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Fasudil Protects the Heart against Ischemia-Reperfusion Injury by Attenuating Endoplasmic Reticulum Stress and Modulating SERCA Activity: The Differential Role for PI3K/Akt and JAK2/STAT3 Signaling Pathways

机译:法舒地尔防止缺血再灌注损伤通过减弱内质网应激及调节sERCa活动心:对pI3K / akt和JaK2 / sTaT3信号转导途径的作用差异

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摘要

Disordered calcium homeostasis can lead to endoplasmic reticulum (ER) stress. Our previous data showed that time course activation of ER stress contributes to time-related increase in ischemia-reperfusion (I/R) injury. However, it has not been tested whether PI3K/Akt and JAK2/STAT3 pathways play differential roles in reducing ER stress to protect the heart. In the present study, using fasudil which is a specific inhibitor of ROCK, we aimed to investigate whether improved SERCA expression and activity accounts for reduced ER stress by ROCK inhibition, specifically whether PI3K/Akt and JAK2/STAT3 pathways are differentially involved in modulating SERCA activity to reduce ER stress and hence I/R injury. The results showed that during the reperfusion period following 45 min of coronary ligation the infarct size (IS) increased from 3 h of reperfusion (45.4±5.57%) to 24 h reperfusion (64.21±5.43, P<0.05), which was associated with ER stress dependent apoptosis signaling activation including CHOP, Caspase-12 and JNK (P<0.05, respectively).The dynamic ER stress activation was also related to impaired SERCA activity at 24 h of reperfusion. Administration of fasudil at 10 mg/Kg significantly attenuated ROCK activation during reperfusion and resulted in an improved SERCA activity which was closely associated with decreases in temporal activation of ER stress and IS changes. Interestingly, while both PI3K/Akt and JAK2/STAT3 signaling pathways played equal role in the protection offered by ROCK inhibition at 3 h of reperfusion, the rescued SERCA expression and activity at 24 h of reperfusion by fasudil was mainly due to JAK2/STAT3 activation, in which PI3K/Akt signaling shared much less roles.
机译:钙稳态失调可导致内质网(ER)应激。我们以前的数据表明,ER应力的时程激活会导致与时间相关的缺血再灌注(I / R)损伤增加。但是,尚未测试PI3K / Akt和JAK2 / STAT3途径是否在降低ER应力以保护心脏方面发挥不同作用。在本研究中,我们使用ROCK的特异性抑制剂fasudil进行研究,目的是研究ROCK抑制是否能改善SERCA表达和活性,从而降低ER应激,尤其是PI3K / Akt和JAK2 / STAT3途径是否在调节SERCA方面有差异减少ER压力从而减轻I / R损伤的活性。结果显示,在冠状动脉结扎45分钟后的再灌注期间,梗死面积(IS)从再灌注3 h(45.4±5.57%)增至24 h再灌注(64.21±5.43,P <0.05),与内质网应激依赖的凋亡信号激活包括CHOP,Caspase-12和JNK(分别为P <0.05)。动态内质网应激激活也与再灌注24h时SERCA活性受损有关。以10 mg / Kg的剂量使用法舒地尔可显着减弱再灌注过程中的ROCK活化作用,并改善SERCA活性,这与ER应激的暂时活化和IS变化的降低密切相关。有趣的是,尽管PI3K / Akt和JAK2 / STAT3信号通路在ROCK再灌注3 h抑制提供的保护中起着同等作用,但fasudil在再灌注24 h时SERCA表达和活性的恢复主要是由于JAK2 / STAT3激活,其中PI3K / Akt信令共享的角色要少得多。

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