Ischemic stroke (IS) is a life-threatening disease worldwide. Nitric oxide (NO) derived from l-arginine catalyzed by NO synthase (NOS) is closely associated with IS. Three isomers of NOS (nNOS, eNOS and iNOS) produce different concentrations of NO, resulting in quite unlike effects during IS. Of them, n/iNOSs generate high levels of NO, detrimental to brain by causing nerve cell apoptosis and/or necrosis, whereas eNOS releases small amounts of NO, beneficial to the brain via increasing cerebral blood flow and improving nerve function. As a result, a large variety of NO regulators (NO donors or n/iNOS inhibitors) have been developed for fighting IS. Regrettably, up to now, no review systematically introduces the progresses in this area. This article first outlines dynamic variation rule of NOS/NO in IS, subsequently highlights advances in NO regulators against IS, and finally presents perspectives based on concentration-, site- and timing-effects of NO production to promote this field forward.
Ischemic stroke (IS) poses a significant threat to global human health and life. In recent decades, we have witnessed unprecedented progresses against IS, including thrombolysis, thrombectomy, and a few medicines that can assist in reopening the blocked brain vessels or serve as standalone treatments for patients who are not eligible for thrombolysis/thrombectomy therapies. However, the narrow time windows of thrombolysis/thrombectomy, coupled with the risk of hemorrhagic transformation, as well as the lack of highly effective and safe medications, continue to present big challenges in the acute treatment and long-term recovery of IS. In the past 3 years, several excellent articles have reviewed pathophysiology of IS and therapeutic medicines for the treatment of IS based on the pathophysiology. Regretfully, there is no comprehensive overview to summarize all categories of anti-IS drugs/agents designed and synthesized based on molecular mechanisms of IS pathophysiology. From medicinal chemistry view of point, this article reviews a multitude of anti-IS drugs/agents, including small molecule compounds, natural products, peptides, and others, which have been developed based on the molecular mechanism of IS pathophysiology, such as excitotoxicity, oxidative/nitrosative stresses, cell death pathways, and neuroinflammation, and so forth. In addition, several emerging medicines and strategies, including nanomedicines, stem cell therapy and noncoding RNAs, which recently appeared for the treatment of IS, are shortly introduced. Finally, the perspectives on the associated challenges and future directions of anti-IS drugs/agents are briefly provided to move the field forward.
The treatment of acute ischemic stroke (AIS) remains a tough challenge in clinic. Here, we report the anti-AIS activity of R- and S-FMPB generated from hybridization of ring-opened R- and S-3-N-butylphthalide (R- and S-NBP) derivatives (R- and S-APB) with 4-fluro-edaravone (4-F-Eda), respectively. S-FMPB (10 mg/kg, iv) significantly improved the neurological score and alleviated cerebral infarction and edema of rats suffered from transient middle cerebral artery occlusion (tMCAO), superior to RS- and R-FMPB, as well as better than RS-FMPB by oral administration in previous studies. Importantly, S-FMPB is more active not only than the equimolar S-APB and 4-F-Eda alone or in combination but also than the clinical drugs NBP and edaravone (Eda) in combination at the equimolar doses. Furthermore, S-FMPB showed relative stability in plasma or liver microsome of rats but could be converted into two active metabolites (S-NBP and 4-F-Eda) in rats with good pharmacokinetic properties in terms of longer half-life period (t(1/2)) and mean residence time (MRT) as well as larger area under the concentration-time curve (AUC) of S-NBP than those from S-NBP and 4-F-Eda single or in combination by iv administration, suggesting that S-NBP and 4-F-Eda may synergistically play the anti-AIS activity. Our findings suggest that S-FMPB may be used as a potential anti-AIS agent to further study.
羧甲司坦(CMC)是治疗慢性阻塞性肺病的常用药,长期服用对胃肠道产生严重刺激.L-精氨酸是一氧化氮(NO)合酶(NOS)的底物,在体内可转化为对心血管及胃肠道等有益的NO.L-精氨酸属碱性氨基酸,能与某些含羧酸基团的化合物成盐以改善原药的水溶性,并可能由于促进NO的释放带来活性的提高或毒副作用的缓解.因此,本文设计、合成了 CMC的L-精氨酸盐(CMCA),并测试其理化性质以及在香烟烟雾诱导的人支气管上皮细胞损伤模型中清除活性氧(ROS)、抗细胞凋亡和NO释放的能力.结果表明,CMCA能有效捕获ROS,释放NO,并抑制细胞凋亡,效果优于CMC或L-精氨酸,提示该化合物值得深入研究和开发.
The treatment of ischemic stroke (IS) remains a big challenge in clinics, and it is urgently needed to develop novel, safe, and effective medicines against IS. Here, we report the design, synthesis, and biological evaluation of organic NO2- donors as potential agents for the treatment of IS. The representative compound 4a was able to slowly generate low concentrations of NO2- by reaction with a thiol-containing nucleophile, and the NO2- was selectively converted into NO under ischemic/hypoxia conditions to protect primary rat neurons from oxygen-glucose deprivation and recovery (OGD/R)-induced cytotoxicity by enhancing the Nrf2 signaling and activating the NO/cGMP/PKG pathway. Treatment with 4a at 2 h before or after ischemia mitigated the ischemia/reperfusion-induced brain injury in middle cerebral artery occlusion (MCAO) rats by producing NO and enhancing Nrf2 signaling. Furthermore, 4a significantly promoted endothelial cell proliferation and angiogenesis within the ischemic penumbra. Our findings suggest that this type of NO2- donors, like 4a, may be valuable to fight IS and other ischemic diseases.
Small and medium -sized enterprises play a great role in the development o f regional economy.The transfer of these enterprises may re sult in imbalance between the region al economies,and further results in recession of the economy.This paper reviews th is phenomenon in other regions and countries.For the small and medium -sized enterprises in developed regions and countries,the cycle from development to transfer is 20years,and there are indications that the cycle tends to get shorter.The paper also makes a n analysis on the influence of these s mall and medium -sized enterprises on a re gion,studies the exception that the small and medium -sized enterprises in the Pearl River Delta areas of Guangd ong have kept growing for more than 20years,summarizes their developmen t experiences:grouping,categorizing,focusing and emphasizing the two ends,and points out the conditions u nder which a region can promote the develo pment of small and medium -sized ente rprises.