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Pancreatic ductal adenocarcinoma (PDAC) is an invasive and aggressive cancer that remains a major threat to human health across the globe. Despite advances in cancer treatments and diagnosis, the prognosis of PDAC patients remains poor. New and more effective PDAC therapies are therefore urgently required. In this study, we identified a novel host factor, namely the LncRNA TP73-AS1, as overexpressed in PDAC tissues compared to adjacent healthy tissue samples. The overexpression of TP-73-AS1 was found to correlate with both PDAC stage and lymph node metastasis. To reveal its role in PDCA, we targeted TP73-AS1 using LnRNA inhibitors in a range of pancreatic cancer (PC) cell lines. We found that the inhibition of TP73-AS1 led to a loss of MMP14 expression in PC cells and significantly inhibited their migratory and invasive capacity. No effects of TP73-AS1 on cell survival or proliferation were observed. Mechanistically, we found that TP73-AS1 suppressed the expression of the known oncogenic miR-200a. Taken together, these data highlight the prognostic potential of TP73-AS1 for PC patients and highlight it as a potential anti-PDAC therapeutic target.  相似文献   
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A process for human influenza H1N1 virus vaccine production from Madin–Darby canine kidney (MDCK) cells using a novel packed-bed bioreactor is described in this report. The mini-bioreactor was used to study the relationship between cell density and glucose consumption rate and to optimize the infection parameters of the influenza H1N1 virus (A/New Caledonia/20/99). The MDCK cell culture and virus infection were then monitored in a disposable perfusion bioreactor (AmProtein Current Perfusion Bioreactor) with proportional–integral–derivative control of pH, dissolved O2 (DO), agitation, and temperature. During 6 days of culture, the total cell number increased from 2.0?×?109 to 3.2?×?1010 cells. The maximum virus titers of 768 hemagglutinin units/100 μL and 7.8?×?107 50 % tissue culture infectious doses/mL were obtained 3 days after infection. These results demonstrate that using a disposable perfusion bioreactor for large-scale cultivation of MDCK cells, which allows for the control of DO, pH, and other conditions, is a convenient and stable platform for industrial-scale production of influenza vaccines.  相似文献   
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Background

Glutathione S-transferase (GST) variants have been considered as risk factors for the pathogenesis of primary open angle glaucoma (POAG). However, the results have been inconsistent. In this study, we performed a meta-analysis to assess the association between GSTM1 and GSTT1 null genotypes and the risk for POAG.

Methods

Published literature from PubMed and EMBASE databases was retrieved. All studies evaluating the association between GSTM1/GSTT1 variants and POAG were included. Pooled odds ratio (OR) and 95% confidence interval (CI) were calculated using fixed- or random-effects model.

Results

14 studies (1711 POAG cases and 1537 controls) were included in the meta-analysis of GSTM1 genotypes and 10 studies (1306 POAG cases and 1114 controls) were included in the meta-analysis of GSTT1 genotypes. The overall result showed that the association between GSTM1 and GSTT1 null genotypes and risk for POAG was not statistically significant (GSTM1: OR = 1.19, 95% CI = 0.82–1.73, p = 0.361; GSTT1: OR = 1.26, 95% CI = 0.77–2.06, p = 0.365). The results by ethnicity showed that the association between the GSTM1 null genotype and risk for POAG is statistically significant in East Asians (OR = 1.41, 95% CI = 1.04–1.90, p = 0.026), but not in Caucasians (OR = 1.13, 95% CI = 0.69–1.84, p = 0.638) and Latin-American (OR = 1.09, 95% CI = 0.62–1.92, p = 0.767). In addition, there was no significant association of GSTT1 null genotype with risk for POAG in either ethnic population.

Conclusions

The present meta-analysis suggested that there might be a significant association of GSTM1 null genotype with POAG risk in East Asians.  相似文献   
5.
An antifungal Actinomyces BS-112 strain, with Aspergillus flavus as the target pathogen, was isolated from soil in the forest land of Mountain Tai. This strain showed a strong antagonistic activity against various mold fungi in food and feed. Strain BS-112 was identified as Streptomyces hygroscopicus based on its morphologic, cultural, physiological, biochemical characteristics, cell wall components and 16S rDNA sequence. Four active components were separated and purified from strain BS-112. These four antifungal components were identified as tetrins A and B and tetramycins A and B using spectroscopic analysis including mass spectrometry and nuclear magnetic resonance spectroscopy. Tetrins A and B and tetramycins A and B strongly inhibited the growth of A. flavus, A. alutaceus, A. niger, and A. fumigatus in vitro.  相似文献   
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目的:探讨658 nm低能量激光照射对人牙周膜细胞增殖、碱性磷酸酶活性及纤维连接蛋白合成的影响.方法:改良组织块法体外培养人牙周膜细胞.通过658 nm激光照射人牙周膜细胞,观察能量密度为1.86 J/cm2和3.72 J/cm2激光照射后不同时间点细胞增殖效应、碱性磷酸酶活性和纤维连接蛋白的变化.结果:1.86 J/cm2和3.72 J/cm2能量密度的激光照射人牙周膜细胞,可显著促进细胞增殖效应.3.72 J/cm2能量密度的激光照射可提高人牙周膜细胞碱性磷酸酶活性;能量密度为1.86 J/cm2的激光照射人牙周膜细胞72 h后,细胞中纤维连接蛋白分泌量增加.结论:658 nm低剂量激光照射可促进人牙周膜细胞增殖;适量的低剂量激光照射人牙周膜细胞可促进其碱性磷酸酶活性及纤维连接蛋白的分泌.  相似文献   
8.
代谢工程作为通过引入外源合成途径或改造优化代谢网络,进行高附加值的天然代谢产物生物合成的技术,已经得到广泛应用。但随着目标合成产物的结构日渐复杂,构建多基因的从头合成途径造成宿主生物代谢失衡与中间产物对宿主细胞产生毒害作用等一系列问题发生的可能性也随之增加。为解决这些问题合成支架策略应运而生,合成支架将途径酶共定位以提高局部酶和代谢物的浓度,来增强代谢通量并限制中间产物与宿主细胞环境间的相互作用,成为生物催化和合成生物学研究的热点之一。尽管由核酸、蛋白质构成的合成支架策略已经应用于多种代谢物的异源合成,并取得了不同程度的成功,但合成支架的精确组装仍然是一项艰巨的任务。文中详细介绍了合成支架技术的研究现状,详细阐述了合成支架技术的原理和实例,并初步探讨了其应用前景。  相似文献   
9.
为探究水通道蛋白(AQP)在沙蒿响应干旱胁迫中的作用机制,该研究以青海省柴达木盆地沙蒿为试验材料,采用RACE技术对其AQP基因进行扩增,获得沙蒿AQP全长克隆并对AQP蛋白进行结构预测和分析;采用qRT-PCR对沙蒿AQP基因在不同程度干旱胁迫以及不同组织部位的表达模式进行分析。结果表明:(1)成功克隆获得沙蒿AQP基因长746 bp的片段1和长534 bp的片段2,经拼接后得到全长cDNA序列,沙蒿AQP基因总长为864 bp。(2)亚细胞定位表明沙蒿AQP基因定位于细胞膜上;同源比对显示沙蒿与向日葵、莴苣、橡胶树等植物的AQP基因具有较高的相似性;结构预测表明AQP蛋白含6个跨膜螺旋结构且亲水性较弱,α螺旋和无规则卷曲为AQP蛋白二级结构的主要构成元件。(3)qRT-PCR分析表明,沙蒿AQP基因随着干旱胁迫的加重呈现有规律的变化,根、茎、叶中表达均上调,且叶中AQP基因表达量上调幅度最大。研究表明沙蒿AQP基因结构特征及其表达模式都是沙蒿对干旱胁迫的一种适应。  相似文献   
10.
Incomplete tear film spreading and eyelid closure can cause defective renewal of the ocular surface and air exposure‐induced epithelial keratopathy (EK). In this study, we characterized the role of autophagy in mediating the ocular surface changes leading to EK. Human corneal epithelial cells (HCECs) and C57BL/6 mice were employed as EK models, respectively. Transmission electron microscopy (TEM) evaluated changes in HCECs after air exposure. Each of these models was treated with either an autophagy inhibitor [chloroquine (CQ) or 3‐methyladenine (3‐MA)] or activator [Rapamycin (Rapa)]. Immunohistochemistry assessed autophagy‐related proteins, LC3 and p62 expression levels. Western blotting confirmed the expression levels of the autophagy‐related proteins [Beclin1 and mammalian target of rapamycin (mTOR)], the endoplasmic reticulum (ER) stress‐related proteins (PERK, eIF2α and CHOP) and the PI3K/Akt/mTOR signalling pathway‐related proteins. Real‐time quantitative PCR (qRT‐PCR) determined IL‐1β, IL‐6 and MMP9 gene expression levels. The TUNEL assay detected apoptotic cells. TEM identified autophagic vacuoles in both EK models. Increased LC3 puncta formation and decreased p62 immunofluorescent staining and Western blotting confirmed autophagy induction. CQ treatment increased TUNEL positive staining in HCECs, while Rapa had an opposite effect. Similarly, CQ injection enhanced air exposure‐induced apoptosis and inflammation in the mouse corneal epithelium, which was inhibited by Rapa treatment. Furthermore, the phosphorylation status of PERK and eIF2α and CHOP expression increased in both EK models indicating that ER stress‐induced autophagy promoted cell survival. Taken together, air exposure‐induced autophagy is indispensable for the maintenance of corneal epithelial physiology and cell survival.  相似文献   
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