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吴桂英  许永成 《蛇志》1991,3(3):34-35
本文对我院1988年至1990年住院40例慢性肾脏疾病病人进行了血液流变学的测定。其中我们发现Ⅱ型肾病综合征病人血液呈高粘状态[P<0.05],慢性肾小球肾炎普通型血液呈低粘状态[P<0.01],其它类型病人血液流变学测定基本正常,并讨论了其原因及临床意义,为临床诊断及治疗提供了依据。  相似文献   
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寄生榆童锤角叶蜂的姬蜂种类研究(膜翅目,姬蜂科)   总被引:3,自引:3,他引:0  
报道2种寄生榆童锤角叶蜂Agenocimbex elmina Li et Wu的姬蜂,其中1种为新种:天水镶颚姬蜂Hyposotertianshuiensis Sheng,sp.nov.;另一种为已知种:日本欧姬蜂Opheltes japonicus(Cushman,1924).  相似文献   
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INTRODUCTIONHepatitis B virus (HBV) infection is the mostcommon viral infection in humans especially inChina and East Asia. At present, the most effi-cient method to control the disease is vaccinationof new-borns. Both blood derived vaccine and re-combinant vaccine are hepatitis B surface alltigen(HBsAg)-based and useful in the prevention of thedisease[1-3]. HBsAg could evoke protective humoralimmune response in vivo, but the immune memoryonly last for 5 years or so[3, 4]. How to des…  相似文献   
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测定结肠粘膜菌群变化对大肠癌的早期诊断辅助性的研究佳木斯医学院附属医院腔镜室佳木斯154002孙玉清佳木斯医学院生理教研室吕密凯佳木斯医学院微生物教研室李丽秋马淑霞杨景云大肠癌是常见的恶性肿瘤之一,许多资料表明发病率逐年上升。病因及发病机理不清,有关...  相似文献   
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Saccharina (Laminaria) japonica, a safe, cheap, and readily available macroalga can be used as a substrate for various microbial fermentations. This work investigated the feasibility of S. japonica as a substrate for production of pigments by the fungus Talaromyces amestolkiae GT11 in solid-state fermentation without additional salt and/or nitrogen sources. Under optimized conditions, the pigment exhibited maximum absorption spectrum at 410 (yellow) and 510 nm (red), and the pigment yield of 1,153.5 (yellow) and 506.2 (red) OD units g?1 of dry fermented substrate were achieved with a particle size of 1.0 mm and pH 7, although visually the pigment was reddish in color. The optimum incubation period, pH, moisture, inoculum size, and temperature were observed to be at 192 h, pH 7.0, 80 % (w/w) moisture, 1.8?×?106 spores mL?1 of inoculum g-1 of dry substrate and 28 °C. Hence, this study indicates the suitability of utilization of S. japonica as a substrate for natural pigment production by T. amestolkiae GT11 which can be used in food, cosmetics and pharmaceutical industries for various applications.  相似文献   
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The versatile functions of the heat shock protein 70 (Hsp70) family of molecular chaperones rely on allosteric interactions between their nucleotide-binding and substrate-binding domains, NBD and SBD. Understanding the mechanism of interdomain allostery is essential to rational design of Hsp70 modulators. Yet, despite significant progress in recent years, how the two Hsp70 domains regulate each other''s activity remains elusive. Covariance data from experiments and computations emerged in recent years as valuable sources of information towards gaining insights into the molecular events that mediate allostery. In the present study, conservation and covariance properties derived from both sequence and structural dynamics data are integrated with results from Perturbation Response Scanning and in vivo functional assays, so as to establish the dynamical basis of interdomain signal transduction in Hsp70s. Our study highlights the critical roles of SBD residues D481 and T417 in mediating the coupled motions of the two domains, as well as that of G506 in enabling the movements of the α-helical lid with respect to the β-sandwich. It also draws attention to the distinctive role of the NBD subdomains: Subdomain IA acts as a key mediator of signal transduction between the ATP- and substrate-binding sites, this function being achieved by a cascade of interactions predominantly involving conserved residues such as V139, D148, R167 and K155. Subdomain IIA, on the other hand, is distinguished by strong coevolutionary signals (with the SBD) exhibited by a series of residues (D211, E217, L219, T383) implicated in DnaJ recognition. The occurrence of coevolving residues at the DnaJ recognition region parallels the behavior recently observed at the nucleotide-exchange-factor recognition region of subdomain IIB. These findings suggest that Hsp70 tends to adapt to co-chaperone recognition and activity via coevolving residues, whereas interdomain allostery, critical to chaperoning, is robustly enabled by conserved interactions.  相似文献   
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细胞粘附分子(CAM)可介导细胞间及细胞与间质之间的相互作用并传导信息,参与机体胚胎发育、免疫调节、炎症反应、组织修复及肿瘤转移等生理和病理过程。细胞间粘附分子1(ICAM1)是主要的CAM分子之一,可表达于活化的细胞,内皮细胞等。人膜是母体与胚胎滋养层直接接触的特殊组织、已发现蜕膜细胞在着床过程中参与了局部免疫耐受的形成,但对着床期ICAM1在蜕膜细胞表达的动态研究鲜见报道。本研究采用免疫荧光、多参数流式细胞术,分别从整体和局部角度、着床过程中外周血淋巴细胞(PBLC)及子宫内膜/蜕膜(EC/DC)细胞ICAM1的不同表达特点进行了动态观察和对比性分析。结果发现,ICAM1在着床期PBLC及EC/DC中的表达均存在明显的动态变化(Tab.1;Figs.1&2)。ICAM1在PBLC中的表达于妊娠第一天(D1)即开始降低,D2降至最低;与此不同,ICAM1在EC/DC中的表达于D2开始降低,D4降至最低,D5开始恢复,但尚未恢复到对照水平。结果表明,ICAM1在蜕膜局部的表达调节方式不同于外周血;ICAM1表达阳性的外周血,淋巴细胞和蜕膜细胞均代表着活化的功能性细胞,这些细胞表面ICAM  相似文献   
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