目的探讨丹参多酚酸盐及神经肽Y(neuropeptide-Y,NPY)干预注射对海马NPY的表达影响研究。方法采用匹鲁卡品(PILO)诱发癫痫模型,随机分为NPY干预组、丹参多酚酸盐干预组、盐水干预组和对照组,观察各组大鼠的行为学改变,用免疫组织化学法标记显示各组大鼠脑内海马NPY的表达变化。结果在海马门区、CA3区、CA1区有NPY阳性细胞表达,生理盐水及丹参多酚酸盐干预组可见颗粒细胞中NPY的异位表达。干预方法不同,海马NPY阳性细胞数表达不同,生理盐水(NS ...
陈丽丽 +4 more
doaj
神经肽Y、丹参多酚酸盐对癫痫大鼠海马FOS蛋白表达的影响及作用探讨
目的探讨NPY及丹参多酚酸盐干预对大鼠海马FOS蛋白的表达影响研究及作用探讨。方法采用匹鲁卡品诱发癫痫状态模型,随机分为丹参多酚酸盐干预组、NPY干预组、盐水干预组和对照组,观察各组大鼠的行为学改变,用免疫组织化学法标记显示各组癫痫发作脑内海马FOS蛋白的表达变化。结果在海马门区、CA3区、CA1区有FOS阳性细胞表达,干预方法不同,海马FOS阳性细胞数表达不同,NS、NPY、丹参多酚酸盐干预组FOS阳性细胞数高于对照组,差异有统计学意义 ...
陈丽丽 +4 more
doaj
目的探讨丹参多酚酸盐对匹鲁卡品致痫大鼠脑内神经元的损伤及BDNF表达的影响,探讨其抗痫的可能机制。方法采用匹鲁卡品诱发癫痫状态模型,随机分为丹参多酚酸盐干预组、盐水干预组和对照组,观察各组大鼠的行为学改变,用免疫组织化学法标记显示各组大鼠脑内海马BDNF的表达变化。结果在海马CA1区有BDNF阳性细胞表达,各组比较行t检验,差异有统计学意义 ...
陈丽丽 +6 more
doaj
1临床资料患者,女性,61岁,因间断性喘息1个月,加重3天于2018年11月3日入院。既往冠心病病史15年;支气管扩张病史4年;茶碱类药物过敏史;否认高血压、糖尿病病史。入院查体:急性病容,颈静脉充盈,口唇发绀,体温35.6℃,血压128/79mmHg,呼吸24次/min,脉搏70次/min,桶状胸,叩诊过清音,双肺可闻及吸气末湿罗音,右上肺可闻及少许干鸣音,余查体未见明显异常。辅助检查:心脏彩超示:EF:64.9%,主动脉硬化,左室舒张功能减低,左室收缩功能正常,二尖瓣返流(轻度)。胸部CT示:
毕铁琳, 李忻, 于倩
doaj
[<i>Danzhi Jiangtang</i> Capsule improves renal vascular endothelial function in rats with diabetic nephropathy by downregulating the Notch1/NICD/MAML1 signaling pathway]. [PDF]
Zhu S +7 more
europepmc +1 more source
[<i>Jiangzhi Quban</i> Recipe improves type 2 diabetes mellitus complicated with hyperlipidemia by multi-target regulation of the inflammation-metabolism network: network pharmacology analysis and clinical validation]. [PDF]
Li Z +6 more
europepmc +1 more source
[Advances in hydrogel drug delivery systems for myocardial infarction treatment]. [PDF]
Yang J, Zhou Z, Xie X, Ye M.
europepmc +1 more source
Li Qi Huo Xue Di Wan alleviates hypoxia-induced injury in human cardiac microvascular endothelial cells by inhibiting apoptosis and necroptosis pathways. [PDF]
Tang C, Zhang Y, Luo X, Peng J.
europepmc +1 more source
[Research progress on the application of molecularly imprinted nanozymes in the field of biosensing]. [PDF]
Zhang X, Liu S, Pan J.
europepmc +1 more source
[<i>Shenqi Xiezhuo</i> Decoction alleviates renal fibrosis in rats by ameliorating oxidative stress and inflammation through the Rap1/MAPK/FoxO3a signaling pathway]. [PDF]
Lu X +6 more
europepmc +1 more source

