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2篇 您的检索式:作者名="Minyue Yin"
    题名 作者 年代 出处 被引量
1Intestinal Barrier Function in the Pathogenesis of Nonalcoholic Fatty Liver Disease显示文摘Nonalcoholic fatty liver disease(NAFLD)is the most common chronic liver disease worldwide.The mechanisms involved in NAFLD onset are complicated and multifactorial.Recent literature has indicated that altered intestinal barrier function is related to the occurrence and progression of liver disease.The intestinal barrier is important for absorbing nutrients and electrolytes and for defending against toxins and antigens in the enteric environment.Major mechanisms by which the intestinal barrier influences the development of NAFLD involve the altered epithelial layer,decreased intracellular junction integrity,and increased intestinal barrier permeability.Increased intestinal permeability leads to luminal dysbiosis and allows the translocation of pathogenic bacteria and metabolites into the liver,inducing inflammation,immune response,and hepatocyte injury in NAFLD.Although research has been directed to NAFLD in recent decades,the pathophysiological changes in NAFLD initiation and progression are still not completely understood,and the therapeutic targets remain limited.A deeper understanding on the correlation between NAFLD pathogenesis and intestinal barrier regulation must be attained.Therefore,in this review,the components of the intestinal barrier and their respective functions and disruptions during the progression of NAFLD are discussed.Lu Liu Minyue Yin Jingwen Gao Chenyan Yu Jiaxi Lin Airong Wu Jinzhou Zhu Chunfang Xu Xiaolin Liu 2023Journal of Clinical and Translational Hepatology2023,11,2:1
2Advancing the pressure sensing performance of conductive CNT/PDMS composite film by constructing a hierarchical-structured surface显示文摘Flexible pressure sensors have attracted wide attention due to their applications to electronic skin,health monitoring,and human-machine interaction.However,the tradeoff between their high sensitivity and wide response range remains a challenge.Inspired by human skin,we select commercial silicon carbide sandpaper as a template to fabricate carbon nanotube(CNT)/polydimethylsiloxane(PDMS)composite film with a hierarchical structured surface(h-CNT/PDMS)through solution blending and blade coating and then assemble the h-CNT/PDMS composite film with interdigitated electrodes and polyurethane(PU)scotch tape to obtain an h-CNT/PDMS-based flexible pressure sensor.Based on in-situ optical images and finite element analysis,the significant compressive contact effect between the hierarchical structured surface of h-CNT/PDMS and the interdigitated electrode leads to enhanced pressure sensitivity and a wider response range(0.1661 kPa^(-1),0.4574 kPa^(-1)and 0.0989 kPa^(-1)in the pressure range of 0–18 kPa,18–133 kPa and 133–300 kPa)compared with planar CNT/PDMS composite film(0.0066 kPa^(-1)in the pressure range of 0–240 kPa).The prepared pressure sensor displays rapid response/recovery time,excellent stability,durability,and stable response to different loading modes(bending and torsion).In addition,our pressure sensor can be utilized to accurately monitor and discriminate various stimuli ranging from human motions to pressure magnitude and spatial distribution.This study supplies important guidance for the fabrication of flexible pressure sensors with superior sensing performance in next-generation wearable electronic devices.Ye Zhao Taoyu Shen Minyue Zhang Rui Yin Yanjun Zheng Hu Liu Hongling Sun Chuntai Liu Changyu Shen 2023Nano Materials Science2023,5,4:1
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