1000 resultados para P. polygalaeflorus


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<正>粘附分子选择素(selectin)家族成员与其配体间相互作用介导的细胞粘附在炎症级联反应、肿瘤转移和淋巴细胞归巢等病理、生理过程中起重要作用(Bevilacqua and Nelson,1993)。其结构组成从远离细胞表面

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<正>选择素(selectin)与其配体间相互作用介导的细胞粘附在炎症级联反应、肿瘤转移和淋巴细胞归巢等病理、生理过程中起重要作用。其结构组成从远离细胞表面的N-末端到胞内C-末端,依次为:钙型凝集素功能区(Calcium-type lectin domain,Lec),类上皮生长因子功能区(Epidermal Growth Factor-like module,EGF),具有粘附补体蛋白作用的多个重复序列(Consensus Repeats,CRs),跨膜区(Transmembrane,TM)和胞内区

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<正>选择素(Selectin)与配体相互作用在诸如炎症反应、肿瘤转移等生物学过程中具有重要作用。许多研究表明,在炎症反应的初期,白细胞在激活的内皮细胞表面发生的滚动过程是由选择素及其碳水化合物配体(如P-选择素糖蛋白配体1,PSGL-1)之间的快速反应行为所介导的。细胞间受体-配体相互作用是一种受外力调控的随机动力学过程,其作用的快慢、强弱和寿命不仅取决于受体、配体分子的结构和固有的化学动力学性质(如化学反应率、反应亲和性等),而且还受到力学-化学耦合的共同调控。到目前为止,由于受体-

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<正>粘附分子选择素(selectin)家族成员与其配体间相互作用介导的细胞粘附在炎症级联反应、肿瘤转移和淋巴细胞归巢等病理、生理过程中起重要作用(Bevilacqua and Nelson,1993)。其结构组成从远离细胞表面的N-末端到胞内C-末端,依次为:钙型凝集素功能区(Calcium-type lectin domain,Lec),类上皮生长因子功

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The excited states in 22Mg have been investigated by the resonant elastic scattering of 21Na + p.A 4.0 MeV/nucleon 21Na beam was separated by the Center for Nuclear Study (CNS) radioactive ion beam separator (CRIB) and then used to bombard a thick (CH2)n target. The energy spectra of recoiled protons were measured at scattering angles of θc.m. ≈ 172◦, 146◦, and 134◦, respectively. A wide energy-range of excitation function in 22Mg (up to Ex ∼ 8.9 MeV) was obtained simultaneously with a thick-target method, and a state at 7.06 MeV was newly observed. The resonant parameters were deduced from an R-matrix analysis of the center-of-mass (c.m.) differential cross-section data with a SAMMY-M6-BETA code. The astrophysical resonant reaction rate for the 18Ne(α,p)21Na reactionwas recalculated based on the present parameters.Generally speaking,the present rates are much smaller than the previous ones.

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利用同位旋和动量相关的相对论强子输运模型IBUU04,以中心碰撞124Sn+124Sn(132Sn+124Sn), 112Sn+112Sn双反应系统在E/A=50MeV(400MeV)为例,在两种不同的对称能作用下,研究了发射粒子谱中双n/p随时间和动能的演化.计算双n/p的好处是它缩弱了库仑效应与探测低能中子的低效率的影响.计算结果表明,无论是在高密还是低密情况下,双n/p的动能分布都敏感地依赖于对称能,因此双n/p是探测对称能的一个理想探针.

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报道了用ECR离子源的高电荷态离子~(40)Ar~(10+)入射到pSi表面的实验研究,通过实验测量到的Si原子和Si~(2+)离子的200nm-1000nm光谱,研究了谱线产生的机理。实验结果表明:低速高电荷态离子与固体表面相互作用中,可有效地激发原子和离子的特征谱线,分析了这一现象和相互作用过程的发光机理。