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1.
目的:探讨L-亮氨酸对克隆的胰岛β细胞株INS-1E细胞分泌胰岛素的刺激作用及其葡萄糖依赖性。方法:INS-1E细胞经传代培养2 d后,在Krebs-Ringer缓冲液中37℃培养箱预培养30 min,再用含有不同浓度葡萄糖和不同浓度L-亮氨酸的改良Krebs-Ringer缓冲液培养60 min,然后留取上清液进行胰岛素测定。结果:L-亮氨酸在0.1~10 mmol.L-1范围不增加16.7mmol.L-1葡萄糖刺激的INS-1E细胞的胰岛素分泌,仅20 mmol.L-1的L-亮氨酸促进葡萄糖诱导的胰岛素分泌;10 mmol.L-1L-亮氨酸在1.1、3.3、6.7 mmol.L-1葡萄糖存在的情况下促进INS-1E细胞的胰岛素分泌,而在11.1、16.7、25 mmol.L-1葡萄糖存在的情况下无促进胰岛素分泌的作用。结论:本研究显示在无刺激胰岛素分泌的葡萄糖浓度条件下,10 mmol.L-1L-亮氨酸即显示了刺激INS-1E细胞分泌胰岛素的作用,在较高葡萄糖的条件下,10 mmol.L-1L-亮氨酸的作用减弱或消失。  相似文献   

2.
INS-1E细胞经传代培养2 d后,在Krebs-Ringer缓冲液中37℃培养箱预培养30 min,再用含16.7 mmol.L-1葡萄糖和不同AA的改良Krebs-Ringer缓冲液培养60 min,然后留取上清液进行INS测定。结果:L-亮氨酸、L-谷氨酰胺未能显示促进16.7 mmol.L-1葡萄糖诱导的INS-1E细胞的INS分泌,其余4种AA均促进葡萄糖诱导的INS-1E细胞的INS分泌。本研究显示L-脯氨酸、L-丙氨酸、L-赖氨酸、L-精氨酸均能增加葡萄糖诱导的INS-1E细胞分泌INS。  相似文献   

3.
青龙木制剂对小鼠胰腺β细胞单位电活动的影响   总被引:2,自引:0,他引:2  
目的:观察青龙木制剂(Ambyna preparation)对小鼠胰岛β细胞单位放电的影响,探讨青龙木制剂促进胰岛素分泌的机制.方法:以大于刺激阁以上(>5mmol/L)的葡萄糖滴注在体小鼠胰腺上诱发胰岛β细胞电活动,用玻璃微电极记录在体小鼠胰岛β细胞的单位放电.结果:青龙木制剂和格列本脲一样加强葡萄糖诱导的胰岛β细胞电活动.结论:青龙木制剂加强葡萄糖诱导的胰岛β细胞电活动进而促进胰岛素的分泌.  相似文献   

4.
采用全细胞膜片钳技术观察不同浓度葡萄糖对新生Wister大鼠胰岛β细胞膜上电压依赖性L-型钙离子通道门控特性的影响,即分别用2.8、5.5、16.7和22.2 mmol/L的葡萄糖刺激单个贴壁胰岛β细胞,以Ba2+作为载流子,分析比较葡萄糖对L-型钙通道电流的影响。结果显示:在低糖(2.8 mmol/L)情况下,大鼠胰岛β细胞电压依赖性L-型钙离子通道电流静息膜电位约为-70 mV,钙离子内流不明显,且无明显的时间依赖性关系。在葡萄糖浓度为5.5 mmol/L的条件下,大鼠胰岛β细胞电压依赖性L-型钙离子通道电流在-40 mV激活, +20 mV左右达峰值;高糖(16.7 mmol/L)作用胰岛β细胞后,电压依赖性L-型钙离子通道电流约-40 mV激活,+10 mV左右达峰值,即峰值电位向负方向移动约10 mV;葡萄糖浓度达22.2 mmol/L时,电活动呈持续性去极化,峰值电位增加不明显,提示葡萄糖降低胰岛β细胞电压依赖性L-型钙通道电流的激活电位阈值,促进其开放,钙电流峰值电位增加,随着高糖作用时间的延长,胰岛β细胞容积变大,细胞膜破坏。提示高浓度葡萄糖在一定范围内可以刺激胰岛素的分泌,但浓度过高则可抑制胰岛素的分泌,通过观察葡萄糖刺激的胰岛β细胞胰岛素第一时相分泌的变化,在一定程度上对高糖毒性作用的可能提供了证据。  相似文献   

5.
目的:建立胰岛细胞系INS-1E细胞的葡萄糖毒性模型。方法:将INS-1E细胞分别在不同葡萄糖浓度(5.5 mmol/L、16.7mmol/L、25 mmol/L、30 mmol/L)的1640完全培养基中培养不同时间(48 h、72 h、96 h、120 h),分别在不同时间点取细胞进行细胞功能检测,实时荧光定量PCR法检测胰岛素m RNA的表达,ELISA检测葡萄糖刺激的胰岛素的分泌。结果:与对照组相比,高糖浓度(5.5 mmol/L、16.7 mmol/L、25 mmol/L、30 mmol/L)培养基中培养48 h后,INS-1E细胞的胰岛素合成和分泌的功能均增加(P均0.05),随着培养基中葡萄糖浓度的升高以及培养时间的延长,INS-1E细胞胰岛素合成及分泌的功能逐渐下降,当在葡萄糖浓度为30 mmol/L的培养基中培养120 h后,胰岛素m RNA合成及葡萄糖刺激的胰岛素分泌均显著降低(P均0.01)。结论:INS-1E细胞在30 m M的葡萄糖中培养120 h形成稳定的葡萄糖毒性模型。  相似文献   

6.
目的:建立一种经济高效的小鼠胰岛细胞分离纯化方法,为进行NOD小鼠的胰岛移植提供实验条件.方法:将5-7周龄、体重20~25 g的雄,陛昆明小鼠的胆总管结扎,并逆行Hank's液和胶原酶P灌注和分离消化,依次加入84%、67%、50%浓度的Histopaque介质后进行不连续密度梯度离心纯化胰岛细胞.双硫腙(dithizon,DTZ)和台盼兰染色分别鉴定胰岛细胞.用含5.6mmol/L葡萄糖DMEM培养液体外培养胰岛细胞,培养后的第3、5、7、9、11天取细胞上清检测胰岛素水平,并用16.7mmol/L的高浓度葡萄糖进行刺激,检测胰岛素水平确定胰岛细胞功能.结果:每个胰腺的胰岛细胞收获量在1200±124个,且纯度和活性均大于90%;体外培养9天内胰岛细胞基础胰岛素分泌水平无显著差异,至第11天时则明显减少(P<0.05);应用16.7mmol/L葡萄糖刺激后,第5、7、9、11天的胰岛素分泌水平较第3天的明显减少(P<0.05),然而在第7天、9天、11天时的胰岛素水平较第5天时显著降低.结论:胆总管逆行注射Hank's液和胶原酶P消化消化和不连续密度梯度Histopaque纯化的方法可以获得大量状态良好的胰岛,且胰岛细胞数量多,分泌状态良好.本分离方法是一种经济高效的胰岛细胞分离方法,同时离体后于5.6mmol/L葡萄糖DMEM培养第3天胰岛细胞胰岛素储备功能最佳,为移植研究的最佳状态.  相似文献   

7.
MEG3是一种长链非编码RNA。已有研究证明,鼠源Meg3参与小鼠诱导多能干细胞、神经元和视网膜的分化过程。最新报道,MEG3在人胰岛β细胞中高表达,但其对维持成年胰岛β细胞的功能尚不清楚。本研究旨在探讨Meg3在小鼠胰岛细胞胰岛素分泌功能中的作用。实时定量PCR揭示,与Balb/c小鼠心、肝、脾、肺、肌、肾等组织/器官比较,Meg3在胰腺组织中高表达。在非糖尿病小鼠发生自发性糖尿病的第8、12周,Meg3在胰岛中的表达水平分别下调24%±8%和29%±9% (P<0.01);而当血糖升高20 mmol/L,小鼠胰岛中Meg3表达下调72%±16%(P<0.01)。在MIN6细胞中采用RNA干扰敲减Meg3的表达,在高糖浓度(20 mmol/L)刺激条件下,胰岛素分泌显著减少。小鼠静脉注射siRNA,结合血糖测定或葡萄糖耐受试验(IPGTT)显示,si-Meg3小鼠血清胰岛素水平显著下降。注射葡萄糖前血糖升高,注射葡萄糖后耐受能力降低;免疫组化分析显示,si-Meg3小鼠胰岛素阳性细胞的面积减少。实验结果提示,Meg3通过参与胰岛素的合成和分泌维持成年小鼠胰岛功能。Meg3表达失调可能参与I型糖尿病(T1DM)发病过程。  相似文献   

8.
目的观察急性高血糖影响小鼠第一时相胰岛素分泌的功能及形态学变化特点。方法给C57/BL 6J小鼠完成颈静脉插管后输注20%高糖溶液4 h,建立急性糖毒性小鼠模型,行腹腔葡萄糖耐量实验(intraperitoneal glucose tolerance test,IPGTT)及口服葡萄糖耐量实验(oral glucose tolerance test,OGTT)评价葡萄糖耐量及胰岛素分泌功能。HE染色及电镜观察胰岛形态变化及细胞内胰岛素分泌颗粒亚细胞结构变化。结果 IPGTT实验中急性糖毒性组15 min血糖值较对照组显著增加[(10.3±0.33)mmol/L vs(19.3±1.66)mmol/L],上升87%(P0.05),OGTT实验中30 min血糖值较对照组显著增加[(9.8±0.31)mmol/L vs(18.16±1.01)mmol/L],升高85%(P0.05),且早期胰岛素分泌高峰受损且分泌延迟。GSIS实验中急性糖毒性组在基础状态时(葡萄糖浓度2.8 mmol/L)和高糖(16.7 mmol/L)刺激后,胰岛素分泌较对照组显著降低[(0.481±0.003)ng/m L vs(0.702±0.121)ng/m L,(2.43±0.03)ng/m L vs(4.07±0.34)ng/m L],分别下降46%和67%(P0.05);胰岛素含量测定结果显示,急性糖毒性组比对照组降低[(97.01±2.05)ng/m L vs(65.12±0.42)ng/m L,(121.40±0.58)ng/m L vs(62.7±0.48)ng/m L],下降49%和94%(P0.05)。HE染色显示急性糖毒性胰岛边界不规则、内部细胞排列不整;透射电镜可见细胞内胰岛素分泌颗粒空泡,线粒体嵴断裂。结论急性葡萄糖毒性使胰岛β细胞内胰岛素储备减少,导致第一时相分泌胰岛素峰值降低及延迟。  相似文献   

9.
康洁 《生物技术》2004,14(6):19-21
目的:研究谷氨酸和Aβ对神经细胞的毒性。方法:用改良的NM-2A培养基于24孔板和盖玻片上37℃5%的CO2培养箱中培养ICR胎鼠大脑皮层细胞,用1mmol/L、5mmol/L、10mmol/L剂量的谷氨酸处理细胞30min后再于37℃、5%CO2培养箱培养24h,用20μmol/L的Aβ37℃、5%CO2培养箱中处理细胞24h;用MTT法检测细胞成活率,用PI-hochest 33342核双染色法分析细胞成活率。结果:谷氨酸和Aβ对神经细胞有毒性作用。谷氨酸的毒性呈剂量依赖性,随谷氨酸浓度的增加细胞成活率降低;Aβ20μmol/L时引起细胞死亡,成活率为对照的69.8%。结论:谷氨酸和Aβ在一定的剂量下能引起神经细胞死亡。  相似文献   

10.
胰岛β细胞发生去分化现象是导致其功能减退的机制之一。已有研究证明,FoxO1与β细胞去分化密切相关。然而,高糖是否可通过FoxO1诱导β细胞发生去分化目前尚未见报告。本研究通过不同浓度高糖干预MIN6细胞,采用葡萄糖刺激胰岛素分泌试验(GSIS)检测β细胞功能|实时荧光定量PCR及蛋白免疫印迹、免疫荧光方法检测高糖干预后β细胞内祖细胞标志基因、β细胞标志基因及FoxO1的表达变化。结果显示,不同浓度高糖干预β细胞后,当浓度达到35 mmol/L时,β细胞祖细胞标志基因表达明显增加。且在该浓度时,检测到β细胞标志基因表达明显降低,MIN6细胞葡萄糖刺激胰岛素分泌功能减退,磷酸化FoxO1表达减少。上述结果提示,高糖可诱导胰岛β细胞去分化的发生,其机制可能是通过FoxO1介导。  相似文献   

11.
Perifused isolated rat islets were used to show that biotin plus 16.5 mM glucose evoked more insulin secretion than 16.5 mM glucose alone. Whether or not this reinforcement of glucose-induced insulin secretion by biotin is unique was studied by using perifused islets stimulated with 16.5 mM glucose plus 100 microM of one of various components of the vitamin B group. No effect of any of these vitamins was found on glucose-induced insulin secretion. These results indicate that biotin is unique among the members of the vitamin B group in enhancing glucose-induced insulin secretion. Static incubation experiments showed that biotin did not potentiate insulin release when the islets were incubated with an experimental solution containing either no or 2.8 mM glucose. The addition of biotin to 27.7 mM glucose, which is the maximal concentration for stimulating insulin release, did not significantly enhance the effect of the glucose on insulin release (although it did at 16.5 mM glucose). These findings indicate that biotin, by itself, does not stimulate insulin secretion, and does not enhance glucose-induced insulin secretion beyond the ability of glucose itself to stimulate insulin secretion.  相似文献   

12.
1. Rat pancreatic islets were isolated and then maintained in culture for 2-4 days before being incubated in groups of 100 in the presence of different glucose (0-20 mM) or CaCl2 (1.2-4.2 mM) concentrations, or with uncoupler. 2. Increases in extracellular glucose concentration resulted in increases in the amount of active, non-phosphorylated, pyruvate dehydrogenase in the islets, with half-maximal effects around 5-6 mM-glucose. Increasing extracellular glucose from 3 to 20 mM resulted in a 4-6-fold activation of pyruvate dehydrogenase within 2 min. 3. The total enzyme activity was unchanged, and averaged 0.4 m-unit/100 islets at 37 degrees C. 4. These changes in active pyruvate dehydrogenase were broadly similar to changes in insulin secretion by the islets. 5. Increasing extracellular Ca2+ or adding uncoupler also activated pyruvate dehydrogenase to a similar degree, but only the former was associated with increased insulin secretion.  相似文献   

13.
The mechanism with which fructose augments glucose-induced insulin secretion is still unclear. The present study was aimed at examining whether the ketohexose potentiates the ATP-sensitive K(+) channel-independent pathway of glucose-induced insulin secretion and, if so, how this happens. When isolated rat islets were depolarized by incubating them with 50 mM KCl in the presence of 150 microM diazoxide (an opener of ATP-sensitive K(+) channels), 10 mM glucose plus 20 mM fructose elicited significantly higher insulin secretion than 10 mM glucose alone, whereas 20 mM fructose alone did not stimulate insulin secretion. The fructose 1,6-bisphosphate and inositol trisphosphate contents were markedly higher in islets incubated with glucose plus fructose than in islets incubated with glucose alone. The results demonstrate that fructose has the ability to potentiate the ATP-sensitive K(+) channel-independent pathway of glucose-induced insulin secretion. The increase in fructose 1,6-bisphosphate content induced by the co-presence of fructose with glucose, resulting in the rise in inositol trisphosphate content, is likely to be one of the signals involved in the fructose potentiation of glucose-induced insulin secretion.  相似文献   

14.
The effect of various inhibitors of insulin secretion such as mannoheptulose (20 mM), atropine (1 mM), diphenylhydantoin (20 microng/ml), high concentration of Mg++ (5.3 mM) in the presence of 20 mM glucose (control) on insulin content and secretion from collagenase-isolated rat pancreatic islets was studied in vitro by cultivation of islets up to 5 or 9 days in glass Petri dishes without attachment. In a following short-term incubation for 60 min the glucose-induced insulin release without and with theophylline (5 mM) was investigated. Islets cultivated at 5 mM glucose and at 20 mM glucose with the inhibitors mannoheptulose or atropine lost the responsiveness to glucose and theophylline whereas such islets cultivated at 20 mM glucose alone or with diphenylhydantoin (DPH) or 5.3 mg Mg++ showed a stimulation of insulin secretion by glucose and theophylline. Compared, however, with freshly isolated islets all cultivated islets were restricted in their maximal glucose response and this defect was not evoked alone by quantitative changes in islet insulin content. Nevertheless, culture conditions which facilitate a net increase of insulin (content and release) during cultivation influenced also positively the glucose-induced insulin release without and with 5 mM theophylline in the following short-term experiments.  相似文献   

15.
We evaluated the possible autocrine modulatory effect of insulin on glucose metabolism and glucose-induced insulin secretion in islets isolated from normal hamsters. We measured 14CO2 and 3H2O production from d-[U-14C]glucose and d-[5-3H]glucose, respectively, in islets incubated with 0.6, 3.3, 8.3, and 16.7 mM glucose alone or with 5 or 15 mU/ml insulin, anti-insulin guinea pig serum (1:500), 25 microM nifedipine, or 150 nM wortmannin. Insulin release was measured (radioimmunoassay) in islets incubated with 3.3 or 16.7 mM glucose with or without 75, 150, and 300 nM wortmannin. Insulin significantly enhanced 14CO2 and 3H2O production with 3.3 mM glucose but not with 0.6, 8.3, or 16.7 mM glucose. Addition of anti-insulin serum to the medium with 8.3 and 16.7 mM glucose decreased 14CO2 and 3H2O production significantly. A similar decrease was obtained in islets incubated with 8.3 and 16.7 mM glucose and wortmannin or nifedipine. This latter effect was reversed by adding 15 mU/ml insulin to the medium. Glucose metabolism was almost abolished when islets were incubated in a Ca2+-deprived medium, but this effect was not reversed by insulin. No changes were found in 14CO2 and 3H2O production by islets incubated with 3.3 mM glucose and anti-insulin serum, wortmannin, or nifedipine in the media. Addition of wortmannin significantly decreased insulin release induced by 16.7 mM glucose in a dose-dependent manner. Our results suggest that insulin exerts a physiological autocrine stimulatory effect on glucose metabolism in intact islets as well as on glucose-induced insulin release. Such an effect, however, depends on the glucose concentration in the incubation medium.  相似文献   

16.
The effect of tetracaine and lidocaine on insulin secretion and glucose oxidation by islets of ob/ob-mice was measured. Tetracaine, at a concentration of 1 microM to 0.1 mM, did not markedly influence the basal (3 mM glucose) insulin secretion, whereas 0.5-3.5 mM induced a marked increase. At 7 mM glucose, there was a dose-dependent increase with 0.1-2.5 mM tetracaine. Insulin release induced by 20 mM glucose was potentiated by 0.1 mM and 0.5 mM tetracaine, but this effect disappeared at 1 mM tetracaine. The stimulatory effect of 0.5-1 mM tetracaine on basal insulin release was blocked by the secretory inhibitors, adrenaline (1 microM), clonidine (1 microM) and by Ca2+-deficiency, but the stimulation by 3.5 mM tetracaine was not reduced by 1 microM clonidine or Ca2+ deficiency. Atropine (10 microM) did not affect the stimulation by 0.5 mM tetracaine at 3 mM glucose or by 0.25 mM tetracaine at 20 mM glucose. Tetracaine, at 0.1 mM, potentiated the secretory stimulation of 20 mM L-leucine, 20 mM D-mannose, or 1 microM glibenclamide. Mannoheptulose, 10 mM, abolished the combined effects of 0.1 mM tetracaine and 10 mM glucose. Lidocaine, 1-5 mM, stimulated basal insulin release, but 1 microM-1 mM of the drug did not affect glucose-induced (20 mM glucose) insulin release and 5 mM lidocaine inhibited glucose stimulation. The oxidation of 10 mM D-[U-14C]glucose was slightly enhanced by 0.1 and 1 mM tetracaine. The results indicate that tetracaine and lidocaine, at certain concentrations, can induce insulin release and that tetracaine potentiates secretion induced by other secretagogues. It is concluded that these effects may be associated with beta-cell functions related to the adrenergic receptors but probably not to cholinergic receptors.  相似文献   

17.
The effects of D-glyceraldehyde and glucose on islet function were compared in order to investigate the difference between them in the mechanism by which they induce insulin secretion. The stimulation of insulin secretion from isolated rat islets by 10 mM glyceraldehyde was not completely inhibited by either 150 microM diazoxide (an opener of ATP-sensitive K(+) channels) or 5 microM nitrendipine (an L-type Ca(2+)-channel blocker), whereas the stimulation of insulin secretion by 20 mM glucose was completely inhibited by either drug. The insulin secretion induced by glyceraldehyde was less augmented by 100 microM carbachol (a cholinergic agonist) than that induced by glucose. The stimulation of myo-inositol phosphate production by 100 microM carbachol was more marked in islets incubated with the hexose than with the triose. The content of glyceraldehyde 3-phosphate, a glycolytic intermediate, in islets incubated with glyceraldehyde was far higher than that in islets incubated with glucose, whereas the ATP content in islets incubated with the triose was significantly lower than that in islets incubated with the hexose. These results suggest that glyceraldehyde not only mimics the effect of glucose on insulin secretion but also has the ability to cause the secretion of insulin without the influx of Ca(2+ )through voltage-dependent Ca(2+) channels. The reason for the lower potency of the triose than the hexose in stimulating insulin secretion is also discussed.  相似文献   

18.
The stimulatory effect of dopamine through dopamine D2 receptor on glucose-induced insulin secretion was studied in the pancreatic islets in vitro. Dopamine significantly stimulated insulin secretion at a concentration of 10-8 M in the presence of high glucose (20 mM). The higher concentrations of dopamine (10(-7)-10(-4)) inhibited glucose-induced insulin secretion in the presence of both 4 mM and 20 mM glucose. Stimulatory and inhibitory effect of dopamine on glucose-induced insulin secretion was reverted by the addition of dopamine D2 receptor antagonists such as butaclamol and sulpiride. Norepinephrine (NE) at 10(-4) M concentration inhibited the dopamine uptake as well as its stimulatory effect at 10(-8) M concentration on glucose induced insulin secretion. Our results suggest that dopamine exerts a differential effect on glucose-induced insulin secretion through dopamine D2 receptor and it is essential for the regulation of glucose-induced insulin secretion by pancreatic islets.  相似文献   

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