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| 1 | Three-dimensional interconnected Ni(Fe)OxHy nanosheets on stainless steel mesh as a robust integrated oxygen evolution electrode显示文摘 | Qi Zhang Haixia Zhong Fanlu Meng Di Bao Xinbo Zhang Xiaolin wei | 2018 | Nano Research2018,11,3: | 8 |
| 2 | Highly efficient and selective CO2 electro-reduction with atomic Fe-C-N hybrid coordination on porous carbon nematosphere显示文摘Carbon dioxide reduction(CO2RR)has become a promising way to address the energy and environmental crisis,of which the fundamental development of the optimal electrocatalysts is the crucial part.Herein,we develop Fe and N doping porous carb on n ematosphere(FeNPCN)as an excellent CO2RR electrocatalyst in aqueous electrolyte.Featuring with the high conductivity,pore structure and abundant Fe and N doping,FeNPCN exhibits high catalytic activity with a high faradaic selectivity of CO(94%)and long-term durability.Moreover,the ratio of CO and H2 can be changed by the applied potential for the different syngas related industry.Density functional theory(DFT)calculation results also reveal that the excellent catalytic activity is likely attributed to C and N hybrid coordination with atomic Fe. | Haixia Zhong Fanlu Meng Qi Zhang Kaihua Liu Xinbo Zhang | 2019 | Nano Research2019,12,9: | 8 |
| 3 | Iron-chelated hydrogel-derived bifunctional oxygen electrocatalyst for high-performance rechargeable Zn-air batteries显示文摘 | Fanlu Meng Haixia Zhong Junmin Yan Xinbo Zhang | 2017 | Nano Research2017,10,12: | 4 |
| 4 | Psammoma Bodies in Two Types of Human Ovarian Tumours: A Mineralogical Study显示文摘Mineralization in tumours is a complex dynamic process regulated by cancerization process, organic matter, mineral crystal growth mechanism, external environment, human body environment and other aspects. Differences between mineral crystals may imply different cancerization process and tumorous types. Therefore, the study on mineralization progress in human tumours can help to provide some important information on the occurrence and development of the diseases. | MENG Fanlu WANG Changqiu LI Yan LU Anhuai MEI Fang LIU Jianying | 2013 | 矿物学报2013,33,S1: | 1 |
| 5 | Mechanical stretching boosts expansion and regeneration of intestinal organoids through fueling stem cell self-renewal显示文摘Intestinal organoids,derived from intestinal stem cell self-organization,recapitulate the tissue structures and behav-iors of the intestinal epithelium,which hold great potential for the study of developmental biology,disease modeling,and regenerative medicine.The intestinal epithelium is exposed to dynamic mechanical forces which exert profound effects on gut development.However,the conventional intestinal organoid culture system neglects the key role of mechanical microenvironments but relies solely on biological factors.Here,we show that adding cyclic stretch to intestinal organoid cultures remarkably up-regulates the signature gene expression and proliferation of intestinal stem cells.Furthermore,mechanical stretching stimulates the expansion of SOX9+progenitors by activating the Wnt/β-Catenin signaling.These data demonstrate that the incorporation of mechanical stretch boosts the stemness of intestinal stem cells,thus benefiting organoid growth.Our findings have provided a way to optimize an organoid generation system through understanding cross-talk between biological and mechanical factors,paving the way for the application of mechanical forces in organoid-based models. | Fanlu Meng Congcong Shen Li Yang Chao Ni Jianyong Huang Kaijun Lin Zanxia Cao Shicai Xu Wanling Cui Xiaoxin Wang Bailing Zhou Chunyang Xiong Jihua Wang Bing Zhao | 2022 | Cell Regeneration2022,11,1: | 0 |
| 6 | Defense of COVID-19 by Human Organoids显示文摘Coronavirus disease 2019(COVID-19),caused by severe acute respiratory syndrome coronavirus-2(SARS-CoV-2),has created an immense menace to public health worldwide,exerting huge effects on global economic and political conditions.Understanding the biology and pathogenesis mechanisms of this novel virus,in large parts,relies on optimal physiological models that allow replication and propagation of SARS-CoV-2.Human organoids,derived from stem cells,are three-dimen-sional cell cultures that recapitulate the cellular organization,transcriptional and epigenetic signatures of their counterpart organs.Recent studies have indicated their great values as experimental virology platforms,making human organoid an ideal tool for investigating host-pathogen interactions.Here,we summarize research developments for SARS-CoV-2 infection of various human organoids involved in multiple systems,including lung,liver,brain,intestine,kidney and blood vessel organoids.These studies help us reveal the pathogenesis mechanism of COVID-19,and facilitate the development of effec-tive vaccines and drugs as well as other therapeutic regimes. | Ting Lv Fanlu Meng Meng Yu Haihui Huang Xinhua Lin Bing Zhao | 2021 | Phenomics2021,1,3: | 0 |
| 7 | Lung adenocarcinoma associated with cystic airspaces显示文摘To the Editor,Lung cancer associated with cystic airspaces is a group of uncommon lung malignant lesions that are easy to misdiagnose even though the use of computed tomography(CT)has been more common for lung cancer screening in the clinic.The incidence of this lesion has been reported at 0.5%–3.7%in different studies.1–3 Up to 80%of patients was of pulmonary adenocarcinomas and most patients had a history of smoking. | Xue Yang Linlin Zhang Fanlu Meng Wenjing Song Dong Li Diansheng Zhong | 2023 | Chronic Diseases and Translational Medicine2023,9,1: | 0 |