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991.
目的:探索体外小鼠脂肪来源干细胞(Adipose—derivedstemcells,ASCs)诱导分化为内皮细胞(endothelialprogenitorcells,EPCs)的可行性。方法:利用I型胶原酶消化法和传代培养纯化法从小鼠脂肪组织中分离、培养及扩增ASCs,通过流式细胞仪检测ASCs特异性表面抗原CD29和CD44、CD105的表达;取第2代ASCs进行内皮诱导:即BD基质胶包被+内皮细胞生长诱导培养基(M199+10%血清+10ng/mL血管内皮细胞生长因子VEGF+10ng/ml碱性生长因子bFGF)。诱导两周左右,倒置显微镜观察诱导前后细胞的一般形态学特征;同时通过成血管实验观察成管腔能力;通过免疫荧光鉴定CD31表型分子的表达。结果:成功培养小鼠ASCs;CD29、CD44、CD90、呈阳性表达,而CD31、CD34、CD45呈阴性表达;诱导后的细胞形态呈三角形或多边形;HE染色观察可见明显的管腔样结构;免疫荧光法CD31表达阳性;MTT法成功记录EPCs增殖生长曲线。结论:成功的诱导小鼠脂肪来源干细胞分化为血管内皮细胞,为后续体内移植实验提供理论基础,同时也为临床受损组织或器官的重建再生提供实验基础。  相似文献   
992.
以ECV304细胞为对象分析登革病毒感染血管内皮细胞的机制。2型登革病毒(DEN2)吸附后微量蚀斑法测定ECV304细胞上清释放的病毒滴度,证实该细胞对DEN2感染有一定的敏感性。机械刮取或胰蛋白酶消化法收集ECV304细胞分离膜蛋白,SDS—PAGE见胰酶处理样品缺失一43 kDa的膜蛋白。将ECV304细胞膜蛋白与^35S—Met标记的DEN2进行病毒重叠蛋白结合试验(VOPBA),有29、34和43kDa的3种膜蛋白可与DV结合,其中29 kDa的蛋白对胰酶耐受。培养的ECV304细胞中加入重组E蛋白(rEgp)对DEN2吸附进行阻断试验,微量蚀斑法与间接免疫荧光表明rEgp抑制DEN2感染该细胞。VOPBA中rEgp可阻断病毒与细胞膜蛋白的结合。结果表明ECV304细胞表面可能存在29、34、43 kDa的3种与DEN2结合的相关蛋白,DEN2E蛋白可直接介导DV感染血管内皮细胞。  相似文献   
993.
Plant defensins are antimicrobial peptides that exhibit mainly antifungal activity against a broad range of plant fungal pathogens. However, their actions against Candida albicans have not been extensively studied. The mRNA for γ-thionin, a defensin from Capsicum chinense, has been expressed in bovine endothelial cells. The conditioned medium of these cells showed antifungal activity on germ tube formation (60–70% of inhibition) and on the viability of C. albicans (70–80% of inhibition). Additionally, C. albicans was not able to penetrate transfected cells. Conditioned medium from these cells also inhibited the viability (80%) of the human tumor cell line, HeLa.  相似文献   
994.
目的:探讨利拉鲁肽联合二甲双胍对肥胖2型糖尿病(T2DM)患者糖脂代谢、血管内皮功能及微炎症状态的影响.方法:选取2016年7月~2019年4月期间我院收治的117例T2DM肥胖患者.根据随机数字表法分为对照组(n=58,二甲双胍治疗)和研究组(n=59,利拉鲁肽联合二甲双胍治疗),比较两组患者体质量指数(BMI)、糖...  相似文献   
995.
《Biomarkers》2013,18(6):487-492
Abstract

Context: There are few reports of endothelial progenitor cells (EPCs) in peripheral blood have been found in patients with gastric cancer.

Objective: We quantified EPCs in the peripheral blood of patients with gastric cancer, with the expectation that this approach might lead to a new marker for the diagnosis of gastric cancer.

Methods: We enumerated CD34+/CD133+ EPCs in the peripheral blood of 145 subjects by use of flow cytometry.

Results and conclusion: The quantity of peripheral blood EPCs in patients with gastric cancer are correlated with patient’s age. In addition, the number of peripheral blood EPCs in patients with gastric cancer increased with tumor node metastasis stage and histological differentiation of the cancers, and with the operative status of the patients.  相似文献   
996.
997.
Using the zebrafish, we previously identified a central function for perlecan during angiogenic blood vessel development. Here, we explored the nature of perlecan function during developmental angiogenesis. A close examination of individual endothelial cell behavior revealed that perlecan is required for proper endothelial cell migration and proliferation. Because these events are largely mediated by VEGF-VEGFR2 signaling, we investigated the relationship between perlecan and the VEGF pathway. We discovered that perlecan knockdown caused an abnormal increase and redistribution of total VEGF-A protein suggesting that perlecan is required for the appropriate localization of VEGF-A. Importantly, we linked perlecan function to the VEGF pathway by efficiently rescuing the perlecan morphant phenotype by microinjecting VEGF-A165 protein or mRNA. Combining the strategic localization of perlecan throughout the vascular basement membrane along with its growth factor-binding ability, we hypothesized a major role for perlecan during the establishment of the VEGF gradient which provides the instructive cues to endothelial cells during angiogenesis. In support of this hypothesis we demonstrated that human perlecan bound in a heparan sulfate-dependent fashion to VEGF-A165. Moreover, perlecan enhanced VEGF mediated VEGFR2 activation of human endothelial cells. Collectively, our results indicate that perlecan coordinates developmental angiogenesis through modulation of VEGF-VEGFR2 signaling events. The identification of angiogenic factors, such as perlecan, and their role in vertebrate development will not only enhance overall understanding of the molecular basis of angiogenesis, but may also provide new insight into angiogenesis-based therapeutic approaches.  相似文献   
998.
Oxidized low-density lipoprotein (oxLDL) induces endothelial cell death through the activation of NF-κB and AP-1 pathways. TRAF3IP2 is a redox-sensitive cytoplasmic adapter protein and an upstream regulator of IKK/NF-κB and JNK/AP-1. Here we show that oxLDL-induced death in human primary coronary artery endothelial cells (ECs) was markedly attenuated by the knockdown of TRAF3IP2 or the lectin-like oxLDL receptor 1 (LOX-1). Further, oxLDL induced Nox2/superoxide-dependent TRAF3IP2 expression, IKK/p65 and JNK/c-Jun activation, and LOX-1 upregulation, suggesting a reinforcing mechanism. Similarly, the lysolipids present in oxLDL (16:0-LPC and 18:0-LPC) and minimally modified LDL also upregulated TRAF3IP2 expression. Notably, whereas native HDL3 reversed oxLDL-induced TRAF3IP2 expression and cell death, 15-lipoxygenase-modified HDL3 potentiated its proapoptotic effects. The activators of the AMPK/Akt pathway, adiponectin, AICAR, and metformin, attenuated superoxide generation, TRAF3IP2 expression, and oxLDL/TRAF3IP2-mediated EC death. Further, both HDL3 and adiponectin reversed oxLDL/TRAF3IP2-dependent monocyte adhesion to endothelial cells in vitro. Importantly, TRAF3IP2 gene deletion and the AMPK activators reversed oxLDL-induced impaired vasorelaxation ex vivo. These results indicate that oxLDL-induced endothelial cell death and dysfunction are mediated via TRAF3IP2 and that native HDL3 and the AMPK activators inhibit this response. Targeting TRAF3IP2 could potentially inhibit progression of atherosclerotic vascular diseases.  相似文献   
999.
1000.
Embryonic brain endothelial cells can serve as an important tool in the study of angiogenesis and neurovascular development and interactions. The two vascular networks of the embryonic forebrain, pial and periventricular, are spatially distinctive and have different origins and growth patterns. Endothelial cells from the pial and periventricular vascular networks have unique gene expression profiles and functions. Here we present a step-by-step protocol for isolation, culture, and verification of pure populations of endothelial cells from the periventricular vascular network (PVECs) of the embryonic forebrain (telencephalon). In this approach, telencephalon devoid of pial membrane obtained from embryonic day 15 mice is minced, digested with collagenase/dispase, and dispersed mechanically into a single cell suspension. PVECs are purified from cell suspension using positive selection with anti-CD-31/PECAM-1 antibody conjugated to MicroBeads using a strong magnetic separation method. Purified cells are cultured on collagen 1 coated culture dishes in endothelial cell culture medium until they become confluent and further subcultured. PVECs obtained with this protocol exhibit cobblestone and spindle shaped phenotypes, as visualized by phase-contrast light microscopy and fluorescence microscopy. Purity of PVEC cultures was established with endothelial cell markers. In our hands, this method reliably and consistently yields pure populations of PVECs. This protocol will benefit studies aimed at gaining mechanistic insights into forebrain angiogenesis, understanding PVEC interactions, and cross-talks with neuronal cell types and holds tremendous potential for therapeutic angiogenesis.  相似文献   
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