34 resultados para 141-863

em Chinese Academy of Sciences Institutional Repositories Grid Portal


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 HIV 感染人体后造成大量CD4 + T 淋巴细胞的凋亡, 从而破坏免疫系统,使机体无法抵抗病毒的入侵,导致免疫 缺陷。目前的药物靶点都针对病毒本身,无法清除体内储存 病毒的感染细胞,而HIV 蛋白酶抑制剂治疗HIV/ AIDS 患 者后可以减少HIV 感染引起的细胞凋亡,帮助机体恢复免 疫功能,并且这种作用与其抑制病毒的作用是相独立的,这 提示了可以通过免疫重建的策略来治疗AIDS。本文综述了 HIV 蛋白酶抑制剂的研究和发展概况,其作用特点以及对细 胞凋亡的影响。明确HIV 蛋白酶抑制剂与细胞凋亡的关 系,可以启发新的思路从细胞着手,通过恢复机体的免疫能 力来对抗病毒,从根本上治疗AIDS。

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用噬菌体展示技术制备了抗对虾白斑综合症病毒(WSSV)的单链抗体A1。该抗体在30℃培养条件下诱导表达20h后,其蛋白表达量可达总菌体蛋白的3.67%。用亲和层析柱和SephadexG-100层析柱可将单链抗体A1纯化为一条单电泳条带,其分子量约为31.5kD。用等电聚焦电泳测定,其等电点为pH5.8。ELISA测定表明冻干的单链抗体A1在室温储藏4年后与WSSV结合仍具有较高的活力。

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于2010-11-23批量导入

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分析了143Dy和141Dy的β缓发质子衰变的数据,对比计算了这两种核的核位能面。从中看到了143Dy的衰变包括有1/2+基态和11/2-同核异能态的两种衰变成分,并且确定了它们的半衰期分别为(6.0±1.5)s和(3.0±0.5)s。同时也测定了141Dy的半衰期为(0.9±0.2)s,并指认了它的自旋宇称为9/2-。

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利用40Ca+106Cd融合蒸发反应产生了近质子滴线核140Tb和141Dy,配合氦喷嘴带传输系统采用“质子-γ”符合方法观测了它们的β缓发质子衰变,其中包括半衰期、质子能谱和衰变到第二代子核不同低位态的分支比.通过统计理论拟合提取了140Tb和141Dy的基态自旋宇称分别为7±和9/2±.另一方面,用Woods-Saxon Strutinsky方法计算了这两种核限制组态的势能面,由此得到140Tb和141Dy的基态自旋宇称分别为7+和9/2-.此外用同一方法还计算了143Dy的核势能面,从中看出143Dy存在有自旋宇称为1/2+的基态和一个激发能为198keV的11/2-的同质异能态.该结果与2003年Eur.Phys.J. A16:347-351中的143Dy衰变实验数据相符.

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通过1 3 0 Te(1 6O ,5nγ) 1 4 1 Nd反应布居了1 4 1 Nd的高自旋态能级 .对反应产生的在束γ射线进行了γ射线单谱和γ -γ符合测量 .建立了激发能达 76 1 4 .5keV的1 4 1 Nd能级纲图 ,新发现了 1 2条γ射线和 1 5个能级 .基于实验测量的γ跃迁各向异性 ,建议了1 4 1 Nd部分能级的自旋值 .用一个h1 1 2 价中子空穴与1 4 2 Nd核芯晕态的耦合可以定性地解释1 4 1 Nd的能级结构

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通过~(130)Te(~(16)O,5nγ)~(141)Nd反应研究了~(141)Nd的高自旋态。建立了激发能达7614.5keV的~(141)Nd能级纲图,新发现了12条γ射线和15个能级。用粒子-振子模型和半经验壳模型分别计算了~(141)Nd的集体和单粒子激发的能级位置。根据计算的能级位置以及实验测量得到的γ跃迁强度和多极性信息,讨论了~(141)Nd激发态的能级结构。

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The proton-rich isotopes Tb-140 and Dy-141 were produced via the fusion evaporation reaction Ca-40+ Cd-106. Their beta-delayed proton decays were studied by p-gamma coincidence in combination with a He-jet tape transport system, and half-lives, proton energy spectra, gamma-transitions following the proton emission, as well as beta-delayed proton branching ratios to the low-lying states in the grand-daughter nuclei were determined. Comparing the experimental data with statistical model calculations, the ground-state spins of Tb-140 and Dy-141 were found to be consistent with 7 and 9/2, respectively. The configuration-constrained nuclear potential energy surfaces (NPES) of Tb-140 and Dy-141 were calculated using the Woods-Saxon-Strutinsky method, which suggest the ground-state spins and parities of Tb-140 and Dy-141 to be 7(+) and 9/2(-), respectively. In addition, the configuration-constrained NPES of Dy-143 were calculated, which predict a 1/2(+) ground state and a 11/2(-) isomer with excitation energy of 198 keV. These findings are consistent with our previous experimental data on Dy-143 reported in Eur. Phys. J. A 16, 347 (2003).

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The material response and failure mechanism of unidirectional metal matrix composite under impulsive shear loading are investigated in this paper. Both experimental and analytical studies were performed. The shear strength of unidirectional C-f/A356.0 composite and A356.0 aluminum alloy at high strain rate were measured with a modified split Hopkinson torsional bar technique. The results indicated that the carbon fibers did not improve the shear strength of aluminum matrix if the fiber orientation aligned with the shear loading axis. The microscopic inspection of the fractured surface showed a multi-scale zigzag feature which implied a complicated shear failure mechanism in the composite. In addition to testing, the micromechanical stress field in the composite was analyzed by the generalized Eshelby equivalent method (GEEM). The influence of cracking in matrix on the micromechanical stress field was investigated as well. The results showed that the stress distribution in the composite is quite nonhomogeneous and very high shear stress concentrations are found in some regions in the matrix. The high shear stress concentration in the matrix induces tensile cracking at 45 degrees to the shear direction. This in turn aggravates the stress concentration at the fiber/matrix interface and finally leads to a catastrophic failure in the composite. From the correlation between the analysis and experimental results, the shear failure mechanism of unidirectional C-f/A356.0 composite can be elucidated qualitatively.

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间充质干细胞具有多向分化功能,在体外培养时仍可保持其增殖和分化的能力,可以作为组织工程的一种较为理想的细胞来源。细胞与胞外环境之间以及细胞与细胞之间的相互作用对细胞增殖和分化具有重要影响。对干细胞的研究大多集中于生化因素的影响,而且一般是在静态的常规细胞培养容器中进行。在本研究中,尝试在骨髓间充质干细胞的培养过程中,施加不同的力学环境,考查不同的力学信号刺激对骨髓间充质干细胞增殖和分化的影响。

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在0.05 mol/L Tris,0.15 mol/L NaCl溶液中,用吸附伏安法研究长春新碱(VCR),其峰电位在-1.68 V(vs. Ag/AgCl),峰电流与1.0*10^{-8}~2.0*10^{-7}mol/L VCR浓度成正比,检测限为7.0*l0^{-9} mol/L,用常规脉冲极谱法、线性扫描和循环伏安法等研究该体系的电化学行为,实验表明,电极还原过程为具有吸附特征的不可逆过程。VCR的吸附符合Frumkin吸附等温式。也研究了VCR与微管蛋白的相互作用。实验表明,VCR与微管蛋白形成一电活性的结合物,这一结合物具有吸附性,且还原过程也为不可逆过程。

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利用Kossel衍射技术和反射光谱对由总体积分数为0.02的二元聚苯乙烯胶体体系(94 nm+141 nm)形成的胶体晶体的性质进行了研究,实验结果显示胶体晶体的形成时间,平均粒子间距,晶体结构都与二元胶体体系中两种粒子的数密度比相关,当94 nm聚苯乙烯粒子相对于141 nm聚苯乙烯粒子的数密度比趋向1∶1时,胶体晶体的形成时间延长,当94 nm聚苯乙烯粒子相对于141 nm聚苯乙烯粒子的数密度比由1∶0向0∶1变化时,胶体晶体的平均粒子间距变大,另外实验中发现在两种粒子的数密度比为5∶1时,胶体晶体出现了超晶格结构.