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Enhanced hepatic differentiation in the subpopulation of human amniotic stem cells under 3D multicellular microenvironment 被引量:3
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作者 Kinji Furuya Yun-Wen Zheng +11 位作者 Daisuke Sako Kenichi Iwasaki Dong-Xu Zheng Jian-Yun Ge Li-Ping Liu Tomoaki Furuta Kazunori Akimoto Hiroya Yagi Hiromi Hamada Hiroko Isoda Tatsuya Oda Nobuhiro Ohkohchi 《World Journal of Stem Cells》 SCIE 2019年第9期705-721,共17页
BACKGROUND To solve the problem of liver transplantation donor insufficiency,an alternative cell transplantation therapy was investigated.We focused on amniotic epithelial cells(AECs)as a cell source because,unlike in... BACKGROUND To solve the problem of liver transplantation donor insufficiency,an alternative cell transplantation therapy was investigated.We focused on amniotic epithelial cells(AECs)as a cell source because,unlike induced pluripotent stem cells,they are cost-effective and non-tumorigenic.The utilization of AECs in regenerative medicine,however,is in its infancy.A general profile for AECs has not been comprehensively analyzed.Moreover,no hepatic differentiation protocol for AECs has yet been established.To this end,we independently compiled human AEC libraries,purified amniotic stem cells(ASCs),and co-cultured them with mesenchymal stem cells(MSCs)and human umbilical vein endothelial cell(HUVECs)in a 3D system which induces functional hepatic organoids.AIM To characterize AECs and generate functional hepatic organoids from ASCs and other somatic stem cells METHODS AECs,MSCs,and HUVECs were isolated from the placentae and umbilical cords of cesarean section patients.Amnion and primary AEC stemness characteristics and heterogeneity were analyzed by immunocytochemistry,Alkaline phosphatase(AP)staining,and flow cytometry.An adherent AEC subpopulation was selected and evaluated for ASC purification quality by a colony formation assay.AEC transcriptomes were compared with those for other hepatocytes cell sources by bioinformatics.The 2D and 3D culture were compared by relative gene expression using several differentiation protocols.ASCs,MSCs,and HUVECs were combined in a 3D co-culture system to generate hepatic organoids whose structure was compared with a 3D AEC sphere and whose function was elucidated by immunofluorescence imaging,periodic acid Schiff,and an indocyanine green(ICG)test.RESULTS AECs have certain stemness markers such as EPCAM,SSEA4,and E-cadherin.One AEC subpopulation was also either positive for AP staining or expressed the TRA-1-60 and TRA-1-81 stemness markers.Moreover,it could form colonies and its frequency was enhanced ten-fold in the adherent subpopulation after selective primary passage.Bioinformatics analysis of ribose nucleic acid sequencing revealed that the total AEC gene expression was distant from those of pluripotent stem cells and hepatocytes but some gene expression overlapped among these cells.TJP1,associated with epidermal growth factor receptor,and MET,associated with hepatocyte growth factor receptor,were upregulated and may be important for hepatic differentiation.In conventional flat culture,the cells turned unviable and did not readily differentiate into hepatocytes.In 3D culture,however,hepatic gene expression of the AEC sphere was elevated even under a two-step differentiation protocol.Furthermore,the organoids derived from the MSC and HUVEC co-culture showed 3D structure with polarity,hepatic-like glycogen storage,and ICG absorption/elimination.CONCLUSION Human amniotic epithelial cells are heterogeneous and certain subpopulations have high stemness.Under a 3D co-culture system,functional hepatic organoids were generated in a multicellular microenvironment. 展开更多
关键词 3d micropattern Amniotic epithelial CELLS Amniotic STEM CELLS Hepatic differentiation Heterogeneity HUMAN PLACENTAL tissue HUMAN umbilical vein endothelial CELLS Mesenchymal STEM CELLS Multicellular microenvironment Organoid
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材料表面微图案结构成型技术及其研究进展 被引量:4
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作者 裴云亮 姚煜 +2 位作者 邹文俊 彭进 宋旭东 《材料工程》 EI CAS CSCD 北大核心 2024年第4期87-101,共15页
表面微图案结构成型技术作为实现材料表面纹理化并促进材料先进化、功能化的一种手段已经广泛应用到实际生产制造中。根据材料应用领域的差异,表面微图案成型的主要方法包括热压花、化学蚀刻、电火花加工、光刻和3D打印。本文综述了不... 表面微图案结构成型技术作为实现材料表面纹理化并促进材料先进化、功能化的一种手段已经广泛应用到实际生产制造中。根据材料应用领域的差异,表面微图案成型的主要方法包括热压花、化学蚀刻、电火花加工、光刻和3D打印。本文综述了不同表面微图案结构成型技术及制备表面纹理化功能材料的基本原理,并列举其在光伏、电子信息、智能制造、超精密制造等领域的实际应用。总结了不同表面微图案结构成型技术的特点及适用范围,提出了实现材料表面纹理化和功能化所面临的关键问题,为表面微图案结构的微加工技术提供了一定参考。 展开更多
关键词 微图案 热压花 蚀刻 电火花加工 光刻 3d打印
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