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排序方式: 共有943条查询结果,搜索用时 15 毫秒
1.
研究发现NH_2-MIL-101(Fe)金属有机框架材料可催化H_2O_2氧化3,3,5,5-四甲基联苯胺(TMB)显蓝色,表现出过氧化物模拟酶特性,而且在较宽的温度(4~80℃)及pH值范围(2~10)内保持其模拟酶活性,结合葡萄糖氧化酶,建立了测定葡萄糖的方法.在优化条件下,吸光度与葡萄糖浓度在0.75~50μmol/L范围内呈现良好的线性关系,对葡萄糖的检出限为0.75μmol/L.将本法用于血清中葡萄糖的测定,获得满意结果.  相似文献   
2.
AIMTo investigate whether Rho-associated coiled-coil kinase (ROCK) is involved in high glucose-induced apoptosis of primary cardiomyocytes by regulating PI3K/Akt signaling pathway. METHODSPrimary Wistar rat cardiomyocytes were cultured and identified by α-sarcomeric actin (α-SCA) immunohistochemistry. Cardiomyocytes were treated with 5.5, 33 and 40 mmol/L glucose for 48 h. The cell viability was measured by MTT assay, and the mRNA expression of ROCK1 and ROCK2 in the cardiomyocytes was detected by RT-qPCR. Flow cytometry was used to analyze the apoptosis of the cardiomyocytes. The protein levels of ROCK1, ROCK2, cleaved caspase-3, Bcl-2, PI3K, Akt and p-Akt were determined by Western blot. In order to confirm the regulatory effect of ROCKs on PI3K/Akt signaling pathway, the cells were divided into control group (5.5 mmol/L glucose), high glucose group (33 mmol/L glucose) and high glucose+Y27632 (ROCK inhibitor) group. Western blot was used to detect the protein levels of ROCK1, ROCK2, PI3K, Akt and p-Akt. RESULTSAfter 48 h of high glucose exposure, the values of relative cell viability in 33 and 40 mmol/L glucose groups were (79.71±2.43)% and (68.41±7.49)%, respectively, both of which were significantly decreased compared with normal control group (P<0.05). After 48 h of high glucose exposure, the relative mRNA levels of ROCK1 and ROCK2 in 33 and 40 mmol/L glucose groups were significantly increased compared with normal control group (P<0.05). Compared with normal control group, the apoptotic rate in 33 and 40 mmol/L glucose groups was increased significantly (P<0.05). Compared with normal control group, the protein expression of ROCK1, ROCK2 and cleaved caspase-3 in 33 and 40 mmol/L glucose groups was increased (P<0.05), while the protein expression of Bcl-2 was decreased (P<0.05). No significant difference in the protein levels of PI3K and Akt among the 3 groups was observed, while the protein level of p-Akt in 33 and 40 mmol/L glucose groups was decreased compared with normal control group (P<0.05). Compared with high glucose group, the expression of ROCK1 and ROCK2 was decreased in high glucose+Y27632 group. No significant difference in the protein levels of PI3K and Akt among the 3 groups was observed. Compared with normal control group, the protein level of p-Akt in high glucose group was decreased, and the protein level of p-Akt in high glucose+Y27632 group was increased significantly compared with high glucose group. CONCLUSION Under high glucose environment, ROCK may reduce the level of p-Akt by inhibiting the PI3K/Akt signaling pathway, thus promoting the apoptosis of cardiomyocytes.  相似文献   
3.
甜玉米是世界上重要的果蔬两用型作物之一。建立快速、无损检测甜玉米糖分含量的方法,对于甜玉米品质育种工作中的材料鉴定、筛选具有重要意义。选取了104份糖分含量变幅较大的甜玉米材料进行了近红外光谱分析,结合酶法测量的化学值,利用偏最小二乘法以及不同光谱处理和数学处理相结合,对全光谱波段进行了化学计量学的分析统计,构建了葡萄糖、果糖和蔗糖含量的近红外光谱定标模型。用外部验证样品集进行验证,对所建模型的实际预测能力进行检验。结果表明:最优光谱处理方式葡萄糖为加权多元散射校正,果糖和蔗糖的为标准正常化加去散射处理;最优的导数处理葡萄糖为2阶导数,果糖和蔗糖的为1阶和3阶导数。葡萄糖、果糖和蔗糖定标模型的交叉验证相关系数分别为0.646、0.645、0.820,交叉验证标准偏差分别为0.321、0.275、1.508;外部验证集葡萄糖、果糖和蔗糖的预测相关系数分别为0.593、0.780、0.891,表明所建立的果糖和蔗糖预测模型具有较好的预测性,可应用于甜玉米种质资源筛选,而葡萄糖模型的预测性较差,需继续完善。  相似文献   
4.
为研究饲料中维生素A(VA)对青鱼幼鱼生长、血清生化指标和肝脏糖脂代谢相关酶活性及基因表达的影响,实验选取360尾初始体质量为(6.10±0.10) g的青鱼幼鱼,随机分配至3个实验组中,每个实验组设置3个平行。采用单因素实验设计,以无维酪蛋白和明胶为蛋白源、菜籽油为脂肪源、糊精为糖源,同时添加矿物质混合物和维生素混合物(无VA添加)配制成3组实验饲料,分别以饲料1 (Diet1)、饲料2 (Diet2)和饲料3 (Diet3)表示。在饲料1、饲料2和饲料3中分别添加0、2 200和20 000 IU/kg VA醋酸酯(500 000IU/g),经高效液相色谱法(Agilent-1100, Agilent,美国)检测后实验饲料中VA的实际含量分别为178.2、2 058.9和18 436.2 IU/kg,养殖周期为8周。结果显示:饲料中VA缺乏会显著降低青鱼幼鱼的增重率(WGR)和特定生长率(SGR);VA缺乏会显著降低血清血糖(GLU)、甘油三酯(TG)和低密度脂蛋白(LDL)浓度,增加总胆固醇(TCH)浓度。饲料中添加2 058.9IU/kg VA能显著提高肝脏己糖激酶(HK)、磷酸果糖激酶(PFK)、丙酮酸激酶(PK)活性,促进葡萄糖转运蛋白-2 (GLUT-2)、HK、葡萄糖激酶(GK)、PFK和葡萄糖-6-磷酸酶(G6Pase)基因表达。当饲料中VA含量为2 058.9 IU/kg时,对肝脏脂肪酸转运蛋白-1(FATP-1)基因表达无显著影响,但显著影响肉碱棕榈酰转移酶-1 (CPT-1)和肉碱棕榈酰转移酶-2 (CPT-2)基因表达。当饲料中VA缺乏时,CPT-1和CPT-2基因表达受到显著性抑制;当饲料中添加过量VA时,乙酰辅酶A羧化酶-2 (ACC-2)和脂蛋白酯酶(LPL)基因表达受到抑制;同时,VA过量组中肝脏过氧化物酶体增殖物激活受体-γ(PPAR-γ)基因表达显著下降。研究表明,在饲料中添加2 058.9 IU/kg VA可以促进青鱼幼鱼生长,提高肝脏对葡萄糖的转运能力,促进糖酵解和糖异生代谢平衡,同时促进脂肪酸合成和转运。  相似文献   
5.
6.
为考察温阳为主中药复方对肥胖大鼠糖代谢的影响,采用高脂饲料喂养12周建立肥胖大鼠模型,将造模成功的 SD 肥胖大鼠随机分成3组,分别为模型组、二甲双胍组、温阳复方组,并设正常对照组。连续灌胃8周,在给药第4、8周测其空腹血糖,给药 8周后测口服糖耐量与肌糖原、肝糖原、糖化血红蛋白含量。结果显示,给药 8周后,温阳复方组空腹血糖和糖化血红蛋白含量降低,肌糖原、肝糖原含量升高。结果表明,温阳复方能够明显纠正肥胖大鼠糖代谢紊乱,有效预防和延缓早期糖尿病的发生。  相似文献   
7.
This study investigated the effect of repeated acute restraint stress and high‐fat diet (HFD) on intestinal expression of nutrient transporters, concomitant to intestinal inflammation. The ability of adenosine to reverse any change was examined. Six‐week‐old male Sprague Dawley rats were divided into eight groups: control or non‐stressed (C), rats exposed to restraint stress for 6 h per day for 14 days (S), control rats fed with HFD (CHF) and restraint‐stressed rats fed with HFD (SHF); four additional groups received the same treatments and were also given 50 mg/l adenosine dissolved in drinking water. Fasting blood glucose, plasma insulin, adiponectin and corticosterone were measured. Intestinal expression of SLC5A1, SLC2A2, NPC1L1 and TNF‐α was analysed. Histological evaluation was conducted to observe for morphological and anatomical changes in the intestinal tissues. Results showed that HFD feeding increased glucose and insulin levels, and repeated acute restraint stress raised the corticosterone level by 22%. Exposure to both stress and HFD caused a further increase in corticosterone to 41%, while decreasing plasma adiponectin level. Restraint stress altered intestinal expression of SLC5A1, SLC2A2 and NPC1L1. These changes were enhanced in SHF rats. Adenosine was found to alleviate HFD‐induced increase in glucose and insulin levels, suppress elevation of corticosterone in S rats and improve the altered nutrient transporters expression profiles. It also prevented upregulation of TNF‐α in the intestine of SHF rats. In summary, a combination of stress and HFD exaggerated stress‐ and HFD‐induced pathophysiological changes in the intestine, and biochemical parameters related to obesity. Adenosine attenuated the elevation of corticosterone and altered expression of SLC5A1, NPC1L1 and TNF‐α.  相似文献   
8.
In dairy cows, glucose is essential as energy source and substrate for milk constituents. The objective of this study was to investigate effects of long‐term manipulated glucose and insulin concentrations in combination with a LPS‐induced mastitis on mRNA abundance of glucose transporters and factors involved in milk composition. Focusing on direct effects of insulin and glucose without influence of periparturient endocrine adaptations, 18 dairy cows (28 ± 6 weeks of lactation) were randomly assigned to one of three infusion treatments for 56 h (six animals each). Treatments included a hyperinsulinemic hypoglycaemic clamp (HypoG), a hyperinsulinemic euglycaemic clamp (EuG) and a control group (NaCl). After 48 h of infusions, an intramammary challenge with LPS from E. coli was performed and infusions continued for additional 8 h. Mammary gland biopsies were taken before, at 48 (before LPS challenge) and at 56 h (after LPS challenge) of infusion, and mRNA abundance of genes involved in mammary gland metabolism was measured by RT‐qPCR. During the 48 h of infusions, mRNA abundance of glucose transporters GLUT1, 3, 4, 8, 12, SGLT1, 2) was not affected in HypoG, while they were downregulated in EuG. The mRNA abundance of alpha‐lactalbumin, insulin‐induced gene 1, κ‐casein and acetyl‐CoA carboxylase was downregulated in HypoG, but not affected in EuG. Contrary during the intramammary LPS challenge, most of the glucose transporters were downregulated in NaCl and HypoG, but not in EuG. The mRNA abundance of glucose transporters in the mammary gland seems not to be affected by a shortage of glucose, while enzymes and milk constituents directly depending on glucose as a substrate are immediately downregulated. During LPS‐induced mastitis in combination with hypoglycaemia, mammary gland metabolism was more aligned to save glucose for the immune system compared to a situation without limited glucose availability during EuG.  相似文献   
9.
本试验旨在通过人工瘤胃体外培养,研究不同代谢葡萄糖水平下的绵羊瘤胃发酵特性、微生物蛋白质浓度和产气参数。采用单因子试验设计,共设计4个代谢葡萄糖水平[125(A)、138(B)、153(C)、168 g/kg(D)]。体外试验所用瘤胃液采自4只安装有永久性瘤胃瘘管的绵羊。分别于培养0、2、4、6、8、12、24 h采集2 mL培养液用于分析。结果表明:1)8~24 h培养液pH随着代谢葡萄糖水平的提高而出现显著或极显著下降(P0.05或P0.01);氨氮浓度在2 h时D组显著高于A组(P0.05),而在6 h时A组显著高于其他3组(P0.05)。2)D组6h培养液细菌蛋白浓度显著高于A组(P0.05);随着代谢葡萄糖水平的提高,培养液丙酸、丁酸、总挥发性脂肪酸的浓度总体呈升高趋势,乙酸/丙酸呈下降趋势。3)随着代谢葡萄糖水平的提高,理论最大产气量极显著降低(P0.01),达1/2理论最大产气量的时间极显著缩短(P0.01);潜在产气量无显著变化(P0.05),24 h产气量和产气速率常数分别显著或极显著下降和上升(P0.05或P0.01)。结果提示,提高代谢葡萄糖水平,可以提高丙酸、总挥发性脂肪酸的浓度,同时可为绵羊提供较多的生糖前体物质。  相似文献   
10.
AIM: To observe the effect of high glucose on the protein expression of calreticulin (CRT) and its association with cell apoptosis and mitochondrial dysfunction in the cardiomyocytes. METHODS: AC-16 cardiomyocytes were randomly divided into normal glucose group, high glucose group, high glucose+ CRT siRNA group and isotonic control group. The cell apoptotic rate, reactive oxygen species (ROS), mitochondrial membrane potential level, respiratory enzyme activity, and protein expression of CRT were observed. RESULTS: Compared with the cardiomyocytes in normal glucose group, the apoptotic rate and ROS production of cardiomyocytes increased in high glucose group, accompanying with the decreases in the mitochondrial membrane potential level and enzyme activitiy of the respiratory chain. The protein expression of CRT was significantly increased in high glucose group. However, compared with high glucose group, high glucose+ CRT siRNA decreased the expression of CRT and attenuated the damage of mitochondria, but CRT siRNA did not reduce the ROS level in cardiomyocytes. CONCLUSION: High glucose brings about CRT over-expression to induce mitochondrial injury, thus increasing myocardial apoptosis.  相似文献   
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