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161.
目的研究基于抗炎及抗氧化作用探讨微生态制剂在非酒精性脂肪肝(NAFLD)模型大鼠中的应用价值。方法选择成年雄性SD大鼠并随机分为对照组、NAFLD组、蓝莓益生菌(BP)组。后2组采用复合高脂饲料建立NAFLD模型,BP组给予蓝莓联合益生菌干预。比较3组间血清肝功能指标、炎症指标、氧化应激指标含量及肝脏组织中炎症及氧化应激信号分子表达的差异。结果 NAFLD组大鼠血清中ALT、AST、TNF-α、IL-1、IL-6、IL-18、MDA的含量及肝脏中p-p38MAPK、NF-κB的表达量明显高于对照组,血清中SOD、GPX的含量及肝脏中p-AMPK、Nrf-2的表达量明显低于对照组;BP组大鼠血清中ALT、AST、TNF-α、IL-1、IL-6、IL-18、MDA的含量及肝脏中p-p38MAPK、NF-κB的表达量明显低于NALFD组,血清中SOD、GPX的含量及肝脏中p-AMPK、Nrf-2的表达量明显高于NALFD组。结论蓝莓益生菌用于NALFD模型大鼠的干预能够改善肝功能并抑制炎症反应、氧化应激反应。  相似文献   
162.
目的探讨新生期应用罗伊乳杆菌DSM 17938对大鼠肠道菌群的影响。方法 24只自然分娩出生的新生SD大鼠随机分为对照组和益生菌组(每组12只),益生菌组大鼠在生后2 d(PND2)开始予罗伊乳杆菌DSM 17938[1×10~6 CFU/(g·bw),1次/d]灌胃,至出生后第6天(PND6),对照组同期予等量生理盐水灌胃。PND7及PND42时,两组分别处死6只SD大鼠,留取空肠、结肠黏膜及其肠内容物标本,采用16S rDNA V4区二代测序法检测空肠、结肠菌群构成;采用Image Pro Plus 6.0测量空肠、结肠绒毛长度及隐窝深度。结果益生菌组和对照组大鼠的体质量增量差异无统计学意义(t值分别为0.410、0.856,均P0.05),PND42时两组大鼠空肠、结肠黏膜绒毛长度及隐窝深度差异均无统计学意义(t值分别为1.796、0.115、1.122和0.715,均P0.05),两组大鼠空肠和结肠菌群的α多样性及β多样性差异在PND7及PND42时差异均无统计学意义(均P0.05),不同组间的肠道菌群LEfSe分析显示PND7及PND42时益生菌组和对照组大鼠肠道菌群组成无差异。结论自然分娩出生的健康SD大鼠生命早期添加罗伊乳杆菌DSM 17938不影响生命早期、远期肠道菌群的总体组成及远期肠道上皮组织结构的发育。  相似文献   
163.
自然水体中微生物种类丰富,采集了上海周边的湖水、河水、海(岸)水、井水四类水体各两处样品,设计了含0.1μm终端截留孔径的半自动分级过滤装置分离富集不同粒径的水体微生物,使用原核微生物通用引物对16S rRNA基因V3+V4区扩增,高通量测序获得序列,对四类水体中的微生物群落进行比较分析,关注了能穿透0.22μm常规除菌过滤孔径的超微小微生物。结果显示水体环境主导了微生物的群落差异,河水与湖水中的群落总体接近,不同于海(岸)水和井水;海(岸)水和井水的微生物群落差异较大。0.1μm上截留的优势超微小微生物在河水与湖水样品中均为Proteobacteria门SAR11 clade目的Clade Ⅲ和Actinobacteria门Sporichthyaceae科HgcI clade,海(岸)水中为Proteobacteria门SAR11 clade目的Clade Ia和Nanoarchaeota门Woesearchaeia古菌,井水中为Nanoarchaeota门Woesearchaeia属古菌以及未定域或未分类的微生物。其中未定域的微生物16S rRNA基因在系统发育树上单独成簇,可能是古菌的一个新类型。本研究所使用的分级过滤装置显示了在发掘超微小微生物上的潜力。  相似文献   
164.
Chitin is an organic polymer and it is the most frequent marine natural polysaccharide after cellulose. The main natural sources of chitin are exoskeletons of insects, mollusks, the cell walls of certain fungi and crustaceans such as crabs, shrimps and lobsters. The waste of these marine exoskeletons are pollutant for the environment, but these waste raw materials could be useful for production of commercial products like chitin. Chitin is an important raw material used for water treatment, agricultural, biomedical, biotechnological purposes, food and paper industry and cosmetics. Based on the variety of importance, the present targets of this study are to optimize the demineralization process for the removal of calcium and phosphate contents from the waste of Portunidae segnis (P. segnis) by using acid at ambient temperature and to characterize the isolated demineralized sample as well as the percentage of remaining calcium and phosphorus contents by using Inductively Coupled Plasma-Optical Emission Spectrometry (ICP-OES). The prepared waste carbs coarse powder samples of P. segnis were demineralized with seven different concentrations of hydrochloric acid at ambient temperature for 1 h. All the demineralization samples by the different concentrations were analyzed by using sensitive ICP-OES. The results based on ICP-OES showed that among the seven different concentrations used in the demineralization process for the isolation of chitin, the best was 2 M of HCl concentration for the production of chitin. The results also showed that the optimized concentration 2 M HCl gave the minimum concentration of calcium and phosphorus compared to other concentrations applied in this experiment. In conclusion, the optimized concentration for demineralization process could be used commercially for the isolation or commercial production of chitin for agricultural, biomedical and biotechnological purposes.  相似文献   
165.
Globally among biotic stresses, diseases like blight, rust and blast constitute prime constraints for reducing wheat productivity especially in Bangladesh. For sustainable productivity, the development of disease-resistant lines and high yielding varieties is vital and necessary. This study was conducted using 122 advanced breeding lines of wheat including 21 varieties developed by Bangladesh Wheat and Maize Research Institute (BAMRI) with aims to identify genotypes having high yield potential and resistance to leaf blight, leaf rust and blast diseases. These genotypes were evaluated for resistance against leaf blight and leaf rust at Dinajpur and wheat blast at Jashore under field condition. Out of 122 genotypes tested, 20 lines were selected as resistant to leaf blight based on the area under the diseases progress curve (AUDPC) under both irrigated timely sown (ITS) and irrigated late sown (ILS) conditions. Forty-two genotypes were found completely free from leaf rust infection, 59 genotypes were identified as resistant, and 13 genotypes were identified as moderately resistant to leaf rust. Eighteen genotypes were immune against wheat blast, 42 genotypes were categorized as resistant, and 26 genotypes were identified as moderately resistant to wheat blast. Molecular data revealed that the 16 genotypes showed a positive 2NS segment among the 18 immune genotypes selected against wheat blast under field conditions. The genotypes BAW 1322, BAW 1295, and BAW 1203 can be used as earlier maturing genotypes and the genotypes BAW 1372, BAW 1373, BAW 1297 and BAW 1364 can be used for lodging tolerant due to short plant height. The genotypes WMRI Gom 1, BAW 1349 and BAW 1350 can be selected for bold grain and the genotypes WMRI Gom 1, BAW 1297, BAW 1377 can be used as high yielder for optimum seeding condition but genotypes BAW 1377 and BAW 1366 can be used for late sown condition. The selected resistant genotypes against specific diseases can be used in the further breeding program to develop wheat varieties having higher disease resistance and yield potential.  相似文献   
166.
Objective: The traditional Chinese medicine Caulis Sargentodoxae is widely used in the treatment of ulcerative colitis (UC), but the mechanism remains unknown. The present study aims to reveal its effective components, targets and pathways through network pharmacology and bioinformatics approaches.Materials and methods: Traditional Chinese Medicine Systems Pharmacology Database and Analysis Platform (TCMSP) was used to identify effective components. The ligand-based targets prediction was achieved through SwissTargetPrediction and TargetNet. UC-related targets were identified using Gene Expression Omnibus (GEO) data and DisGeNET. The common targets of disease and components were constructed and analyzed by PPI network. Lastly, Gene Ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) enrichment analyses are used to explain the functions of these common targets. Components-Targets-Pathways network was visualized and analyzed to further reveal the connection between the components and targets.Results: Eight active components and 102 key targets were identified to play an important role in UC. These targets were related to regulation of protein serine/threonine kinase activity, positive regulation of cell motility, response to molecule of bacterial origin, response to toxic substance, ERK1 and ERK2 cascade, peptidyl-tyrosine modification, inositol lipid-mediated signaling, cellular response to drug, regulation of inflammatory response and leukocyte migration. Moreover, HIF-1 signaling pathway and PI3K-Akt signaling pathway were the key targets involved in UC-related signaling pathways.Conclusion: The eight active components of Caulis Sargentodoxae mainly play a therapeutic role for UC through synergistic regulation of HIF-1 signaling pathway and PI3K-Akt signaling pathway.  相似文献   
167.
168.
Histone deacetylase (HDAC) 10, a class II family, has been implicated in various tumors and non-tumor diseases, which makes the discovery of biological functions and novel inhibitors a fundamental endeavor. In cancers, HDAC10 plays crucial roles in regulating various cellular processes through its epigenetic functions or targeting some decisive molecular or signaling pathways. It also has potential clinical utility for targeting tumors and non-tumor diseases, such as renal cell carcinoma, prostate cancer, immunoglobulin A nephropathy (IgAN), intracerebral hemorrhage, human immunodeficiency virus (HIV) infection and schizophrenia. To date, relatively few studies have investigated HDAC10-specific inhibitors. Therefore, it is important to study the biological functions of HDAC10 for the future development of specific HDAC10 inhibitors. In this review, we analyzed the biological functions, mechanisms and inhibitors of HDAC10, which makes HDAC10 an appealing therapeutic target.  相似文献   
169.
The gut microbiota–host co-metabolites are good indicators for representing the cross-talk between host and gut microbiota in a bi-direct manner. There is increasing evidence that levels of aromatic amino acids (AAAs) are associated with the alteration of intestinal microbial community though the effects of long-term microbial disturbance remain unclear. Here we monitored the gut microbiota composition and host–microbiota co-metabolites AAA profiles of mice after gentamicin and ceftriaxone treatments for nearly 4 months since their weaning to reveal the relationship between host and microbiome in long- term microbial disturbances. The study was performed employing targeted LC-MS measurement of AAA-related metabolites and 16S RNA sequence of mice cecal contents. The results showed obvious decreased gut microbial diversity and decreased Firmicutes/Bacteroidetes ratio in the cecal contents after long-term antibiotics treatment. The accumulated AAA (tyrosine, phenylalanine and tryptophan) and re-distribution of their downstreaming metabolites that produced under the existence of intestinal flora were found in mice treated with antibiotics for 4 months. Our results suggested that the long-term antibiotic treatment significantly changed the composition of the gut microbiota and destroyed the homeostasis in the intestinal metabolism. And the urinary AAA could be an indicator for exploring interactions between host and gut microbiota.  相似文献   
170.
【背景】长孢葡萄穗霉菌(Stachybotrys longispora) FG216是一株稀有海洋真菌,其次生代谢产物FGFC1具有纤溶活性。进行S. longispora FG216的基因组序列分析,将充实和促进海洋微生物功能基因和次生代谢产物合成生物学的基础研究和应用研究。【目的】解析S. longispora FG216的基因组序列,分析基因组生物功能和同源相似性关系,分析次生代谢产物纤溶活性化合物FGFC1的相关基因。【方法】基于Illumina HiSeq高通量测序平台对S. longispora FG216菌株进行De Novo测序,使用SSPACE、Augustus等软件进行组装、编码基因预测、基因功能注释、物种共线性分析以及预测FGFC1次生代谢产物合成基因簇。【结果】S. longispora FG216的基因组测序总长度为45622830bp,共得到605个Scaffold,GC含量为51.31%,注释预测得到13329个编码基因和169个非编码RNA。基因组测序数据提交至国家微生物科学数据中心(编号为NMDC60016264),其中13 053、8 422、8 460、7 714和2 847个基因分别能够在NR、KEGG、KOG、GO和CAZy数据库匹配到注释信息。比较基因组学分析发现,Stachybotrys具有保守性,核心基因占基因家族总数目的71.44%,S. longispora FG216与S. chlorohalonata IBT 40285的相似性最高;同时,预测得到101个次生代谢产物合成基因簇,其中18个基因簇与已知的化合物相匹配。通过antiSMASH预测,Cluster57是编码合成FGFC1母核结构异吲哚啉酮的基因簇,与S.chlorohalonataIBT40285中的基因簇相似度为40%。【结论】海洋稀有真菌S.longisporaFG216的基因组信息已上传至国家微生物科学数据中心公开使用,为Stachybotrys种属的研究提供了重要的参考意义,同时发现了S. longispora FG216次生代谢产物纤溶活性化合物FGFC1母核部分编码基因是Cluster 57。  相似文献   
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