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pro vyhledávání: '"Jing-Wei Fu"'
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Autor:
Guo-Sheng Li, Gang Chen, Jun Liu, Deng Tang, Jin-Hua Zheng, Jing Luo, Mei-Hua Jin, Hua-Song Lu, Chong-Xi Bao, Jia Tian, Wu-Sheng Deng, Jing-Wei Fu, Yue Feng, Neng-Yong Zeng, Hua-Fu Zhou, Jin-Liang Kong
Publikováno v:
BMC Pulmonary Medicine, Vol 22, Iss 1, Pp 1-17 (2022)
Abstract Background Cyclin-dependent kinase inhibitor 2C (CDKN2C) was identified to participate in the occurrence and development of multiple cancers; however, its roles in small cell lung carcinoma (SCLC) remain unclear. Methods Differential express
Externí odkaz:
https://doaj.org/article/7ebbf4500f2e42ccbbcbecf03bd17e8e
Autor:
Guan-Hu Bao, Tie-Jun Ling, Jing-Jing Chen, Xiao-Ming Ji, Yun-Fei Zhu, Xiaochun Wan, Zhengzhu Zhang, Xin Hu
Publikováno v:
Food chemistry. 170
HPLC analysis of samples from four major fermentation procedures of Jing-Wei Fu brick tea showed that the level of major tea catechins epigallocatechin gallate (EGCG) and epicatechin gallate (ECG) dropped increasingly to about 1/3 in the final produc
Autor:
Shuang Zheng, Ming-Liang Chang, Jing Zhou, Jing-Wei Fu, Qing-Wei Zhang, Shao-Yong Li, Wei Qiao, Jun-Min Liu
Publikováno v:
International Journal of Molecular Sciences, Vol 15, Iss 6, Pp 9844-9858 (2014)
For all microhelices on aromatic rings of inherently chiral calix[4]arene, an expression was derived from one approximation and one hypothesis on the basis of the electron-on-a-helix model of Tinoco and Woody as follows: 1/E = μ (H − K Δα2) , wh
Externí odkaz:
https://doaj.org/article/68b97b15d83b42b888f5eb9ccdce859b
Publikováno v:
Chemosphere. 291(Pt 1)
In this study, a two-step functionalizing strategy by combining co-condensation with grafting procedures was employed to synthesize well-ordered Amino- and Thiol-Bifunctionalized SBA-15 (ATBS) mesoporous silica. Its physicochemical properties, perfor
Autor:
Yanshan Chen, Yungen Liu, Ping Xiang, Dan Sun, Jing–Wei Fu, Xue Liu, Lena Q. Ma, Hua–Yuan Feng, Yue Cao
Publikováno v:
Environmental Pollution. 241:240-246
While phosphate (P) inhibits arsenic (As) uptake by plants, phytate increases As uptake by As-hyperaccumulator Pteris vittata. Here we tried to understand the underling mechanisms by investigating the roles of phytate in soil As desorption, P transpo
Autor:
Qi, Jianzhao1,2 (AUTHOR), Han, Haiyan1 (AUTHOR), Sui, Dan1 (AUTHOR), Tan, Shengnan1 (AUTHOR), Liu, Changli1 (AUTHOR), Wang, Pengchao1 (AUTHOR), Xie, Chunliang3 (AUTHOR), Xia, Xuekui4 (AUTHOR), Gao, Jin-ming2 (AUTHOR) jinminggao@nwsuaf.edu.cn, Liu, Chengwei1 (AUTHOR) liuchw@nefu.edu.cn
Publikováno v:
Microbial Cell Factories. 7/18/2022, Vol. 21 Issue 1, p1-9. 9p.
Publikováno v:
Chemosphere. 198:425-431
It is known that arsenic (As) promotes growth of As-hyperaccumulator Pteris vittata (PV), however, the associated mechanisms are unclear. Here we examined As-induced nutrient uptake in P. vittata and their potential role to enhance plant growth in st
Autor:
Xue Liu, Yanshan Chen, Yue Cao, Ni Tang, Benjamin L. Turner, E.B. da Silva, Jing–Wei Fu, Lena Q. Ma
Publikováno v:
Environmental Pollution. 226:212-218
Phytate is abundant in soils, which is stable and unavailable for plant uptake. However, it occurs in root exudates of As-hyperaccumulator Pteris vittata (PV). To elucidate its effect on As uptake and growth, P. vittata were grown on agar media (63
Autor:
Yong-He Han, Jing-Wei Fu, Hanyi Mei, Yue Cao, Yanshan Chen, Lena Q. Ma, Letuzia M. de Oliveira, Yungen Liu, Bala Rathinasabapathi, Xue Liu
Publikováno v:
Journal of Hazardous Materials. 330:68-75
Phosphorus (P) is one of the most important nutrients for phytoremediation of arsenic (As)-contaminated soils. In this study, we demonstrated that As-hyperaccumulator Pteris vittata was efficient in acquiring P from insoluble phosphate rock (PR). Whe