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1.
目的 探讨通过体外共培养胰岛和血管内皮细胞能否改善胰岛的功能.方法 SD 大鼠分离纯化出胰岛细胞,分为两组:A 组胰岛单纯培养组,B 组胰岛和内皮细胞共培养组.从大鼠的胸主动脉分离纯化出血管内皮细胞,胰岛分离纯化后通过AO/PI 染色和胰岛素释放实验来判断两组胰岛的活性.结果 共培养组胰岛在7 d 内维持正常的形态,9...  相似文献   

2.
目的 探讨通过体外共培养胰岛和血管内皮细胞能否改善胰岛的功能.方法 SD 大鼠分离纯化出胰岛细胞,分为两组:A 组胰岛单纯培养组,B 组胰岛和内皮细胞共培养组.从大鼠的胸主动脉分离纯化出血管内皮细胞,胰岛分离纯化后通过AO/PI 染色和胰岛素释放实验来判断两组胰岛的活性.结果 共培养组胰岛在7 d 内维持正常的形态,90﹪的胰岛通过AO/PI 染色显示良好的活性;胰岛素释放实验显示第7 天(2.21 ± 0.21)和第14 天(2.53 ± 0.21)共培养组和单纯培养组(1.94 ± 0.15,1.71 ± 0.19)刺激指数差异有统计学意义(P 〈 0.05).结论 应用大鼠血管内皮细胞和胰岛共培养能够改善胰岛的存活及分泌功能.  相似文献   

3.
目的 建立分离纯化非肥胖性糖尿病(NOD)小鼠胰岛的方法,并对其体内外生物学特性进行研究。方法 采用改良的胶原酶消化结合Ficoll密度梯度离心方法,分离纯化NOD小鼠胰岛。应用体外糖刺激实验检测分离纯化的胰岛功能,以及通过监测移植小鼠的血糖、体重变化及糖耐量实验对移植胰岛的体内生物学功能进行分析,并通过HE染色和免疫荧光染色检测肾被膜下移植胰岛的存活情况。结果 胰岛产率为(116±12)个胰岛/胰腺,纯度90%。体外糖刺激实验结果显示,NOD小鼠胰岛的糖刺激胰岛素释放水平明显低于KM小鼠胰岛。胰岛移植实验显示,移植胰岛能有效改善糖尿病小鼠的血糖、体重和糖耐量,但改善作用一般仅能维持2周左右。HE染色和免疫荧光染色结果显示,肾被膜下可见胰岛素阳性的胰岛细胞团,并且在残存的移植胰岛细胞团周围存在大量淋巴细胞浸润。结论 通过改良的小鼠胰岛分离方法可由NOD小鼠分离得到大量较高纯度的胰岛,可用于今后探索如何阻断自身免疫损伤保护移植胰岛的研究。  相似文献   

4.
大鼠胰岛分离条件的优化   总被引:2,自引:0,他引:2  
目的:优化大鼠胰岛分离纯化的条件,为胰岛移植实验奠定基础。方法:通过胆总管灌注胶原酶P来消化大鼠胰腺,分离胰岛,采用不连续密度梯度Ficoll离心法纯化胰岛,观察胶原酶浓度、消化时间以及大鼠体重对胰岛分离结果的影响。双硫腙染色鉴定胰岛,丫啶橙/碘丙啶染色鉴定胰岛细胞活率,糖刺激胰岛素释放试验评价胰岛功能。结果:胶原酶浓度、消化时间以及大鼠体重对胰岛分离结果有重要影响。1mg/ml胶原酶P在37℃静止消化45分钟条件下,胰岛分离效果最佳,效果较其他酶浓度和消化时间条件下好(P<0.05)。体重350g的大鼠的胰岛收获量778.33±80.21IEQ/胰腺,而体重250g的大鼠的胰岛收获量655.00±56.56 IEQ/胰腺(P<0.05)。优化条件下分离的胰岛其纯度>90%,胰岛细胞活率>90%,低糖(2.8mmol/L)、高糖(16.7mmol/L)刺激胰岛素释放分别为(5.40±1.75)mIU/L/30IEQ,(12.27±2.55)mIU/L/30IEQ(P<0.05),刺激指数为2.33±0.29。结论:胶原酶浓度、消化时间以及大鼠体重影响胰岛分离结果,优化分离条件可改善大鼠胰岛分离结果。  相似文献   

5.
Dextran不连续密度梯度离心法纯化大鼠胰岛   总被引:4,自引:0,他引:4  
目的评价Dextran不连续密度梯度离心法纯化大鼠胰岛的效果。方法采用V型胶原酶分离出大鼠胰岛,并应用Dextran不连续密度梯度离心法纯化胰岛。在体视镜下计数双硫腙染色的胰岛并测量染色胰岛的直径。放免法测定胰岛素含量。AO-PI双染色确定胰岛的活力。结果平均每只成年Wistar大鼠的胰腺可分离950±24个胰岛,经Dextran纯化后平均每只成年Wistar大鼠的胰腺可获得784±10个胰岛,纯度可达到90%以上。结论采用Dextran不连续密度梯度纯化得到的Wistar大鼠胰岛结构完整、功能良好。  相似文献   

6.
一种高效、快捷、经济的小鼠胰岛细胞分离纯化方法   总被引:1,自引:0,他引:1  
采用改良的胶原酶P胆总管内逆行灌注膨胀胰腺的分离方法,比较Ficoll-400不连续密度梯度离心法和人工挑取法两种纯化胰岛的方法,用双硫腙(DTZ)对胰岛细胞团进行特异性染色计算胰岛产量及纯度,用台盼蓝染色判定胰岛细胞活性,使用间接免疫荧光法检测体外培养7 d后胰岛的功能.采用人工挑取法平均每只小鼠可获取的胰岛细胞团(245±35.6个)明显高于密度梯度离心法(120±26.3个)(n=5,P<0.05),两种方法分离纯化的胰岛活力均大于98%;但人工挑取法获得胰岛细胞团的纯度(100%)要高于密度梯度离心法(90%);纯化胰岛所用时间,采用人工挑取法(22±4 min)也少于密度梯度离心法(31±3 min).间接免疫荧光染色检测体外培养7 d后的胰岛细胞团,两种方法分离纯化的胰岛细胞团均具有良好的功能.胶原酶P胆总管内灌注消化分离法联合人工挑取纯化胰岛细胞团的方法,是一种高效、快捷、经济的小鼠胰岛细胞团分离纯化方法.  相似文献   

7.
目的 建立新型成人胰岛细胞分离纯化方法,观察成人胰岛细胞移植的安全性与有效性.方法 对14例1型糖尿病(T1DM)患者进行PFC与UW液双层冷藏胰腺,Liberase酶消化,COBE 2991型专用胰岛细胞分离机分离及连续密度梯度纯化,获取高纯度与高活性的胰岛细胞.采用外科方法,将短期培养的胰岛细胞经门静脉移植到肝脏内...  相似文献   

8.
目的:探讨大鼠胰岛细胞分离、纯化及培养的方法,并评价其生物学功能。方法:选用8~10周龄健康SD大鼠,采用胆总管逆行注射预冷胶原酶P溶液,37℃水浴静止消化,30目不锈钢筛网过滤,Ficoll400非连续密度梯度离心纯化。分离后的胰岛用DTZ染色计算胰岛产量,胰岛素释放试验评价其生物学功能。结果:胰岛细胞分布于Ficoll400浓度为23%~20%和20%~11%的界面之间。DTZ染色呈红色细胞团,胰岛产量为(606±56)IEQ/胰腺。纯度高达80~90%,活率≥90%,胰岛素释放功能良好。结论:胶原酶P溶液原位消化,Ficoll400纯化是一种高效简便的胰岛分离方法,分离的胰岛细胞数量多、纯度高及活性好。  相似文献   

9.
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   

10.
骨髓间充质干细胞分化为胰岛细胞治疗糖尿病   总被引:1,自引:0,他引:1  
糖尿病已成为严重危害人类健康的疾病之一。目前,移植胰岛治疗糖尿病已初见疗效,但由于胰岛来源匮乏和免疫排斥反应而受阻。骨髓间充质干细胞(bonemarrowmesenchymalstemcells,BMMSCs)取材方便,容易进行体外分离、培养和纯化,且具有跨越分化潜能。若将自体BMMSCs诱导分化为胰岛细胞,可望解决细胞来源和免疫排除问题,实现糖尿病的自体细胞治疗。现对体外诱导BMMSCs分化为胰岛细胞治疗糖尿病的研究进展进行综述,并指出了存在问题和今后的研究方向。  相似文献   

11.
Optimizing Conditions for Rat Pancreatic Islets Isolation   总被引:2,自引:0,他引:2  
Many procedures have been described for rat pancreatic islet isolation. Several factors contribute to the pancreatic islet isolation outcome. One of the main problems in islet isolation procedure is the formation of a viscouse, gellike structure during collagenase digestion which entraps the free islets and decrease islet yield after density gradient purification. This issue has not been addressed in most techniques described for rat islet isolation. We examined effect of various factors to eliminate formation of gellike material and improve the islets yields. Islet isolation was performed on 26 adult male Wistar Albino rats weighing between 280 and 350 g. We have observed that several factors affect pancreatic islet isolation. Optimum Collagenase enzyme concentration, maintaining pH range between 7.7 and 7.9 in digestion solution, incubation temperature at 38±1 °C and addition of Calcium ion decreased the formation of gellike materials and increased islet yield. Addition of Glycerol as a gelatin solvent has also been helpful in the reduction or complete elimination of gellike material. Precise optimization of rat islet isolation procedure is useful to improve the islet yield in islet transplantation studies.  相似文献   

12.
Pancreatic islets of Langerhans secrete hormones that are vital to the regulation of blood glucose and are, therefore, a key focus of diabetes research. Purifying viable and functional islets from the pancreas for study is an intricate process. This review highlights the key elements involved with mouse and rat islet isolation, including choices of collagenase, the collagenase digestion process, purification of islets using a density gradient, and islet culture conditions. In addition, this paper reviews commonly used techniques for assessing islet viability and function, including visual assessment, fluorescent markers of cell death, glucose-stimulated insulin secretion, and intracellular calcium measurements. A detailed protocol is also included that describes a common method for rodent islet isolation that our laboratory uses to obtain viable and functional mouse islets for in vitro study of islet function, beta-cell physiology, and in vivo rodent islet transplantation. The purpose of this review is to serve as a resource and foundation for successfully procuring and purifying high-quality islets for research purposes.  相似文献   

13.
Pancreatic islet transplantation is a promising therapy for Type I Diabetes. For many years the method used worldwide for islet purification in both rodent and human islet isolation has been Ficoll-based density gradients, such as Histopaque. However, it is difficult to purify islets in laboratories with staff limitations when large scale isolations are required. We hypothesized that filtration could be a more simple and fast alternative to obtain good quality islets. Four separate islet isolations were performed per method, comparing filtration and Histopaque purification with handpicking as the gold standard method for islet purity. Different parameters of quality were assessed: yield in number of islets per pancreas, purity by dithizone staining, viability by Fluorescein Diacetate/Propidium Iodide vital staining and in vitro functionality assessed by Glucose Stimulated Insulin Secretion. Time efficiency and cost were also analyzed. The overall quality of the islets obtained both by Histopaque and filtration was good. Filtration saved almost 90 % of the time consumed by Histopaque purification, and was also cheaper. However, one-third of the islets were lost. Since human and rodent islets share similar size but different density, filtration appears as a purification method with potential interest in translation to clinic.  相似文献   

14.
Management of Type 1 diabetes is burdensome, both to the individual and society, costing over 100 billion dollars annually. Despite the widespread use of glucose monitoring and new insulin formulations, many individuals still develop devastating secondary complications. Pancreatic islet transplantation can restore near normal glucose control in diabetic patients 1, without the risk of serious hypoglycemic episodes that are associated with intensive insulin therapy. Providing sufficient islet mass is important for successful islet transplantation. However, donor characteristics, organ procurement and preservation affect the isolation outcome 2. At University of Illinois at Chicago (UIC) we developed a successful isolation protocol with an improved purification gradient 3. The program started in January 2004 and more than 300 isolations were performed up to November 2008. The pancreata were sent in cold preservation solutions (UW, University of Wisconsin or HTK, Histidine-Tryptophan Ketoglutarate) 4-7 to the Cell Isolation Laboratory at UIC for islet isolation. Pancreatic islets were isolated using the UIC method, which is a modified version of the method originally described by Ricordi et al8. As described in Part I: Digestion and Collection of Pancreatic Tissue, human pancreas was trimmed, cannulated, perfused, and digested. After collection and at least 30 minutes of incubation in UW solution, the tissue was loaded in the cell separator (COBE 2991, Cobe, Lakewood, CO) for purification 3. Following purification, islet yield (expressed as islet equivalents, IEQ), tissue volume, and purity was determined according to standard methods 9. Isolated islets were cultured in CMRL-1066 media (Mediatech, Herndon, VA), supplemented with 1.5% human albumin, 0.1% insulin-transferrin-selenium (ITS), 1 ml of Ciprofloxacin, 5 ml o f 1M HEPES, and 14.5 ml of 7.5% Sodium Bicarbonate in T175 flasks at 37°C overnight culture before islets were transplanted or used for research.Open in a separate windowClick here to view.(52M, flv)  相似文献   

15.
Management of Type 1 diabetes is burdensome, both to the individual and society, costing over 100 billion dollars annually. Despite the widespread use of glucose monitoring and new insulin formulations, many individuals still develop devastating secondary complications. Pancreatic islet transplantation can restore near normal glucose control in diabetic patients 1, without the risk of serious hypoglycemic episodes that are associated with intensive insulin therapy. Providing sufficient islet mass is important for successful islet transplantation. However, donor characteristic, organ procurement and preservation affect the isolation outcome 2. At University of Illinois at Chicago (UIC) we have developed a successful isolation protocol with an improved purification gradient 3. The program started in January 2004, and more than 300 isolations were performed up to November 2008. The pancreata were sent in cold preservation solutions (UW, University of Wisconsin or HTK, Histidine-Tryptophan Ketoglutarate) 4-7 to the Cell Isolation Laboratory at UIC for islet isolation. Pancreatic islets were isolated using the UIC method, which is a modified version of the method originally described by Ricordi et al 8. Briefly, after cleaning the pancreas from the surrounding tissue, it was perfused with enzyme solution (Serva Collagenase + Neutral Protease or Sigma V enzyme). The distended pancreas was then transferred to the Ricordi digestion chamber, connected to a modified, closed circulation tubing system, and warmed up to 37°C. During the digestion, the chamber was shaken gently. Samples were taken continuously to monitor the digestion progress. Once free islets were detected under the microscope, the digestion was stopped by flushing cold (4°C) RPMI dilution solution (Mediatech, Herndon, VA) into the circulation system to dilute the enzyme. After being collected and washed in M199 media supplemented with human albumin, the tissue was sampled for pre-purification count and incubated with UW solution before purification. Purification process will be described in Part II: Purification and Culture of Human Islets.  相似文献   

16.

Background

The success of pancreatic islet transplantation still faces many challenges, mainly related to cell damage during islet isolation and early post-transplant. The increased generation of reactive oxygen species (ROS) during islet isolation and the consumption of antioxidant defenses appear to be an important pathway related to islet damage.

Methodology/Principal Findings

In the present study we evaluated whether supplementation of glutathione-ethyl-ester (GEE) during islet isolation could improve islet viability and transplant outcomes in a murine marginal islet mass model. We also cultured human islets for 24 hours in standard CMRL media with or without GEE supplementation. Supplementation of GEE decreased the content of ROS in isolated islets, leading to a decrease in apoptosis and maintenance of islet viability. A higher percentage of mice transplanted with a marginal mass of GEE treated islets became euglycemic after transplant. The supplementation of 20 mM GEE in cultured human islets significantly reduced the apoptosis rate in comparison to untreated islets.

Conclusions/Significance

GEE supplementation was able to decrease the apoptosis rate and intracellular content of ROS in isolated islets and might be considered a potential intervention to improve islet viability during the isolation process and maintenance in culture before islet transplantation.  相似文献   

17.
Islet transplantation in human diabetes at present is confronted with two major obstacles: isolation of a sufficient number of islets and islet graft rejection. "Tissue banking" would enable islet pooling from various donors and offers furthermore the advantage of in vitro manipulations in order to reduce islet immunogenicity. Recently we have reported successful cryopreservation and subsequent transplantation of porcine islets (Bretzel, Beule, Sch?fer, Schneider, Pfeiffer and Federlin 1979). These preliminary data deal with cryopreservation and transplantation of isolated rat islets and cryopreservation of isolated human islets.  相似文献   

18.
The reasons for the failure of clinical islet transplantation remain obscure. Islet isolation, however, exposes the islet to variety of cellular stresses, including disruption of the cell-matrix relationship, an event associated with apoptosis. The cell-matrix relationship is characterized by an interaction between cell surface integrin receptors and matrix molecules of the surrounding basement membrane (BM). The purpose of this study was to characterize integrin expression and the distribution of the peri-insular BM in human, porcine, canine, and hamster pancreas, and after routine islet isolation. Whereas islets in the porcine pancreas do not have a demonstrable BM, islets in the human, canine, and hamster pancreas have an almost continuous BM with very little direct exocrine to endocrine cell-cell contact. After islet isolation, the BM was destroyed, only to be reestablished during the period of culture. In the pancreas of all four species, integrin alpha3 was expressed only on islet cells, and integrin alpha5 was present on islet cells as well as on acinar, centroacinar, and duct cells. Integrin alphaV was detected only in human and canine pancreas. Integrin beta1 was demonstrated only in the human pancreas. In isolated islets, integrin alpha3, alpha5, and alphaV expression decreased during the culture period and the intensity of the staining was observed to be coincident with the distribution of the BM. In summary, this is the first report of integrin expression in hamster, canine, porcine, and human islets. After islet isolation, the altered islet cell-matrix relationship is reflected both in the decrease in integrin expression and in the destruction of the peri-insular BM. These profound changes will need to be considered as the process of islet isolation for transplantation is refined. (J Histochem Cytochem 47:499-506, 1999)  相似文献   

19.
 Treatment of diabetes mellitus by transplantation of isolated pancreatic islets could constitute an alternative to human pancreas allograft. Before transplantation, porcine islets are submitted to a procedure of isolation and purification. The quality of islets through these different steps may be assessed by morphological and functional studies. The aim of this work was the histological characterization of the four main cell types of porcine adult endocrine islets during the different steps of the isolation procedure using immunohistochemistry (IHC) applied in light (LM) and electron microscopy (EM). In fresh pancreas, islets were various sizes and shapes in LM. The number was not found different between the different portions of the pancreas. In IHC, insulin (Ins)-secreting cells accounted for the majority of the islet cells, while glucagon(Glu)-somatostatin (Som)- and polypeptide(PP)-immunoreactive cells, in decreasing number, were found in the mantle around the core of Ins-cells. In EM, B-cells contained polyhedric granules with a dense central core and clear halo. Glu granules were spherical and very dense. D-cells and PP-cells were characterized by numerous granules, rather spherical and of inequal density for Som and more ellipsoidal for PP granules. After purification in Euroficoll, in EM, the four cellular types remained recognizable, but underwent vacuolization, mitochondrial swelling, and enlargment of intercellular spaces. After 3 days of culture on plastic dishes, as on Biopore membranes in a Millicell insert, microvilli appeared and vacuolization increased in EM. At the seventh day of culture, in EM, most of the cells were lysed in contrast to LM where at the same time, the four cell types were clearly identified by IHC but only in collagen matrix. Important discrepancies were noticed between LM and EM. This fact emphasizes the complementarity of morphological and functional studies in assessment of the quality of an islet isolation. Accepted: 11 June 1996  相似文献   

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