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Immunologic changes to autologous transfusion after operational trauma in malignant tumor patients:Neopterin and Interleukin-2 被引量:5
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作者 严敏 陈钢 +2 位作者 房玲玲 柳子明 张秀来 《Journal of Zhejiang University-Science B(Biomedicine & Biotechnology)》 SCIE CAS CSCD 2005年第1期49-52,共4页
Objective:To estimate the impact of autologous transfusion on the status of perioperative immune activation inmalignant tumor patients.The Serum Neopterin and Interleukin-2(IL-2)were measured.Methods:Sixty patients un... Objective:To estimate the impact of autologous transfusion on the status of perioperative immune activation inmalignant tumor patients.The Serum Neopterin and Interleukin-2(IL-2)were measured.Methods:Sixty patients undergoingelective radical resection for malignant stomach tumor were enrolled in the prospective study and assigned to the following groups:(Ⅰ)Group A received autologous transfusion;(2)Group H received allogeneic transfusion.The perioperative course(Beforeinduction of anesthesia,after operation and 5 d after operation)of Neopterin and IL-2 was compared.Results:In group A,SerumNeopterin was significantly lower than baseline alter operation and IL-2 had no significant changes.In group H,both SerumNeopterin and IL-2 were significantly lower than baseline alter operation and 5 d after operation.Compared with group A,SerumNeopterin was significantly lower than baseline alter operation and 5 d after operation and IL-2 was significantly lower thanbaseline 5 d alter operation.Conchision:Autologous transfusion decreased the perioperative immune suppression in malignantstomach tumor patients. 展开更多
关键词 Autologous transfusion Allogeneic transfusion Serum Neopterin INF-gamma immunoloic change
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Mitochondrial pyruvate dehydrogenase E1 of Nosema bombycis:A marker in Microsporidian evolution 被引量:1
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作者 Tian LI Xiaoqun DANG +3 位作者 Jinshan XU Handeng LIU Guoqing PAN Zeyang ZHOU 《Current Zoology》 SCIE CAS CSCD 北大核心 2009年第6期423-429,共7页
Microsporidia are a group of intracelluar eukaryotic parasites, which can infected almost all animals, including human beings. Till now, no mitochodria but mitosome, a remnant of mitochondria was discovered in this ph... Microsporidia are a group of intracelluar eukaryotic parasites, which can infected almost all animals, including human beings. Till now, no mitochodria but mitosome, a remnant of mitochondria was discovered in this phylum. We present here the mitochondrial pyruvate dehydrogenase El (PDH, including PDHα and PDHβ) of the microsporidian Nosema bombycis, the pathogen of silkworm pebrine. Compared with PDH of microsporidian Encephalitozoon cuniculi and Antonospora locustae, both subunits are eonscrced. The phylogeny indicated that both subunits are mitochondrial. The syntenic maps revealed the subunits organization of NbPDH is distributed in different scaffolds, similar to that of EcPDH but different with AIPDH, and the relationship between phylogeny tree and organization of PDH suggest that the AlPDH subunits organization is the ancestral style of microsporidia, and through the genome evolution, the reshuffling of the chromosome of microsporidia occurred, the adjacent style of ALPDHE1 organization changed, and the two subunits separated and located to different chromosomes in E. cuniculi. For N. bombycis and N. ceranae, they locate to different scaffolds. In order to determine NbPDH subcellular localizations, we prepared the polyclonal antibodies against NbPDH prokaryotic fusion proteins, and adopted the colloidal gold immunological electron microscopy, the expression signals of NbPDH were observed in spores however, the subcellular localization were not definited. In general, through comparison of three mierosporidian PDH molecular phylogeny, subunits organization in chromosomes, localization indicated that PDH is an interesting marker in microsporidia evolution 展开更多
关键词 MICROSPORIDIA Nosema bombycis PDH SYNTENY Immunoloealization EVOLUTION
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