首站-论文投稿智能助手
典型文献
3D printing of osteocytic Dll4 integrated with PCL for cell fate determination towards osteoblasts in vitro
文献摘要:
Since 3D printed hard materials could match the shape of bone,cell survival and fate determination towards osteoblasts in such materials have become a popular research target.In this study,a scaffold of hard material for 3D fabrication was designed to regulate developmental signal(Notch)transduction guiding osteoblast differentiation.We established a polycaprolactone(PCL)and cell-integrated 3D printing system(PCI3D)to reciprocally print the beams of PCL and cell-laden hydrogel for a module.This PCI3D module holds good cell viability of over 87%,whereas cells show about sixfold proliferation in a 7-day culture.The osteocytic MLO-Y4 was engineered to overexpress Notch ligand Dll4,making up 25%after mixing with 75%stromal cells in the PCI3D module.Osteocytic Dll4,unlike other delta-like family members such as Dll1 or Dll3,promotes osteoblast differentiation and the mineralization of primary mouse and a cell line of bone marrow stromal cells when cultured in a PCI3D module for up to 28 days.Mechanistically,osteocytic Dll4 could not promote osteogenic differentiation of the primary bone marrow stromal cells(BMSCs)after conditional deletion of the Notch transcription factor RBPjκ by Cre recombinase.These data indicate that osteocytic Dll4 activates RBPjK-dependent canonical Notch signaling in BMSCs for their oriented differentiation towards osteoblasts.Additionally,osteocytic Dll4 holds a great potential for angiogenesis in human umbilical vein endothelial cells within modules.Our study reveals that osteocytic Dll4 could be the osteogenic niche determining cell fate towards osteoblasts.This will open a new avenue to overcome the current limitation of poor cell viability and low bioactivity of traditional orthopedic implants.
文献关键词:
作者姓名:
Pengtao Wang;Xiaofang Wang;Bo Wang;Xian Li;Zhengsong Xie;Jie Chen;Tasuku Honjo;Xiaolin Tu
作者机构:
Laboratory of Skeletal Development and Regeneration,Institute of Life Sciences,Chongqing Medical University,Chongqing 400016,China;Medical Data Science Academy,Chongqing Medical University,Chongqing 400016,China;Department of Immunology and Genomic Medicine,Graduate School of Medicine,Kyoto University,Yoshida Konoe-cho,Sakyo-ku,Kyoto 606-8501,Japan
引用格式:
[1]Pengtao Wang;Xiaofang Wang;Bo Wang;Xian Li;Zhengsong Xie;Jie Chen;Tasuku Honjo;Xiaolin Tu-.3D printing of osteocytic Dll4 integrated with PCL for cell fate determination towards osteoblasts in vitro)[J].生物设计与制造(英文),2022(03):497-511
A类:
osteocytic,PCI3D,Osteocytic,Dll1,Dll3,RBPj,RBPjK
B类:
printing,Dll4,integrated,PCL,fate,determination,towards,osteoblasts,vitro,Since,printed,hard,materials,could,match,shape,bone,survival,such,have,become,popular,research,target,In,this,study,scaffold,fabrication,was,designed,regulate,developmental,Notch,transduction,guiding,differentiation,We,established,polycaprolactone,system,reciprocally,beams,laden,hydrogel,This,holds,good,viability,whereas,cells,show,about,sixfold,proliferation,MLO,Y4,engineered,overexpress,ligand,making,up,after,mixing,stromal,unlike,other,delta,family,members,promotes,mineralization,primary,mouse,line,marrow,when,cultured,days,Mechanistically,not,osteogenic,BMSCs,conditional,deletion,transcription,by,Cre,recombinase,These,data,indicate,that,activates,dependent,canonical,signaling,their,oriented,Additionally,great,potential,angiogenesis,human,umbilical,vein,endothelial,within,modules,Our,reveals,niche,determining,will,open,new,avenue,overcome,current,limitation,poor,low,bioactivity,traditional,orthopedic,implants
AB值:
0.504066
相似文献
Spinal cord injury reprograms muscle fibroadipogenic progenitors to form heterotopic bones within muscles
Hsu-Wen Tseng;Dorothée Girard;Kylie A.Alexander;Susan M.Millard;Frédéric Torossian;Adrienne Anginot;Whitney Fleming;Jules Gueguen;Marie-Emmanuelle Goriot;Denis Clay;Beulah Jose;Bianca Nowlan;Allison R.Pettit;Marjorie Salga;Fra?ois Genêt;Marie-Carline Le Bousse-Kerdilès;Sébastien Banzet;Jean-Pierre Lévesque-Mater Research Institute—The University of Queensland,Woolloongabba,QLD,Australia;Institut de Recherche Biomédicale des Armées(IRBA),INSERM UMRS-MD,1197 Clamart,France;INSERM UMRS-MD 1197,Université de Paris-Saclay,H?pital Paul Brousse,Villejuif ,France;INSERM UMS-44,Université de Paris-Saclay,H?pital Paul Brousse,Villejuif,France;UPOH(Unité Péri Opératoire du Handicap,Perioperative Disability Unit),Physical and Rehabilitation Medicine department,Raymond-Poincaré Hospital,Assistance Publique-H?pitaux de Paris(AP-HP),Garches,France;Université de Versailles Saint Quentin en Yvelines,UFR Simone Veil-Santé,END:ICAP INSERM U1179,Montigny le Bretonneux,France
The mechanosensitive IncRNA Neat1 promotes osteoblast function through paraspeckle-dependent Smurf1 mRNA retention
Caizhi Liu;Xingcheng Gao;Yuheng Li;Weijia Sun;Youjia Xu;Yingjun Tan;Ruikai Du;Guohui Zhong;Dingsheng Zhao;Zizhong Liu;Xiaoyan Jin;Yinlong Zhao;Yinbo Wang;Xinxin Yuan;Junjie Pan;Guodong Yuan;Youyou Li;Wenjuan Xing;Guanghan Kan;Yanqing Wang;Qi Li;Xuan Han;Jianwei Li;Shukuan Ling;Yingxian Li-State Key Laboratory of Space Medicine Fundamentals and Application,China Astronaut Research and Training Center,Beijing,China;The Key Laboratory of Aerospace Medicine,Ministry of Education,The Fourth Military Medical University,Xi'an,Shaanxi,China;The Second Affiliated Hospital of Soochow University,Suzhou,Jiangsu,China;College of Life Sciences,Hebei Normal University,Shijiazhuang,Hebei,China;Medical College of Soochow University,Suzhou,Jiangsu,China;Medical School of Southeast University,Nanjing,Jiangsu,China
mTORC1 induces plasma membrane depolarization and promotes preosteoblast senescence by regulating the sodium channel Scn1a
Ajuan Chen;Jian Jin;Shasha Cheng;Zezheng Liu;Cheng Yang;Qingjing Chen;Wenquan Liang;Kai Li;Dawei Kang;Zhicong Ouyang;Chenfeng Yao;Xiaochun Bai;Qingchu Li;Dadi Jin;Bin Huang-Academy of Orthopedics,Guangdong Province,Guangdong Provincial Key Laboratory of Bone and Joint Degeneration Diseases,Department of Spine Surgery,The Third Affiliated Hospital of Southern Medical University,Guangzhou,China;Department of Spine Surgery,Nanfang Hospital,Southern Medical University,Guangzhou,China;Department of Clinical Laboratory,The Third Affiliated Hospital of Southern Medical University,Guangzhou,China;Department of Cell Biology,School of Basic Medical Science,Southern Medical University,Guangzhou,China
Abivertinib inhibits megakaryocyte differentiation and platelet biogenesis
Jiansong Huang;Xin Huang;Yang Li;Xia Li;Jinghan Wang;Fenglin Li;Xiao Yan;Huanping Wang;Yungui Wang;Xiangjie Lin;Jifang Tu;Daqiang He;Wenle Ye;Min Yang;Jie Jin-Department of Hematology,Key Laboratory of Hematologic Malignancies,Diagnosis and Treatment,The First Affiliated Hospital,Zhejiang University School of Medicine,Hangzhou 310003,China;Institute of Hematology,Zhejiang University School of Medicine,Hangzhou 310003,China;Department of Obstetrics,The First Affiliated Hospital,Zhejiang University School of Medicine,Hangzhou 310003,China;Department of Hematology,Qingdao Municipal Hospital,Qingdao 266000,China;Department of Laboratory Medicine,Affiliated Hangzhou First People's Hospital,Zhejiang University School of Medicine,Hangzhou 310003,China;Cancer Center Zhejiang University,Hangzhou 310058,China
机标中图分类号,由域田数据科技根据网络公开资料自动分析生成,仅供学习研究参考。