School of Chemistry and Bio21 Molecular Science and Biotechnology Institute, University of Melbourne, Parkville, Vic., Australia.
Bioorg Med Chem Lett. 2011 Sep 1;21(17):5102-6. doi: 10.1016/j.bmcl.2011.03.040. Epub 2011 Mar 17.
3',4'-Dihydroxyflavonol (DiOHF) is a cardioprotective flavonol that reduces injury associated with myocardial ischaemia and reperfusion. We hypothesized that the efficacy of DiOHF could be enhanced through its targeting to hypoxic regions of partial reperfusion. Copper(I)-catalyzed ligation of an azide-modified DiOHF analogue to 2-propargyl-nitroimidazole afforded a DiOHF-nitroimidazole conjugate (DiOHF-NIm). When incubated with Con8 cells under normoxic conditions DiOHF-NIm could be detected in both the culture supernatant and cell lysate, whereas under hypoxic conditions it was present in substantially reduced amounts consistent with its selective metabolism under hypoxia. DiOHF-NIm possessed antioxidant activity comparable to DiOHF through scavenging of superoxide produced by NADPH/NADPH oxidase, but had significantly attenuated vasorelaxant activity. DiOHF-NIm treatment significantly reduced lactate dehydrogenase release following ischaemia/reperfusion in hindlimbs of anaesthetized rats (p <0.05), to a level similar to DiOHF treatment but also at earlier time points. DiOHF-NIm significantly reduced levels of myeloperoxidase (p <0.05), a biomarker of neutrophil accumulation, whereas the reduction afforded by DiOHF was not significant. DiOHF-NIm therefore represents a promising potential therapeutic for ischaemia/reperfusion injury.
3',4'-二羟基黄酮醇(DiOHF)是一种具有心脏保护作用的类黄酮,可减少与心肌缺血和再灌注相关的损伤。我们假设通过将其靶向部分再灌注的缺氧区域,可以增强 DiOHF 的疗效。铜(I)催化叠氮化物修饰的 DiOHF 类似物与 2-丙炔基-硝基咪唑的连接,得到 DiOHF-硝基咪唑缀合物(DiOHF-NIm)。在常氧条件下与 Con8 细胞孵育时,DiOHF-NIm 可在培养上清液和细胞裂解物中检测到,而在缺氧条件下,其存在量明显减少,与缺氧下的选择性代谢一致。DiOHF-NIm 通过清除 NADPH/NADPH 氧化酶产生的超氧阴离子,具有与 DiOHF 相当的抗氧化活性,但血管舒张活性明显减弱。在麻醉大鼠后肢的缺血/再灌注后,DiOHF-NIm 处理显著降低乳酸脱氢酶的释放(p <0.05),达到与 DiOHF 处理相似的水平,但在更早的时间点。DiOHF-NIm 还显著降低了髓过氧化物酶(p <0.05)的水平,髓过氧化物酶是中性粒细胞聚集的生物标志物,而 DiOHF 降低的水平不显著。因此,DiOHF-NIm 代表了一种有前途的缺血/再灌注损伤治疗药物。