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稀有气体二聚体完备基准集的构建与势能曲线拟合
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作者 王裕平 魏孝珍 《化学研究与应用》 CAS 北大核心 2023年第4期785-792,共8页
基准集是训练和评价量子化学计算方法的重要工具,稀有气体二聚体作为典型的弱色散体系,目前为止仍没有一个真正意义的完备基准集,而近年来Head Gordon研究组构建的RG10(Rare gas, 10代表共有10个体系)基准集仍沿用了Tang-Toennies经验... 基准集是训练和评价量子化学计算方法的重要工具,稀有气体二聚体作为典型的弱色散体系,目前为止仍没有一个真正意义的完备基准集,而近年来Head Gordon研究组构建的RG10(Rare gas, 10代表共有10个体系)基准集仍沿用了Tang-Toennies经验势。本文首先以最近所发表的NgD×15(Noble gas dimer)基准集为基础,在CCSD(T)/aug-cc-pV5Z-{6s6p6d3f2g1h}-CP计算水平下继续对15种异核稀有气体二聚体的势能曲线进行了计算;并且增加了量子化学方法难以计算的近核区相互作用势的计算,同时扩充了NgD×15中的数据,从而构建了RG21基准集。以此为标准,利用非线性拟合算法对全部稀有气体二聚体势能曲线进行了Murrell—Sorbie势能函数拟合;同时以RG21为标准与RG10以及拟合结果进行了比较;经数据分析,本文的拟合计算精度非常高,进一步证明了Tang-Toennies经验势在近核区的不可靠性。 展开更多
关键词 rg10 NgD×15 异核稀有气体二聚体 RG21 Murrell—Sorbie势能函数
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Inhibition of Rgs10 Expression Prevents Immune Cell Infiltration in Bacteria-induced Inflammatory Lesions and Osteoclast-mediated Bone Destruction
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作者 Sen Yang Liang Hao +8 位作者 Matthew McConnell Xuedong Zhou Min Wang Yan Zhang John D Mountz Michael Reddy Paul D. Eleazer Yi-Ping Li Wei Chen 《Bone Research》 SCIE CAS 2013年第3期267-281,共15页
Regulator of G-protein Signaling 10 (Rgsl0) plays an important function in osteoclast differentiation. However, the role of Rgsl0 in immune cells and inflammatory responses, which activate osteoclasts in inflam- mat... Regulator of G-protein Signaling 10 (Rgsl0) plays an important function in osteoclast differentiation. However, the role of Rgsl0 in immune cells and inflammatory responses, which activate osteoclasts in inflam- matory lesions, such as bacteria-induced periodontal disease lesions, remains largely unknown. In this study, we used an adeno-associated virus (AAV-) mediated RNAi (AAV-shRNA-Rgs10) knockdown approach to study Rgsl0's function in immune cells and osteoclasts in bacteria-induced inflammatory lesions in a mouse model of periodontal disease. We found that AAV-shRNA-Rgs10 mediated Rgs10 knockdown impaired osteoclastogenesis and osteoclast-mediated bone resorption, in vitro and in vivo. Interestingly, local injection of AAV-shRNA-Rgs10 into the periodontal tissues in the bacteria-induced inflammatory lesion greatly decreased the number of dendritic cells, T-cells and osteoclasts, and protected the periodontal tissues from local inflammatory damage and bone destruction. Importantly, AAV-mediated Rgs10 knockdown also reduced local expression of osteoclast markers and pro-inflammatory cytokines. Our results demonstrate that AAV- shRNA-Rgs10 knockdown in periodontal disease tissues can prevent bone resorption and inflammation simultaneously. Our data indicate that Rgsl0 may regulate dendritic cell proliferation and maturation, as well as the subsequent stimulation of T-cell proliferation and maturation, and osteoclast differentiation and acti- vation. Our study suggests that AAV-shRNA-Rgs10 can be useful as a therapeutic treatment of periodontal disease. 展开更多
关键词 Rgs10 immune cell AAV-mediated RNAi knockdown gene therapy periodontal disease gingivalinflammation bone resorption
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