首站-论文投稿智能助手
典型文献
Changes in progenitors and differentiated epithelial cells of neonatal piglets
文献摘要:
This study aimed to assess the changes of small intestinal morphology,progenitors,differentiated epithelial cells,and potential mechanisms in neonatal piglets.Hematoxylin and eosin staining of samples from 36 piglets suggested that dramatic changes were observed in the jejunum crypts depth and crypt fission index of neonatal piglets(P<0.001).The number of intestinal stem cells(ISC)tended to increase(P<0.10),and a decreased number of enteroendocrine cells appeared in the jejunal crypt on d 7(P<0.05).Furthermore,the mRNA expression of jejunal chromogranin A(ChgA)was down-regulated in d 7 piglets(P<0.05).There was an up-regulation of the adult ISC marker gene of SPARC related modular calcium binding 2(Smoc2),and Wnt/β-catenin target genes on d 7(P<0.05).These results were further verified in vitro enteroid culture experiments.A mass of hollow spheroids was cultured from the fetal intestine of 0-d-old piglets(P<0.001),whereas substantial organoids with budding and branching structures were cultured from the intestine of 7-d-old piglets(P<0.001).The difference was reflected by the organoid budding efficiency,crypt domains per organoid,and the surface area of the organoid.Furthermore,spheroids on d 0 had more Ki67-positive cells and enteroendocrine cells(P<0.05)and showed a decreasing trend in the ISC and goblet cells(P<0.10).Moreover,the mRNA expression of spheroids differed markedly from that of organoids,with low expression of intestinal differentiation gene(Lysozyme;P<0.05),epithelial-specific markers(Villin,E-cadherin;P<0.05),and adult ISC markers(leucine-rich repeat-containing G protein-coupled receptor 5[Lgr5],Smoc2;P<0.001),and up-regulation of fetal marker(connexin 43[Cnx43];P<0.05).The mRNA expression of relevant genes was up-regulated,and involved in Wnt/β-catenin,epidermal growth factor(EGF),Notch,and bone morphogenetic protein(BMP)signaling on d 7 organoids(P<0.05).Spheroids displayed low differentiated phenotype and high proliferation,while organoids exhibited strong differentiation potential.These results indicated that the conversion from the fetal progenitors(spheroids)to adult ISC(normal organoids)might largely be responsible for the fast development of intestinal epithelial cells in neonatal piglets.
文献关键词:
作者姓名:
Lanmei Yin;Jun Li;Yitong Zhang;Qing Yang;Cuiyan Yang;Zhenfeng Yi;Yuebang Yin;Qiye Wang;Jianzhong Li;Nengshui Ding;Zhigang Zhang;Huansheng Yang;Yulong Yin
作者机构:
Hunan International Joint Laboratory of Animal Intestinal Ecology and Health,Laboratory of Animal Nutrition and Human Health,College of Life Sciences,Hunan Normal University,Changsha,Hunan,410081,China;Hunan Provincial Key Laboratory of Animal Nutritional Physiology and Metabolic Process,Scientific Observing and Experimental Station of Animal Nutrition and Feed Science in South-Central,Ministry of Agriculture,Hunan Provincial Engineering Research Center for Healthy Livestock and Poultry Production,Key Laboratory of Agro-ecological Processes in Subtropical Region,Institute of Subtropical Agriculture,Chinese Academy of Sciences,Changsha,Hunan,410125,China;National Center of Technology Innovation for Synthetic Biology,Tianjin Institute of Industrial Biotechnology,Chinese Academy of Sciences,Tianjin,300308,China;State Key Laboratory of Food Safety Technology for Meat Products,Yinxiang Group,Fujian Aonong Biological Science and Technology Group Co.,Ltd.,Key Laboratory of Swine Nutrition and Feed Science of Fujian Province,Aonong Group,Zhangzhou,Fujian,363000,China
引用格式:
[1]Lanmei Yin;Jun Li;Yitong Zhang;Qing Yang;Cuiyan Yang;Zhenfeng Yi;Yuebang Yin;Qiye Wang;Jianzhong Li;Nengshui Ding;Zhigang Zhang;Huansheng Yang;Yulong Yin-.Changes in progenitors and differentiated epithelial cells of neonatal piglets)[J].动物营养(英文),2022(01):265-276
A类:
enteroendocrine,ChgA,Smoc2,enteroid,Cnx43,Spheroids
B类:
Changes,progenitors,differentiated,epithelial,cells,neonatal,piglets,This,study,aimed,assess,changes,small,intestinal,morphology,potential,mechanisms,Hematoxylin,eosin,staining,samples,from,suggested,that,dramatic,were,observed,jejunum,crypts,depth,fission,number,stem,ISC,tended,increase,decreased,appeared,jejunal,Furthermore,expression,chromogranin,was,down,regulated,There,regulation,adult,SPARC,related,modular,calcium,binding,Wnt,catenin,target,genes,These,results,further,verified,vitro,experiments,mass,hollow,spheroids,cultured,fetal,intestine,old,whereas,substantial,organoids,budding,branching,structures,difference,reflected,by,efficiency,domains,surface,area,had,Ki67,positive,showed,decreasing,trend,goblet,Moreover,differed,markedly,differentiation,Lysozyme,specific,markers,Villin,cadherin,leucine,rich,repeat,containing,protein,coupled,receptor,Lgr5,connexin,relevant,involved,epidermal,growth,EGF,Notch,bone,morphogenetic,BMP,signaling,displayed,phenotype,high,proliferation,while,exhibited,strong,indicated,conversion,normal,might,largely,responsible,fast,development
AB值:
0.467755
相似文献
Tauroursodeoxycholic acid (TUDCA) improves intestinal barrier function associated with TGR5-MLCK pathway and the alteration of serum metabolites and gut bacteria in weaned piglets
Min Song;Fenglin Zhang;Yiming Fu;Xin Yi;Shengchun Feng;Zhichang Liu;Dun Deng;Qiang Yang;Miao Yu;Canjun Zhu;Xiaotong Zhu;Lina Wang;Ping Gao;Gang Shu;Xianyong Ma;Qingyan Jiang;Songbo Wang-Guangdong Provincial Key Laboratory of Animal Nutrition Control,ALLT ECH-SCAU Animal Nutrition Control Research Alliance,and National Engineering Research Center for Breeding Swine Industry,College of Animal Science,South China Agricultural University,Guangzhou 510642,P.R.China;Institute of Animal Science,Guangdong Academy of Agricultural Sciences,State Key Laboratory of Livestock and Poultry Breeding,Key Laboratory of Animal Nutrition and Feed Science in South China,Ministry of Agriculture and Rural Affairs,Guangdong Key Laboratory of Animal Breeding and Nutrition,Guangdong Engineering Technology Research Center of Animal Meat Quality and Safety Control and Evaluation,Guangzhou 510640,P.R. China;Maoming Branch,Guangdong Laboratory for Lingnan Modern Agricultural Science and Technology,Maoming 525000,P.R.China
Romidepsin (FK228) improves the survival of allogeneic skin grafts through downregulating the production of donor-specific antibody via suppressing the IRE1 α-XBP1 pathway
Yuliang GUO;Siyu SONG;Xiaoxiao DU;Li TIAN;Man ZHANG;Hongmin ZHOU;Zhonghua Klaus CHEN;Sheng CHANG-Institute of Organ Transplantation,Tongji Hospital,Tongji Medical College,Huazhong University of Science and Technology,Wuhan 430030,China;Key Laboratory of Organ Transplantation,Ministry of Education,NHC Key Laboratory of Organ Transplantation,Key Laboratory of Organ Transplantation,Chinese Academy of Medical Sciences,Wuhan 430030,China;Henan Key Laboratory of Digestive Organ Transplantation,Open and Key Laboratory of Hepatobiliary&Pancreatic Surgery and Digestive Organ Transplantation at Henan Universities,Zhengzhou Key Laboratory of Hepatobiliary&Pancreatic Diseases and Organ Transplantation,Department of Hepatobiliary and Pancreatic Surgery,the First Affiliated Hospital of Zhengzhou University,Zhengzhou 450052,China;Department of Cardiothoracic and Vascular Surgery,Tongji Hospital,Tongji Medical College,Huazhong University of Science and Technology,Wuhan 430030,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。