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Mannogalactoglucan from mushrooms protects pancreatic islets via restoring UPR and promotes insulin secretion in TIDM mice
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作者 Ting Liu Si Chen +7 位作者 Yunhe Qu Lujuan Zheng Xiaoxuan Yang Shuhan Men yuanning wang Hanrui Ma Yifa Zhou Yuying Fan 《Food Science and Human Wellness》 SCIE CSCD 2024年第3期1390-1401,共12页
Type 1 diabetes mellitus(T1DM) lacks insulin secretion due to autoimmune deficiency of pancreaticβ-cells.Protecting pancreatic islets and enhancing insulin secretion has been therapeutic approaches.Mannogalactoglucan... Type 1 diabetes mellitus(T1DM) lacks insulin secretion due to autoimmune deficiency of pancreaticβ-cells.Protecting pancreatic islets and enhancing insulin secretion has been therapeutic approaches.Mannogalactoglucan is the main type of polysaccharide from natural mushroom,which has potential medicinal prospects.Nevertheless,the antidiabetic property of mannogalactoglucan in T1DM has not been fully elucidated.In this study,we obtained the neutral fraction of alkali-soluble Armillaria mellea polysaccharide(AAMP-N) with the structure of mannogalactoglucan from the fruiting body of A.mellea and investigated the potential therapeutic value of AAMP-N in T1DM.We demonstrated that AAMP-N lowered blood glucose and improved diabetes symptoms in T1DM mice.AAMP-N activated unfolded protein response(UPR) signaling pathway to maintain ER protein folding homeostasis and promote insulin secretion in vivo.Besides that,AAMP-N promoted insulin synthesis via upregulating the expression of transcription factors,increased Ca^(2+) signals to stimulate intracellular insulin secretory vesicle transport via activating calcium/calmodulin-dependent kinase Ⅱ(CamkⅡ) and cAMP/PKA signals,and enhanced insulin secretory vesicle fusion with the plasma membrane via vesicle-associated membrane protein 2(VAMP2).Collectively,these studies demonstrated that the therapeutic potential of AAMP-N on pancreatic islets function,indicating that mannogalactoglucan could be natural nutraceutical used for the treatment of T1DM. 展开更多
关键词 Mannogalactoglucan MUSHROOM Pancreatic islets Insulin secretion Insulin synthesis Unfolded protein response(UPR) Type 1 diabetes mellitus(T1DM)
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基于DNA的自组装等离子共振纳米结构研究进展 被引量:2
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作者 贾若琨 王园宁 +2 位作者 尚颖旭 蒋乔 丁宝全 《科学通报》 EI CAS CSCD 北大核心 2018年第35期3772-3782,共11页
等离子共振产生的电磁波的近场效应会使金属表面附近产生各种各样的奇特现象. DNA自组装纳米结构能够利用核酸序列的特异性识别能力,对有机分子和无机纳米颗粒进行纳米尺度的精确排布.这种自下而上的组装方法为构建等离子共振纳米结构... 等离子共振产生的电磁波的近场效应会使金属表面附近产生各种各样的奇特现象. DNA自组装纳米结构能够利用核酸序列的特异性识别能力,对有机分子和无机纳米颗粒进行纳米尺度的精确排布.这种自下而上的组装方法为构建等离子共振纳米结构提供了新思路,进而推动了纳米光子学的发展.本综述讨论了多种以DNA纳米结构引导的新型等离子共振纳米结构的设计和应用,并对DNA自组装等离子共振纳米结构的发展方向和应用前景进行了展望. 展开更多
关键词 DNA自组装 等离子共振 DNA纳米结构
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