维普中文期刊产品整合服务
6篇 您的检索式:作者名="Yanyun Pang"
    题名 作者 年代 出处 被引量
1Doping bioactive elements into a collagen scaffold based on synchronous self-assembly/mineralization for bone tissue engineering显示文摘Pure collagen is biocompatible but lacks inherent osteoinductive,osteoimmunomodulatory and antibacterial activities.To obtain collagen with these characteristics,we developed a novel methodology of doping bioactive elements into collagen through the synchronous self-assembly/mineralization(SSM)of collagen.In the SSM model,amorphous mineral nanoparticles(AMN)(amorphous SrCO3,amorphous Ag3PO4,etc.)stabilized by the polyampholyte,carboxymethyl chitosan(CMC),and collagen molecules were the primary components under acidic conditions.As the pH gradually increased,intrafibrillar mineralization occurred via the self-adaptive interaction between the AMNs and the collagen microfibrils,which were self-assembling;the AMNs wrapped around the microfibrils became situated in the gap zones of collagen and finally transformed into crystals.Srdoped collagen scaffolds(Sr-CS)promoted in vitro cell proliferation and osteogenic differentiation of rat bone marrow mesenchymal stromal cells(rBMSCs)and synergistically improved osteogenesis of rBMSCs by altering the macrophage response.Ag-doped collagen scaffolds(Ag-CS)exhibited in vitro antibacterial effects on S.aureus,as well as cell/tissue compatibility.Moreover,Sr-CS implanted into the calvarial defect of a rat resulted in improved bone regeneration.Therefore,the SSM model is a de novo synthetic strategy for doping bioactive elements into collagen,and can be used to fabricate multifunctional collagen scaffolds to meet the clinical challenges of encouraging osteogenesis,boosting the immune response and fighting severe infection in bone defects.Huanhuan Liu Mingli Lin Xue Liu Ye Zhang Yuyu Luo Yanyun Pang Haitao Chen Dongwang Zhu Xue Zhong Shiqing Ma Yanhong Zhao Qiang Yang Xu Zhang 2020Bioactive Materials2020,5,4:6
2Copy number variants of ABCF1, IL17REL, and FCGR3A are associated with the risk of gout显示文摘Dong, Zheng Li, Yuan Zhou, Jingru Jiang, Shuai Wang, Yi Chen, Yulin Zhao, Dongbao Yang, Chengde Qian, Qiaoxia Ma, Yanyun He, Hongjun Ji, Hengdong Yang, Yajun Wang, Xiaofeng Xu, Xia Pang, Yafei Zou, Hejian Jin, Li Zhang, Feng Wang, Jiucun 2017Protein & Cell2017,8,6:3
32-22 Elastic Scattering Studies of Light Proton-rich显示文摘The elastic scattering is an important probe to study the properties of a nucleus. An accurate measurement ofthe elastic scattering differential cross section is very important to determine the optical potential parameters andthe so-called one quarter angle (q1=4). Also, the optical potential parameters of stable nuclei and unstable nucleiare found to be different. 8B, the binding energy of the last proton is only 0.137 MeV, is a well-known protonhalonucleus even there are still some arguments. Many investigations have been done for 8B by measuring thetotal reaction cross sections, breakup cross section and inelastic scattering differential cross section. However, theexperimental data of elastic scattering of 8B and other light proton-rich nuclei on heavy target are few. Therefore, aseries of experiments have been carried out for such nuclei at the Radioactive Ion Beam Line in Lanzhou (RIBLL).Wang Jiansong Yang Yanyun Wang Qi Pang Danyang Ma Junbing Huang Meirong Ma Peng Jin Shilun Han Jianlong Bai Zhen Ma Weihu Zhou Yuanjie Chen Jie Jin Lei Chen Jiangbo Hu Qiang R. Wada S. Mukherjee 2014IMP & HIRFL Annual Report2014,,1:0
4Experimental Study of the Elastic Scattering and Breakup Reactions of Proton Drip-line Nucleus^(8)B on^(208)Pb at energies around Four Times of Coulomb Barrier显示文摘First measurement of the angular distribution of breakup reaction for^(8)B on a^(208)Pb target at an energy around four times of Coulomb barrier was carried out at the National Laboratory of Heavy Ion Research of Institute of Modern Physics.Wang Kang Yang Yanyun Duan Fangfang Pang Danyang Wang Jiansong Gao Zhihao Ma Peng Xu Shiwei Liu Xingquan Ma Junbing Bai Zhen Hu Qiang Jin Shuya Sun Zhiyu 2019IMP & HIRFL Annual Report2019,,1:0
5Experimental Study of the Elastic Scattering of^(10)Be on^(208)Pb at the Energy around Three Times of the Coulomb Barrier显示文摘Elastic scattering is the simplest nuclear process and has been widely used to investigate the structure of the interacting nuclei[1,2].Duan Fangfang Yang Yanyun Pang Danyang Hu Bitao Wang Jiansong Wang Kang Yang Guo Valdir Guimaraes Ma Peng Xu Shiwei Liu Xingquan Ma Junbing Bai Zhen Hu Qiang Shu Jinya Sun Xinxin Yao Jiasheng Qi Hangkai Sun Zhiyu 2019IMP & HIRFL Annual Report2019,,1:0
6A biomimetic piezoelectric scaffold with sustained Mg^(2+)release promotes neurogenic and angiogenic differentiation for enhanced bone regeneration显示文摘Natural bone is a composite tissue made of organic and inorganic components,showing piezoelectricity.Whitlockite(WH),which is a natural magnesium-containing calcium phosphate,has attracted great attention in bone formation recently due to its unique piezoelectric property after sintering treatment and sustained release of magnesium ion(Mg^(2+)).Herein,a composite scaffold(denoted as PWH scaffold)composed of piezoelectric WH(PWH)and poly(ε-caprolactone)(PCL)was 3D printed to meet the physiological demands for the regeneration of neuro-vascularized bone tissue,namely,providing endogenous electric field at the defect site.The sustained release of Mg^(2+)from the PWH scaffold,displaying multiple biological activities,and thus exhibits a strong synergistic effect with the piezoelectricity on inhibiting osteoclast activation,promoting the neurogenic,angiogenic,and osteogenic differentiation of bone marrow mesenchymal stromal cells(BMSCs)in vitro.In a rat calvarial defect model,this PWH scaffold is remarkably conducive to efficient neo-bone formation with rich neurogenic and angiogenic expressions.Overall,this study presents the first example of biomimetic piezoelectric scaffold with sustained Mg^(2+)release for promoting the regeneration of neuro-vascularized bone tissue in vivo,which offers new insights for regenerative medicine.Liangyu Wang Yanyun Pang Yujing Tang Xinyu Wang Daixing Zhang Xu Zhang Yingjie Yu Xiaoping Yang Qing Cai 2023Bioactive Materials2023,,7:0
返回顶部 每页显示:
共1页 首页 上一页 第1页 下一页 末页 /1 跳转

网站首页 | 关于我们 | 联系我们 | 产品服务 | 客服中心 | 广告服务 | 版权声明 | 网站联盟 | 友情链接 | 售卡网点

版权所有© 渝B2-20050021-1 渝公网安备 50019002500403号 违法和不良信息举报中心

互联网出版许可证 新出网证(渝)字10号 全国400电话 - 免长途话费