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| 1 | Bimetallic Pd-Ni core-shell nanoparticles catalysts for the Suzuki reaction显示文摘 | Ji Xiang Peng Li Hanbao Chong Li Feng Fangyu Fu Zhuang Wang Shilin Zhang Manzhou Zhu | 2014 | Nano Research2014,7,9: | 11 |
| 2 | Monodispersed Au Pd nanoalloy: composition control synthesis and catalytic properties in the oxidative dehydrogenative coupling of aniline显示文摘A series of Au Pd@C nanoalloy catalysts with tunable compositions were successfully prepared by a co-reduction method. The use of borane-tert-butylamine complex as reductant and oleylamine as both solvent and reductant was very effective for the preparation of the monodispersed nanoalloy. We evaluated the catalytic activity of these Au Pd@C nanoalloys for oxidative dehydrogenative coupling of aniline, which showed better catalytic activity than equal amounts of sole Au@C or Pd@C catalyst. The Au1Pd3@C catalyst exhibited the best performance, indicating that the conversion and selectivity were improved along with the increase of Pd composition. However, if the Pd composition was too high in the Au Pd alloy, Au1Pd7@C achieved only 81% conversion in this reaction. | Fangyu Fu Sen He Sha Yang Chen Wang Xun Zhang Peng Li Hongting Sheng Manzhou Zhu | 2015 | Science China Chemistry2015,58,10: | 0 |
| 3 | Ultrasmall Pd nanoclusters: facile synthesis and versatile catalytic application显示文摘A simple and efficient method for the synthesis of ultrasmall Pd nanoclusters(NCs) has been developed. The as-obtained Pd NCs displayed uniform size with an average diameter of 1.8±0.2 nm. The ultrasmall Pd NCs and carbon nanotubes(CNTs)-supported Pd NCs also showed outstanding catalytic activity for nitrobenzene reduction and Suzuki coupling reactions. Notably, the reactions were conducted under mild conditions with high yield and selectivity. | Ji Xiang Hanbao Chong Jia Tang Li Feng Bin Zhou Fangyu Fu Xin Wang Peng Li Manzhou Zhu | 2015 | Science China Chemistry2015,58,3: | 0 |
| 4 | Bone marrow mesenchymal stem cell-induced autophagy ameliorates TNBS-induced experimental colitis by downregulating the NLRP3 inflammasome显示文摘This study aimed to elucidate the potential mechanisms through which bone marrow-derived mesenchymal stem cells(BM-MSCs)may be effective in alleviating experimental colitis induced by treatment with 2,4,6-trinitrobenzene-sulfonate acid(TNBS),specifically through autophagy modulation.Methods:BM-MSCs were collected from BALB/c mice for subsequent experiments.The study employed cell counting kits(CCK-8)to investigate the impact of the MSC-conditioned medium(M medium)on the proliferation of RAW264.7 macrophages.The GFP-mRFP-LC3 adenovirus was transfected into RAW264.7 to detect autophagic flux.The gene expression of cytokines was assessed through quantitative reverse transcription polymerase chain reaction(qRT-PCR).Western blot analysis was employed to determine the presence of a binding interaction between NOD-like receptor protein 3(NLRP3)and autophagy.Furthermore,a colitis mouse model was established by TNBS induction.Clinical disease activity score was assessed regularly,and histological and morphometric analyses were performed on colonic tissues.Inflammatory serum cytokines were identified using an enzyme-linked immunosorbent assay.Results:BM-MSCs significantly promoted the proliferation of RAW264.7.In vitro lipopolysaccharide(LPS)-stimulated RAW264.7 cells,treated with BM-MSCs,triggered autophagy and inhibited cytokine mRNA expression.Additionally,in LPS-induced RAW264.7,BM-MSCs enhanced the Beclin1 protein expression and the microtubule-associated protein 1 light chain 3(LC3)-II to LC3-I ratio while suppressing the protein levels of NLRP3 and apoptosis-associated speck-like protein(ASC).Nevertheless,3-methyladenine(3-MA),an inhibitor of autophagy,prevented the impact of BM-MSCs by reducing the levels of NLRP3 and ASC proteins,suggesting that autophagy triggered the inhibition of the NLRP3 inflammasome.In comparison to the mice in the TNBS group,the mice in the TNBS+MSC group displayed a more acute form of colitis,and the IL1βand IL18 cytokines in their serum were lowered as well.In the meantime,3-MA raised IL1βand IL18 cytokine levels and worsened TNBS-induced experimental colitis.Conclusions:BM-MSCs can suppress inflammation in TNBS-induced experimental mice by inhibiting the NLRP3 inflammasome,thereby enhancing autophagy. | JINJIN FU XIAOYUE FENG JUAN WEI XIANG GENG YU GONG FENGDONG LI SHAOHUA ZHUANG JIN HUANG FANGYU WANG | 2023 | BIOCELL2023,47,12: | 0 |
| 5 | Structure-guided discovery of potent and oral soluble epoxide hydrolase inhibitors for the treatment of neuropathic pain显示文摘Soluble epoxide hydrolase(sEH) is related to arachidonic acid cascade and is over-expressed in a variety of diseases, making sEH an attractive target for the treatment of pain as well as inflammatory-related diseases. A new series of memantyl urea derivatives as potent sEH inhibitors was obtained using our previous reported compound 4 as lead compound. A preferential modification of piperidinyl to 3-carbamoyl piperidinyl was identified for this series via structure-based rational drug design. Compound A20 exhibited moderate percentage plasma protein binding(88.6%) and better metabolic stability in vitro. After oral administration, the bioavailability of A20 was 28.6%. Acute toxicity test showed that A20 was well tolerated and there was no adverse event encountered at dose of 6.0 g/kg. Inhibitor A20 also displayed robust analgesic effect in vivo and dose-dependently attenuated neuropathic pain in rat model induced by spared nerve injury, which was better than gabapentin and sEH inhibitor(±)-EC-5026. In one word, the oral administration of A20 significantly alleviated pain and improved the health status of the rats, demonstrating that A20 was a promising candidate to be further evaluated for the treatment of neuropathic pain. | Fangyu Du Ruolin Cao Lu Chen Jianwen Sun Yajie Shi Yang Fu Bruce D.Hammock Zhonghui Zheng Zhongbo Liu Guoliang Chen | 2022 | Acta Pharmaceutica Sinica B2022,12,3: | 0 |
| 6 | Polyoxometalate-organic cage with{Ni_(4)SiW_(9)}node for photocatalytic hydrogen evolution显示文摘The design and syntheses of metal-organic cages(MOCs)based on polyoxometalates(POMs)building blocks have attracted increasing attention due to their intriguing molecular architectures and physicochemical properties.In this work,we have successfully synthesized and systematically characterized a tetrahedral polyoxometalate-based organic cage(POC),K_(3)Na_(17)H_(12)[(C_(4)H_(6)O_(6))_(6)[Ni_(4)(OH)_(3)(A-α-SiW_(9)O_(34))]_(4)]·96H_(2)O(Ni_(16)L_(6)(SiW_(9))_(4)),using tritopic Ni_(4)-substituted Keggin cluster(Ni_(4)SiW_(9))as nodes and flexible L-(+)-tartaric acid ligands as linkers.The resulting POC tetrahedron has been firstly investigated as efficient catalyst for visible-light-driven hydrogen production,achieving a turnover number of 15,500 after 96-h photocatalysis.Such high catalytic performance of Ni_(16)L_(6)(SiW_(9))_(4)POC catalyst could be attributed to its unique cage structure,thereby offering more efficient catalytic component accessibility.In addition,spectroscopic analyses illustrated the photocatalytic mechanism and the structural stability of the TBA-Ni_(16)L_(6)(SiW_(9))_(4)catalyst during the photocatalytic process. | Jing Li Yeqin Feng Fangyu Fu Xing Xin Guoyu Yang Hongjin Lv | 2024 | Chinese Chemical Letters2024,35,3: | 0 |