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11.
目的:克隆并验证内皮细胞(Endothelial Cells,ECs)特异性启动子,为转染人胚胎干细胞(h ESC)后实时监测ECs的定向分化情况以及利用干细胞实施血友病A的基因治疗研究提供基础。方法:通过酶消化法原代分离人脐静脉内皮细胞(HUVECs),结合RT-PCR和免疫荧光验证分离后的HUVECs表达内皮细胞特异性标志基因血管性血友病因子(v WF)和血管内皮钙粘素(VE-cadherin/CDH5)。抽提HUVECs的g DNA,通过PCR扩增内皮细胞特异性表达基因v WF和VE-cadherin转录起始位点上游不同大小的启动子片段,将其取代报告基因载体p EGFP-N1中的广谱启动子CMV,构建4个质粒,即pv WF-1、pv WF-2、p VE-1、p VE-2,分别转染HUVECs和h ESCs,48 h后观察并比较各启动子片段启动绿色荧光蛋白GFP表达情况,筛选最具特异性及转录活性的启动子片段。结果:通过酶消化法,本研究成功分离出具有典型上皮样细胞的HUVECs。RT-PCR和免疫荧光结果表明HUVECs特异性表达v WF和VE-cadherin。酶切及测序证实所构建的4个含ECs特异性启动子片段的质粒与理论序列相符,通过核转染至HUVECs及h ESCs后,48 h后观察到所克隆的VE-cadherin 2105bp启动子片段具有内皮细胞表达的特异性和较强的转录活性。结论:本研究成功筛选出具有内皮细胞表达特异性及较强转录活性的启动子片段。  相似文献   
12.
肝硬化是一种临床常见的肝病良性终末期表现。目前临床上尚缺乏有效的治疗措施。肝脏移植是最理想的治疗方法,但受供体肝脏来源限制,且费用昂贵。近年来开展的自体骨髓干细胞(BMSCs)移植治疗,为肝硬化的治疗带来了新的希望。BMSCs主要包括造型血干细胞和间充质干细胞,其具有可塑性,体外通过生长因子,体内利用特定微环境均可诱导BMSCs分化为肝前体细胞和成熟肝细胞,并明显改善肝功能。从动物实验到临床研究亦表明,BMSCs具有来源丰富、费用低廉、损伤小、自体移植不栓塞、无排斥反应等优点,为治疗肝病带来了新思路,有望成为生物人工肝的细胞来源。本文就BMSCs移植治疗肝硬化的研究现状,尤其是移植途径以及在肝脏内定居、迁移和分化机制的示踪观察方法和存在的问题作一综述,以期为从事肝病研究的同仁提供参考依据。通过对BMSCs移植从基础研究及临床应用的最新进展的描述,展示BMSCs在肝硬化治疗方面良好的治疗前景。  相似文献   
13.
人羊水间充质干细胞(Human amniotic fluid derived mesenchymal stem cells,AF-MSCs)是一类具有高度增殖、自我更新和多项分化潜能的干细胞,即使经过多次传代其生物学特性也不会发生改变。有研究表明,AF-MSCs具有免疫原性低、不成瘤性和肿瘤细胞亲嗜性等特点,而且能够迁移到肿瘤病灶。因此,AF-MSCs作为转运载体介导药物靶向治疗肿瘤具有潜在的优势。同时,通过羊膜腔穿刺获得羊水有利于避免胚胎干细胞研究有关的伦理问题,可作为一种理想的治疗方法。本文通过回顾、总结人羊水间充质干细胞的研究进展,展望人羊水间充质干细胞治疗肿瘤的应用前景。  相似文献   
14.
Although adult muscle tissue possesses an exceptional capacity for regeneration, in the case of large defects, the restoration to original state is not possible. A well-known source for the de novo regeneration is the adipose-derived stem cells (ASCs), which can be readily isolated and have been shown to have a broad differentiation and regenerative potential. In this work, we employed uniaxial cyclic tensile strain (CTS), to mechanically stimulate human ASCs to participate in the formation skeletal myotubes in an in vitro model of myogenesis. The application of CTS for 48 h resulted in the formation of a highly ordered array of parallel ASCs, but failed to support skeletal muscle terminal differentiation. When the same stimulation paradigm was applied to cocultures with mouse skeletal muscle myoblasts, the percentage of ASCs contributing to the formation of myotubes significantly exceeded the levels reported in the literature hitherto. In perspective, the mechanical strain may be used to increase the efficiency of incorporation of ASCs in the skeletal muscles, which could be found useful in diverse traumatic or pathologic scenarios.  相似文献   
15.
Adipose tissue-derived mesenchymal stem cells (ASCs) have been reported to be multipotent and to differentiate into various cell types, including osteocytes, adipocytes, chondrocytes, and neural cells. Recently, many authors have reported that ASCs are also able to differentiate into vascular endothelial cells (VECs) in vitro. However, these reports included the use of medium containing fetal bovine serum for endothelial differentiation. In the present study, we have developed a novel method for differentiating mouse ASCs into VECs under serum-free conditions. After the differentiation culture, over 80% of the cells expressed vascular endothelial-specific marker proteins and could take up low-density lipoprotein in vitro. This protocol should be helpful in clarifying the mechanisms of ASC differentiation into the VSC lineage.  相似文献   
16.
The aim of the study was to obtain the highest number of multipotent adipose-derived mesenchymal stem cells (ADMSCs) by using culture conditions which favour cell expansion without loss of mesenchymal stem cells (MSC)-like properties. Based on the assumption that stem cells reside in niches characterized by hypoxic condition, we investigated if the low oxygen tension may improve the proliferation and stemness of ADMSCs. Intact adipose tissue was resected from eight subjects, and the stromal vascular fraction was obtained by using type II collagenase. The heterogeneity of cellular lineages was confirmed by immunophenotypic analysis that showed the presence of leukocytes (CD45+), endothelial cells (CD34+), and pericytes (CD140+). The immunophenotype of confluent ADMSCs was similar to that of bone marrow-derived MSCs, except for the expression of CD34, which was variable (donor-dependent) and inversely correlated to the CD36 expression. ADMSCs showed a high clonal efficiency (94.5 ± 1 %) and were able to generate osteoblastic, chondrocytic and adipocytic lineages. ADMSCs were cultured under normoxic (21 % O2) and hypoxic (1 % O2) conditions, and we found that hypoxia significantly favoured ADMSC proliferation and preserved the expression of stemness genes, i.e. Nanog and Sox2. Since hypoxia reflects the microenvironment in which ADMSCs must proliferate and differentiate, the culture in hypoxic condition allows to better understand the biology of these cells and their regenerative potential. Low oxygen concentrations promote cell proliferation and stemness, thus enriching the pool of cells potentially able to differentiate into multi-lineages, and extending the possibility of a long-term expansion.  相似文献   
17.
《Cryobiology》2015,70(3):442-450
Adipose-derived stem cells (ADSCs), which are an accessible source of adult stem cells with capacities for self-renewal and differentiation into various cell types, have a promising potential in tissue engineering and regenerative medicine strategies. To meet the clinical demand for ADSCs, cryopreservation has been applied for long-term ADSC preservation. To optimize the addition, removal, freezing, and thawing of cryoprotective agents (CPAs) applied to ADSCs, we measured the transport properties of porcine ADSCs (pADSCs). The cell responses of pADSCs to hypertonic phosphate-buffered saline and common CPAs, dimethyl sulfoxide, ethylene glycol, and glycerol were measured by a microperfusion system at temperatures of 28, 18, 8, and −2 °C. We determined the osmotically inactive cell volume (Vb), hydraulic conductivity (Lp), and CPA permeability (Ps) at various temperatures in a two-parameter model. Then, we quantitatively analyzed the effect of temperature on the transport properties of the pADSC membrane. Biophysical parameters were used to optimize CPA addition, removal, and freezing processes to minimize excessive shrinkage of pADSCs during cryopreservation. The biophysical properties of pADSCs have a great potential for effective optimization of cryopreservation procedures.  相似文献   
18.
脂肪来源细胞体外增殖规律及定向诱导分化研究   总被引:8,自引:0,他引:8  
脂肪组织由整形外科吸脂术获得(19例,31.5±5.8岁)。酶消化法分离抽吸物中细胞,体外扩增至第10代.测定细胞生长曲线、累计倍增数目,明确其体外生长规律和增殖能力;通过对表面抗原CD29、CD105、CD106、CD166、CD49d、CD34、CD31、3G5等的检测分析脂肪来源细胞的群体组成:分别向软骨、骨、脂肪定向诱导,进一步明确该细胞群体定向分化能力。实验表明,每300ml脂肪抽吸物平均可获得5×10~7个有核细胞,体外扩增10代,平均每代倍增数目为1.59±0.224.累计倍增数目为15.53。流式细胞学及免疫细胞化学检测显示,干细胞相关抗原CD29、CD105、CD106、CD166等表达率均>60%,但与造血系相关的CD34、CD31表达率也分别达到7.3%、29.2%。ADC向软骨诱导可检测到Ⅱ型胶原表达;向成骨诱导可见矿化结节形成,并可检测到AKP、Osteonectin基因表达;向脂肪诱导可检测到PPARr2、GLU-4、Leptin基因表达,细胞内有脂滴形成。脂肪来源的细胞获得量大,体外增殖能力强,并含有具有多向分化潜能细胞,有可能作为组织构建的种子细胞。  相似文献   
19.
目的:建立人脂肪干细胞(adipose-derived stem cells,ADSCs)分离、培养的方法,观察其生物学特性,探讨其纵向分化的能力.方法:自皮下脂肪组织获得梭形细胞,观察细胞生物学特征,免疫组化鉴定波形蛋白和CD44.以含有胰岛素、地塞米松、1.甲基-3-异丁基-黄嘌呤的无血清混合培养基诱导其向脂肪细胞纵向分化,以细胞形态学变化.油红O染色和测定甘油磷酸脱氢酶活性判定分化是否成功.结果:人皮下脂肪中能够分离培养出生长旺盛的脂肪干细胞,诱导培养7d后细胞由梭形逐渐变圆,胞质内出现脂滴后逐渐增多融合为脂泡,并与甘油磷酸脱氢酶活性变化相吻合.油红O染色显示约(78.6±2.2)%细胞转变为脂肪细胞.结论:人皮下脂肪中分离的脂肪干细胞在体外诱导条件下能纵向分化为脂肪细胞,可能成为修复软组织缺损及整形美容的又一干细胞来源.  相似文献   
20.
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