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21.
大熊猫超轻初生幼仔人工哺育初探   总被引:6,自引:2,他引:4  
大熊猫是存活率较低的动物之一 ,究其原因可能与其幼仔初生体重较轻有关 ,特别是与绝大多数哺乳动物相比 ,其幼仔初生重与母兽体重差异极大 ,约为母兽体重的千分之一 [1] ,加之大熊猫育幼行为高度特化 ,其幼仔存活更为不易。自 1 990年采用人工辅助育幼方式繁殖成活大熊猫双胞胎以来 ,人工圈养条件下 ,大熊猫的育幼方式概括起来有如下 4种 :1 )大熊猫母兽自行哺育 ,这是自 1 963年至今最常用的方式 ;2 )人工辅助大熊猫母兽育幼 [2 ] ,现已存活 5对双胞胎 [3] ;3)用大熊猫初乳与羊乳混合喂养 ,全人工育幼 [4 ,5] ,目前已育成 2只大熊猫 [5] ;…  相似文献   
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Extensive effort is being made into cathode materials for sodium‐ion battery to address several fatal issues, which restrict their future application in practical sodium‐ion full cell system, such as their unsatisfactory initial Coulombic efficiency, inherent deficiency of cyclable sodium content, and poor industrial feasibility. A novel air‐stable O3‐type Na[Li0.05Mn0.50Ni0.30Cu0.10Mg0.05]O2 is synthesized by a coprecipitation method suitable for mass production followed by high‐temperature annealing. The microscale secondary particle, consisting of numerous primary nanocrystals, can efficiently facilitate sodium‐ion transport due to the short diffusion distance, and this cathode material also has inherent advantages for practical application because of its superior physical properties. It exhibits a reversible capacity of 172 mA h g?1 at 0.1 C and remarkable capacity retention of 70.4% after 1000 cycles at 20 C. More importantly, it offers good compatibility with pristine hard carbon as anode in the sodium‐ion full cell system, delivering a high energy density of up to 215 W h kg?1 at 0.1 C and good rate performance. Owing to the high industrial feasibility of the synthesis process, good compatibility with pristine hard carbon anode, and excellent electrochemical performance, it can be considered as a promising active material to promote progress toward sodium‐ion battery commercialization.  相似文献   
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Sodium‐ion batteries (SIBs) have been considered as the most promising candidate for large‐scale energy storage system owing to the economic efficiency resulting from abundant sodium resources, superior safety, and similar chemical properties to the commercial lithium‐ion battery. Despite the long period of academic research, how to realize sodium‐ion battery commercialization for market applications is still a great challenge. Thus, from the perspective of future practical application, this review will identify the factors that are restricting commercialization, and evaluate the existing active materials and sodium‐ion‐based full‐cell system. The design and development trends that are needed for SIBs to meet the requirements of practical applications in large‐scale energy storage will also be discussed in detail.  相似文献   
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使用亲和捕获PCR法研究丙型肝炎病毒(HCV)和人IgG的相互作用,发现HCV能与IgG及完整的IgGFc片段结合,但不与Fab片段结合。这种结合可以被Fc片段所竞争抑制,而不能被Fab片段所抑制。HCVRNA阴性血浆不能阻断Fc片段与HCV的结合,推测这是一种HCV颗粒与IgGFc片段之间的特异性结合。本研究揭示了HCV与IgG之间的相互作用,探讨了HCV引起免疫复合物疾病的机理及丙型肝炎的慢性化倾向。  相似文献   
26.
国产湖瓜草,球柱草和芙兰草三属果皮微形态特征初探   总被引:4,自引:1,他引:3  
首次对国产莎草科湖瓜草属、球柱草属和芙兰草属植物的果皮微形态特征进行了扫描电镜的比较观察。结果表明,上述三属果皮纹饰有三种类型:即网状纹饰、疣状纹饰和复合纹饰。其微形态特征存在着明显的种间区别,可为种的划分提供重要依据。研究结果为上述三属植物的分类提供新的佐证,亦为系统演化和亲缘关系的研究提供有价值的资料。  相似文献   
27.
焦永真  陈美征 《病毒学报》1990,6(4):312-315
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DNA damage response (DDR) and the centrosome cycle are 2 of the most critical cellular processes affecting the genome stability in animal cells. Yet the cross-talks between DDR and the centrosome are poorly understood. Here we showed that deficiency of the breast cancer 1, early onset gene (BRCA1) induces centrosome amplification in non-stressed cells as previously reported while attenuating DNA damage-induced centrosome amplification (DDICA) in cells experiencing prolonged genotoxic stress. Mechanistically, the function of BRCA1 in promoting DDICA is through binding and recruiting polo-like kinase 1 (PLK1) to the centrosome. In a recent study, we showed that FancJ also suppresses centrosome amplification in non-stressed cells while promoting DDICA in both hydroxyurea and mitomycin C treated cells. FancJ is a key component of the BRCA1 B-complex. Here, we further demonstrated that, in coordination with BRCA1, FancJ promotes DDICA by recruiting both BRCA1 and PLK1 to the centrosome in the DNA damaged cells. Thus, we have uncovered a novel role of BRCA1 and FancJ in the regulation of DDICA. Dysregulation of DDR or centrosome cycle leads to aneuploidy, which is frequently seen in both solid and hematological cancers. BRCA1 and FancJ are known tumor suppressors and have well-recognized functions in DNA damage checkpoint and DNA repair. Together with our recent findings, we demonstrated here that BRCA1 and FancJ also play an important role in centrosome cycle especially in DDICA. DDICA is thought to be an alternative fail-safe mechanism to prevent cells experiencing severe DNA damage from becoming carcinogenic. Therefore, BRCA1 and FancJ are potential liaisons linking early DDR with the DDICA. We propose that together with their functions in DDR, the role of BRCA1 and FancJ in the activation of DDICA is also crucial for their tumor suppression functions in vivo.  相似文献   
30.
目的探讨葡萄糖和肿瘤坏死因子-α对内皮细胞中早期生长反应基因-1表达的影响。方法利用人脐静脉内皮细胞体外培养,予以25mmol/L葡萄糖和/或10ng/ml肿瘤坏死因子-α与内皮细胞共同孵育,运用蛋白免疫印迹方法检测细胞中早期生长反应基因-1蛋白的表达,运用酶联免疫吸附法检测纤溶酶原激活抑制物-1的表达。结果葡萄糖和肿瘤坏死因子-α均可增加早期生长反应基因-1的表达,两种因素共同作用产生协同作用。而且,葡萄糖和肿瘤坏死因子-α也可促进纤溶酶原激活抑制物-1的表达。细胞外调节蛋白激酶1/2的抑制剂(PD98059)可下调肿瘤坏死因子-α所诱导的早期生长反应基因-1、纤溶酶原激活抑制物-1的表达,而对葡萄糖所诱导的早期生长反应基因-1的表达无明显影响。结论肿瘤坏死因子-α可能通过细胞外调节蛋白激酶1/2路径促进早期生长反应基因-1和纤溶酶原激活抑制物-1表达。肿瘤坏死因子-α和葡萄糖可能通过不同的信号通路调节早期生长反应基因-1、纤溶酶原激活抑制物-1表达,在肥胖、糖尿病等代谢紊乱所致的血管并发症的发生中起到重要的作用。  相似文献   
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