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991.
目的:探讨2型糖尿病(T2DM)患者血清RANTES与下肢大血管病变的相关性.方法:(1)T2DM 61例,根据是否合并下肢大血管病变,分为非下肢大血管病变组(30例)和下肢大血管病变组(31例),与正常对照组20例比较,采用双抗体夹心ELISA法测定血清RANTES,比较三组间血清RANTES水平的差异.(2)测定各组TG、TC、LDL、Hd1-ch、、FPG、HbA1c、FIB等水平,分析其与2型糖尿病大血管病变的相关性.结果:(1)2型糖尿病组血清RANTES水平明显高于正常对照组(P<0.05),下肢大血管病变组血清RANTES水平明显高于非下肢大血管病变组和正常对照组(P<0.05),(2)以T2DM组为整体,有无下肢大血管病变为因变量Y(有=1,无=0),以RANTES等其它危险因素为自变量,进行Logstic回归分析,SBP、病程和RANTES入回归方程.结论:RANTES可能是T2DM下肢大血管病变的一个重要的独立危险因素. 相似文献
992.
993.
目的探讨蜂胶黄酮对脑缺血再灌注损伤的保护作用。方法采用大鼠大脑中动脉栓塞模型(MCAO),研究蜂胶黄酮对脑缺血再灌注脑梗死体积和行为学评分的影响,对脑组织内IL-1β、IL-6和TNF-α含量的影响。结果蜂胶黄酮能够减少MCAO脑梗死体积和行为学评分,降低脑组织中IL-1β、IL-6和TNF-α的含量(P〈0.05)。结论蜂胶黄酮对大鼠脑缺血再灌注损伤有一定保护作用,其作用机制与降低脑组织中IL-1β、IL-6和TNF-α含量有关。 相似文献
994.
ObjectivesStromal cell‐derived factor‐1 (SDF‐1) actively directs endogenous cell homing. Exendin‐4 (EX‐4) promotes stem cell osteogenic differentiation. Studies revealed that EX‐4 strengthened SDF‐1‐mediated stem cell migration. However, the effects of SDF‐1 and EX‐4 on periodontal ligament stem cells (PDLSCs) and bone regeneration have not been investigated. In this study, we aimed to evaluate the effects of SDF‐1/EX‐4 cotherapy on PDLSCs in vitro and periodontal bone regeneration in vivo.MethodsCell‐counting kit‐8 (CCK8), transwell assay, qRT‐PCR and western blot were used to determine the effects and mechanism of SDF‐1/EX‐4 cotherapy on PDLSCs in vitro. A rat periodontal bone defect model was developed to evaluate the effects of topical application of SDF‐1 and systemic injection of EX‐4 on endogenous cell recruitment, osteoclastogenesis and bone regeneration in vivo.ResultsSDF‐1/EX‐4 cotherapy had additive effects on PDLSC proliferation, migration, alkaline phosphatase (ALP) activity, mineral deposition and osteogenesis‐related gene expression compared to SDF‐1 or EX‐4 in vitro. Pretreatment with ERK inhibitor U0126 blocked SDF‐1/EX‐4 cotherapy induced ERK signal activation and PDLSC proliferation. SDF‐1/EX‐4 cotherapy significantly promoted new bone formation, recruited more CXCR4+ cells and CD90+/CD34‐ stromal cells to the defects, enhanced early‐stage osteoclastogenesis and osteogenesis‐related markers expression in regenerated bone compared to control, SDF‐1 or EX‐4 in vivo.ConclusionsSDF‐1/EX‐4 cotherapy synergistically regulated PDLSC activities, promoted periodontal bone formation, thereby providing a new strategy for periodontal bone regeneration. 相似文献
995.
996.
Li Y Luo J Lau WM Zheng G Fu S Wang TT Zeng HP So KF Chung SK Tong Y Liu K Shen J 《PloS one》2011,6(8):e22901
In the present study, we aim to elucidate the roles of caveolin-1(Cav-1), a 22 kDa protein in plasma membrane invaginations, in modulating neuronal differentiation of neural progenitor cells (NPCs). In the hippocampal dentate gyrus, we found that Cav-1 knockout mice revealed remarkably higher levels of vascular endothelial growth factor (VEGF) and the more abundant formation of newborn neurons than wild type mice. We then studied the potential mechanisms of Cav-1 in modulating VEGF signaling and neuronal differentiation in isolated cultured NPCs under normoxic and hypoxic conditions. Hypoxic embryonic rat NPCs were exposed to 1% O2 for 24 h and then switched to 21% O2 for 1, 3, 7 and 14 days whereas normoxic NPCs were continuously cultured with 21% O2. Compared with normoxic NPCs, hypoxic NPCs had down-regulated expression of Cav-1 and up-regulated VEGF expression and p44/42MAPK phosphorylation, and enhanced neuronal differentiation. We further studied the roles of Cav-1 in inhibiting neuronal differentiation by using Cav-1 scaffolding domain peptide and Cav-1-specific small interfering RNA. In both normoxic and hypoxic NPCs, Cav-1 peptide markedly down-regulated the expressions of VEGF and flk1, decreased the phosphorylations of p44/42MAPK, Akt and Stat3, and inhibited neuronal differentiation, whereas the knockdown of Cav-1 promoted the expression of VEGF, phosphorylations of p44/42MAPK, Akt and Stat3, and stimulated neuronal differentiation. Moreover, the enhanced phosphorylations of p44/42MAPK, Akt and Stat3, and neuronal differentiation were abolished by co-treatment of VEGF inhibitor V1. These results provide strong evidence to prove that Cav-1 can inhibit neuronal differentiation via down-regulations of VEGF, p44/42MAPK, Akt and Stat3 signaling pathways, and that VEGF signaling is a crucial target of Cav-1. The hypoxia-induced down-regulation of Cav-1 contributes to enhanced neuronal differentiation in NPCs. 相似文献
997.
药用野生稻具有多种抗病虫性,是水稻品种改良重要的种质资源之一。本研究采用与栽培稻遗传图第4连锁群中与RTSV和Glh紧密连锁的RFLP标记RZ262及其筛选出来的BAC克隆作探针,对药用野生稻进行荧光原位杂交,供试探针均被定位于药用野生稻第4染色体短臂的中部,百分距分别为74.86±3.72和73.98±4.44,信号检出率为7.6%和45.1%。BAC克隆和RFLP标记探针杂交位置几乎一致,说明在栽培稻和野生稻中RFLP标记RZ262都存在同一BAC克隆的大插入片段中,药用野生稻与抗性基因RTSV和Glh的同源顺序就在第4染色体信号出现的相应位置,从而为作物育种开发和利用野生资源的抗性基因提供了理论依据。 相似文献
998.
邵月 《中国科学:生命科学》2014,44(1):21-28
P53调节多个细胞信号转导通路,其功能与肿瘤抑制、细胞周期调控、能量代谢调节、促进线粒体生物发生、保持氧化应激平衡等有关,保持P53基因的稳态表达是预防肿瘤和延缓衰老的策略之一.体育锻炼能促进机体新陈代谢、延缓细胞衰老、减少细胞癌变几率,适宜的运动能够通过影响P53调节的多个细胞信号通路延续P53信号稳态. 相似文献
999.
1000.