4 Works
miR-199-3p Suppresses Cellular Migration and Viability, Promotes Progesterone Production in Goose Ovarian Follicles Before Selection Through Regulating ITGB8 and Other ECM-related Genes
Qin Li, Keshan Zhang, Xianzhi Zhao, Yushi Wang, Jing Li, Youhui Xie, Hang Zhong & Qigui Wang
1. The extracellular matrix (ECM) constitutes the basal lamina and the area between follicular cells. Remodelling the ECM is believed to be a key event in follicular development, especially during selection, and plays an important role in cell migration, survival, and steroidogenesis. miR-199-3p is differentially expressed in the goose granulosa layer during follicular selection and is reported to play a primary role in inhibiting cell migration and invasion. Nevertheless, the effect of miR-199-3p on ovarian...
Selective aqueous-phase hydrogenation of furfural to cyclopentanol over Ni-based CNT catalysts
Haihong Xia, Jing Li, Jun Zhao, Minghao Zhou & Jianchun Jiang
Cyclopentanol (CPL) was an eco-friendly solvent as well as important platform chemical which could be generated from biomass-derived furfural (FFA). In this paper, A series of Ni, Cu, Mo, Co bimetallic catalysts with different metals loadings supported on Carbon nanotubes (CNT) were synthesized by an impregnation method for aqueous-phase hydrogenation of FFA to obtain CPL. Various effects of reaction parameters such as, reaction solvent, reaction temperature, reaction time, and different loading amount of Ni over...
Study on inhibition effect and mechanism of NH4H2PO4 on explosion of titanium powder
Wenjiao Dai, Xiangbao Meng, Shunxiang Yao, Jiqing Liu, Zhifeng Wang, Yang Liu, Panpan Yang & Fang Li
In order to effectively inhibit the explosion of titanium powder, this study used the Hartmann tube experimental system and the 20 L explosion tank experimental system to carry out flame propagation and explosion overpressure experiments, respectively, and the effect of NH4H2PO4 on the explosion suppression of titanium powder was studied. The results show that when the addition of NH4H2PO4 powder is 50%, the flame propagation velocity and explosion pressure can be reduced to the minimum,...
Study on inhibition effect and mechanism of NH4H2PO4 on explosion of titanium powder
Wenjiao Dai, Xiangbao Meng, Shunxiang Yao, Jiqing Liu, Zhifeng Wang, Yang Liu, Panpan Yang & Fang Li
In order to effectively inhibit the explosion of titanium powder, this study used the Hartmann tube experimental system and the 20 L explosion tank experimental system to carry out flame propagation and explosion overpressure experiments, respectively, and the effect of NH4H2PO4 on the explosion suppression of titanium powder was studied. The results show that when the addition of NH4H2PO4 powder is 50%, the flame propagation velocity and explosion pressure can be reduced to the minimum,...
Affiliations
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Chinese Academy of Tropical Agricultural Sciences4
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Sun Yat-sen University4
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Zhejiang University4
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Shanghai University of Traditional Chinese Medicine3
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Guilin Medical University2
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Affiliated Hospital of Southwest Medical University2
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State Administration of Traditional Chinese Medicine of the People's Republic of China2
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Henan University2
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Hebei Normal University2
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North West Agriculture and Forestry University2