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Macrophages are the most abundant immune cells in the lung, which play an important role in COPD. The anti-inflammatory and anti-oxidation of ergosterol are well documented. However, the effect of ergosterol on macrophage polarization has not been studied. The objective of this work was to investigate the effect of ergosterol on macrophage polarization in CSE-induced RAW264.7 cells and Sprague-Dawley (SD) rats COPD model. Our results demonstrate that CSE-induced macrophages tend to the M1 polarization via increasing ROS, IL-6 and TNF-α, as well as increasing MMP-9 to destroy the lung construction in both RAW264.7 cells and SD rats. However, treatment of RAW264.7 cells and SD rats with ergosterol inhibited CSE-induced inflammatory by decreasing ROS, IL-6 and TNF-α, and increasing IL-10 and TGF-β, shuffling the dynamic polarization of macrophages from M1 to M2 both in vitro and in vivo. Ergosterol also decreased the expression of M1 marker CD40, while increased that of M2 marker CD163. Moreover, ergosterol improved the lung characters in rats by decreasing MMP-9. Furthermore, ergosterol elevated HDAC3 activation and suppressed P300/CBP and PCAF activation as well as acetyl NF-κB/p65 and IKKβ, demonstrating that HDAC3 deacetylation was involved in the effect of ergosterol on macrophage polarization. These results also provide a proof in immunoregulation of ergosterol for therapeutic effects of cultured C. sinensis on COPD patients.  相似文献   
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Cervical squamous cell carcinoma and endocervical adenocarcinoma (CESC) is the fourth commonest female malignancy worldwide. CESC progresses in immune-microenvironment mainly composed of infiltrating immune and stromal cells. Here, we performed an integrated analysis incorporating the expression profiles from the Cancer Genome Atlas (TCGA) database and scores of immune and stromal cells calculated by Estimation of Stromal and Immune cells in Malignant Tumours using Expression data (ESTIMATE) algorithm. A two-gene signature (CD1C and CD6 genes) was established to predict the prognosis of CESC. Based on this signature, patients were divided into the high- and low-risk groups, and this signature showed good prognostic performance according to the results of Kaplan-Meier analysis and receiver operating characteristic (ROC) analysis in train set and two validation sets. A nomogram was built for evaluating the clinical applicability of this signature. In addition, based on Tumor Immune Estimation Resource (TIMER) database, 2 hub genes showed negative correlations with tumor purity and positive correlations with infiltrating levels of immune filtrating cells. What’s more, we propose new treatment strategies for the two prognostic subtypes. Low- risk patients were found presenting with a higher level of immune checkpoint molecules and showing higher immunogenicity in immunophenoscore (IPS) analysis, which indicated a better response for immunotherapy. Meanwhile, estimated by Genomics of Drug Sensitivity in Cancer (GDSC) database, the high-risk patients showed sensitive responses to five chemotherapy drugs. Finally, 10 candidate small-molecule drugs for CESC were defined. In summary, the CD1C-CD6 signature can accurately predict the prognosis of CESC.  相似文献   
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Mitochondria, which are cell compartments that are widely present in eukaryotic cells, have been shown to be involved in a variety of synthetic, metabolic, and signaling processes, thereby playing a vital role in cells. The mitochondrial unfolded protein response (mtUPR) is a response in which mitochondria reverse the signal to the nucleus and maintain mitochondrial protein homeostasis when unfolded and misfolded proteins continue to accumulate. Multiple neurodegeneration diseases, including Alzheimer's disease (AD), Parkinson’s disease (PD), and familial amyotrophic lateral sclerosis (fALS), are public health challenges. Every year, countless efforts are expended trying to clarify the pathogenesis and treatment of neurological disorders, which are associated with mitochondrial dysfunction to some extent. Numerous studies have shown that mtUPR is involved in and plays an important role in the pathogenesis of neurological disorders, but the exact mechanism of the disorders is still unclear. Further study of the process of mtUPR in neurological disorders can help us more accurately understand their pathogenesis in order to provide new therapeutic targets. In this paper, we briefly review mtUPR signaling in Caenorhabditis elegans (C. elegans) and mammals and summarize the role of mtUPR in neurodegeneration diseases, including AD, PD and fALS.  相似文献   
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胡冰  慕萍 《医学信息学杂志》2020,41(11):68-70,85
结合陆军军医大学第一附属医院移动医护信息化建设实践,介绍移动查房系统软件架构、网络架构、具体功能及应用优势,指出该系统可实现患者临床信息实时更新和共享,有助于提高医护人员临床决策响应能力和工作效率。  相似文献   
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何琦  赵威  张志谦 《解剖学报》2020,51(6):882-887
目的 通过规律间隔成簇短回文重复序列/相关蛋白9(CRISPR/Cas9)系统敲减人肝癌细胞系Hep12中电压依赖性钙离子通道 α2δ1的表达,观察α2δ1敲减后对肝癌细胞干性的影响。方法 设计3对靶向α2δ1的向导 (sgRNA),长度为20 bp,构建到lenti CRISPRv2-puro载体上,然后在体外检测sgRNA切割活性,利用慢病毒包装系统包装含有sgRNA的重组质粒,将包装好的病毒感染Hep-12细胞,2 d后加入嘌呤霉素筛选。利用Western blotting验证α2δ1的敲减效果和干性相关基因的表达。通过成球实验检测其体外自我更新能力的变化。结果 测序结果显示,sgRNA成功插入载体质粒;体外切割实验显示,3条sgRNA均有切割活性;Western blotting结果显示,α2δ1基因的表达显著降低,干性相关基因B细胞特异性莫洛尼白血病病毒插入位点1(BMI1)和Nanog的表达显著被抑制;无血清培养基成球实验结果表明,敲减α2δ1导致Hep-12细胞的体外自我更新能力减弱。结论 利用CRISPR/Cas9技术成功构建敲除α2δ1基因的Hep-12细胞系;敲除α2δ1基因后能抑制Hep-12细胞肿瘤干细胞样特性。  相似文献   
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