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7篇 您的检索式:作者名="Hasan Di"
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16-Gingerol protects against cardiac remodeling by inhibiting the p38 mitogen-activated protein kinase pathway显示文摘6-Gingerol,a pungent ingredient of ginger,has been reported to possess anti-inflammatory and antioxidant activities,but the effect of 6-gingerol on pressure overload-induced cardiac remodeling remains inconclusive.In this study,we investigated the effect of 6-gingerol on cardiac remodeling in in vivo and in vitro models,and to clarify the underlying mechanisms.C57BL/6 mice were subjected to transverse aortic constriction(TAC),and treated with 6-gingerol(20 mg/kg,ig)three times a week(1 week in advance and continued until the end of the experiment).Four weeks after TAC surgery,the mice were subjected to echocardiography,and then sacrificed to harvest the hearts for analysis.For in vitro study,neonatal rat cardiomyocytes and cardiac fibroblasts were used to validate the protective effects of 6-gingerol in response to phenylephrine(PE)and transforming growth factor-β(TGF-β)challenge.We showed that 6-gingerol administration protected against pressure overload-induced cardiac hypertrophy,fibrosis,inflammation,and dysfunction in TAC mice.In the in vitro study,we showed that treatment with 6-gingerol(20μM)blocked PE-induced-cardiomyocyte hypertrophy and TGF-β-induced cardiac fibroblast activation.Furthermore,6-gingerol treatment significantly decreased mitogen-activated protein kinase p38(p38)phosphorylation in response to pressure overload in vivo and extracellular stimuli in vitro,which was upregulated in the absence of 6-gingerol treatment.Moreover,transfection with mitogen-activated protein kinase kinase 6 expressing adenoviruses(Ad-MKK6),which specifically activated p38,abolished the protective effects of 6-gingerol in both in vitro and in vivo models.In conclusion,6-gingerol improves cardiac function and alleviates cardiac remodeling induced by pressure overload in a p38-dependent manner.The present study demonstrates that 6-gingerol is a promising agent for the intervention of pathological cardiac remodeling.Shu-qing Ma Zhen Guo Fang-yuan Liu Shahzad-Gul Hasan Dan Yang Nan Tang Peng An Ming-yu Wang Hai-ming Wu Zheng Yang Di Fan Qi-zhu Tang 2021Acta Pharmacologica Sinica2021,42,10:2
2Mechanisms of resistance to photodynamic therapy显示文摘CASAS A DI VENOSA G HASAN T 0,,16:1
3Activity of opioid ligands incells expressing cloned muopioid receptors 显示文摘Parham G Hasan Di David C 2003BMCPharmacology2003,3,1:1
4Mechanisms of resistance tophotodynamic therapy显示文摘Casas A Di Venosa G Hasan T 2011Curr Med Chem2011,18,16:1
5Antibacterial activity and composition of essential oils from Origanum , Thymbra and Satureja species with commercial importance in Turkey显示文摘Hasan Baydar Osman Sa?di? Gülcan ?zkan Tahsin Karado?an 2003Food Control2003,,3:1
6Antibacterial activity and composition of essential oils from Origanum , Thymbra and Satureja species with commercial importance in Turkey显示文摘Hasan Baydar Osman Sa?di? Gülcan ?zkan Tahsin Karado?an 2003Food Control2003,,3:1
7Online coherence identification using dynamic time warping for controlled islanding显示文摘Controlled islanding is considered to be the last countermeasure to prevent a system-wide blackout in case of cascading failures.It splits the system into self-sustained islands to maintain transient stability at the expense of possible loss of load.Generator coherence identification is critical to controlled islanding scheme as it helps identify the optimal cut-set to maintain the transient stability of the post-islanding systems.This paper presents a novel approach for online generator coherency identification using phasor measurement unit(PMU) data and dynamic time warping(DTW).Results from the coherence identification are used to further cluster non-generator buses using spectral clustering with the objective of minimizing power flow disruptions.The proposed approach is validated and compared to existing methods on the IEEE39-bus system and WECC 179-bus system, through which its advantages are demonstrated.Hasan Ul BANNA Zhe YU Di SHI Zhiwei WANG Dawei SU Chunlei XU Sarika Khushalani SOLANKI Jignesh M.SOLANKI 2019Journal of Modern Power Systems and Clean Energy2019,7,1:0
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