟基官能团与亚硫酰氯硝酸盐的反应获得硝酸盐。合成的所有化合物均显示出显着的(p <0.01)S-亚硝基化能力。使用KCl介导的荧光钙通量测定法评估了多环胺的钙通道活性。与浓度为10μM和1μM的尼莫地平相当的化合物1相比,与铅结构NGP1-01相比,所有化合物均表现出更好的钙通道拮抗作用。在10μM浓度下,化合物3和4将钙通量抑制到这些水平。使用荧光钙通量测定法以100μM的浓度评估NMDA /甘氨酸介导的N-甲基-D-天冬氨酸受体(NMDAR)的钙流入抑制。所有化合物均表现出NMDAR拮抗作用,化合物1(25.4%),2(20.24%),3(33.14%)和6(24.55%)表现出最显着的NMDAR抑制活性(p <0.01)。化合物的S-亚硝基化能力与其钙通道活性或NMDAR通道拮抗作用之间未观察到明确的相关性,表明其他因素可能在五环十一烷基胺通道调节机制中起决定性作用。这可能包括描述的几何和空间体积因素,这些因素有助于五环十一烷基胺的通道活性。合成的所有化合物均显示出有希望的钙通道和NMDAR通道抑制活性,并有望作为抗神经变性药物开发的潜在先导化合物。

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