Table_1_Potential correlation of allograft infiltrating group 2 innate lymphoid cells with acute rejection after liver transplantation.docx

التفاصيل البيبلوغرافية
العنوان: Table_1_Potential correlation of allograft infiltrating group 2 innate lymphoid cells with acute rejection after liver transplantation.docx
المؤلفون: Jie Sun, Guang-Peng Zhou, Shi-Peng Li, Xiao-Jie Chen, Jin-Ming Zhang, Yi-Zhou Jiang, Bin Cui, Hai-Ming Zhang, Li-Ying Sun, Zhi-Jun Zhu
سنة النشر: 2022
المجموعة: Frontiers: Figshare
مصطلحات موضوعية: Immunology, Applied Immunology (incl. Antibody Engineering, Xenotransplantation and T-cell Therapies), Autoimmunity, Cellular Immunology, Humoural Immunology and Immunochemistry, Immunogenetics (incl. Genetic Immunology), Innate Immunity, Transplantation Immunology, Tumour Immunology, Immunology not elsewhere classified, Genetic Immunology, Animal Immunology, Veterinary Immunology, ILC2, Treg cell, immune tolerance, hepatic immune microenvironment, spatial distribution
الوصف: Accumulating evidence indicates the critical roles of group 2 innate lymphoid cells (ILC2s) in immunoregulation. However, the role of ILC2s in acute rejection after liver transplantation (LT) remains elusive. In this study, we analyzed the frequency, counts, and signature cytokines of ILC2s in liver transplant recipients by flow cytometric analysis and multiplex immunofluorescence assay. We also assessed the spatial distribution and correlation between hepatic ILC2s and Treg cells. The changes of ILC2s were dynamically monitored in the mouse LT model. We found that the frequencies of circulating ILC2s were comparable in liver transplant recipients with either rejection or non-rejection compared with the control group. The hepatic ILC2s counts were significantly increased in the rejection group than in the non-rejection and control groups, and a similar trend was observed for Treg cells. In the mouse LT model, allograft infiltrating ILC2s dramatically increased within 14 days post-transplant. The frequency of ILC2s in bone marrow significantly increased at 7 days post-transplant and rapidly decreased at 14 days after LT. Similarly, there was a significant increase in the frequency of splenic ILC2s within two weeks post-transplant. Multiplex immunofluorescence assay showed a close correlation between hepatic ILC2s and Treg cells by analyzing their spatial distribution and distance. In conclusion, the number of allograft infiltrating ILC2s was closely related to rejection after LT. Allograft infiltrating ILC2s may play inhibitory roles in posttransplant immune homeostasis, favoring resolution of liver allograft rejection by interacting with Treg cells or promoting the migration of Tregs cells into the liver allograft.
نوع الوثيقة: dataset
اللغة: unknown
Relation: https://figshare.com/articles/dataset/Table_1_Potential_correlation_of_allograft_infiltrating_group_2_innate_lymphoid_cells_with_acute_rejection_after_liver_transplantation_docx/20391441
DOI: 10.3389/fimmu.2022.953240.s001
الاتاحة: https://doi.org/10.3389/fimmu.2022.953240.s001
https://figshare.com/articles/dataset/Table_1_Potential_correlation_of_allograft_infiltrating_group_2_innate_lymphoid_cells_with_acute_rejection_after_liver_transplantation_docx/20391441
Rights: CC BY 4.0
رقم الانضمام: edsbas.5F6F3083
قاعدة البيانات: BASE
ResultId 1
Header edsbas
BASE
edsbas.5F6F3083
860
3

unknown
859.59912109375
PLink https://search.ebscohost.com/login.aspx?direct=true&site=eds-live&scope=site&db=edsbas&AN=edsbas.5F6F3083&custid=s6537998&authtype=sso
FullText Array ( [Availability] => 0 )
Array ( [0] => Array ( [Url] => https://doi.org/10.3389/fimmu.2022.953240.s001# [Name] => EDS - BASE [Category] => fullText [Text] => View record in BASE [MouseOverText] => View record in BASE ) )
Items Array ( [Name] => Title [Label] => Title [Group] => Ti [Data] => Table_1_Potential correlation of allograft infiltrating group 2 innate lymphoid cells with acute rejection after liver transplantation.docx )
Array ( [Name] => Author [Label] => Authors [Group] => Au [Data] => <searchLink fieldCode="AR" term="%22Jie+Sun%22">Jie Sun</searchLink><br /><searchLink fieldCode="AR" term="%22Guang-Peng+Zhou%22">Guang-Peng Zhou</searchLink><br /><searchLink fieldCode="AR" term="%22Shi-Peng+Li%22">Shi-Peng Li</searchLink><br /><searchLink fieldCode="AR" term="%22Xiao-Jie+Chen%22">Xiao-Jie Chen</searchLink><br /><searchLink fieldCode="AR" term="%22Jin-Ming+Zhang%22">Jin-Ming Zhang</searchLink><br /><searchLink fieldCode="AR" term="%22Yi-Zhou+Jiang%22">Yi-Zhou Jiang</searchLink><br /><searchLink fieldCode="AR" term="%22Bin+Cui%22">Bin Cui</searchLink><br /><searchLink fieldCode="AR" term="%22Hai-Ming+Zhang%22">Hai-Ming Zhang</searchLink><br /><searchLink fieldCode="AR" term="%22Li-Ying+Sun%22">Li-Ying Sun</searchLink><br /><searchLink fieldCode="AR" term="%22Zhi-Jun+Zhu%22">Zhi-Jun Zhu</searchLink> )
Array ( [Name] => DatePubCY [Label] => Publication Year [Group] => Date [Data] => 2022 )
Array ( [Name] => Subset [Label] => Collection [Group] => HoldingsInfo [Data] => Frontiers: Figshare )
Array ( [Name] => Subject [Label] => Subject Terms [Group] => Su [Data] => <searchLink fieldCode="DE" term="%22Immunology%22">Immunology</searchLink><br /><searchLink fieldCode="DE" term="%22Applied+Immunology+%28incl%2E+Antibody+Engineering%22">Applied Immunology (incl. Antibody Engineering</searchLink><br /><searchLink fieldCode="DE" term="%22Xenotransplantation+and+T-cell+Therapies%29%22">Xenotransplantation and T-cell Therapies)</searchLink><br /><searchLink fieldCode="DE" term="%22Autoimmunity%22">Autoimmunity</searchLink><br /><searchLink fieldCode="DE" term="%22Cellular+Immunology%22">Cellular Immunology</searchLink><br /><searchLink fieldCode="DE" term="%22Humoural+Immunology+and+Immunochemistry%22">Humoural Immunology and Immunochemistry</searchLink><br /><searchLink fieldCode="DE" term="%22Immunogenetics+%28incl%2E+Genetic+Immunology%29%22">Immunogenetics (incl. Genetic Immunology)</searchLink><br /><searchLink fieldCode="DE" term="%22Innate+Immunity%22">Innate Immunity</searchLink><br /><searchLink fieldCode="DE" term="%22Transplantation+Immunology%22">Transplantation Immunology</searchLink><br /><searchLink fieldCode="DE" term="%22Tumour+Immunology%22">Tumour Immunology</searchLink><br /><searchLink fieldCode="DE" term="%22Immunology+not+elsewhere+classified%22">Immunology not elsewhere classified</searchLink><br /><searchLink fieldCode="DE" term="%22Genetic+Immunology%22">Genetic Immunology</searchLink><br /><searchLink fieldCode="DE" term="%22Animal+Immunology%22">Animal Immunology</searchLink><br /><searchLink fieldCode="DE" term="%22Veterinary+Immunology%22">Veterinary Immunology</searchLink><br /><searchLink fieldCode="DE" term="%22ILC2%22">ILC2</searchLink><br /><searchLink fieldCode="DE" term="%22Treg+cell%22">Treg cell</searchLink><br /><searchLink fieldCode="DE" term="%22immune+tolerance%22">immune tolerance</searchLink><br /><searchLink fieldCode="DE" term="%22hepatic+immune+microenvironment%22">hepatic immune microenvironment</searchLink><br /><searchLink fieldCode="DE" term="%22spatial+distribution%22">spatial distribution</searchLink> )
Array ( [Name] => Abstract [Label] => Description [Group] => Ab [Data] => Accumulating evidence indicates the critical roles of group 2 innate lymphoid cells (ILC2s) in immunoregulation. However, the role of ILC2s in acute rejection after liver transplantation (LT) remains elusive. In this study, we analyzed the frequency, counts, and signature cytokines of ILC2s in liver transplant recipients by flow cytometric analysis and multiplex immunofluorescence assay. We also assessed the spatial distribution and correlation between hepatic ILC2s and Treg cells. The changes of ILC2s were dynamically monitored in the mouse LT model. We found that the frequencies of circulating ILC2s were comparable in liver transplant recipients with either rejection or non-rejection compared with the control group. The hepatic ILC2s counts were significantly increased in the rejection group than in the non-rejection and control groups, and a similar trend was observed for Treg cells. In the mouse LT model, allograft infiltrating ILC2s dramatically increased within 14 days post-transplant. The frequency of ILC2s in bone marrow significantly increased at 7 days post-transplant and rapidly decreased at 14 days after LT. Similarly, there was a significant increase in the frequency of splenic ILC2s within two weeks post-transplant. Multiplex immunofluorescence assay showed a close correlation between hepatic ILC2s and Treg cells by analyzing their spatial distribution and distance. In conclusion, the number of allograft infiltrating ILC2s was closely related to rejection after LT. Allograft infiltrating ILC2s may play inhibitory roles in posttransplant immune homeostasis, favoring resolution of liver allograft rejection by interacting with Treg cells or promoting the migration of Tregs cells into the liver allograft. )
Array ( [Name] => TypeDocument [Label] => Document Type [Group] => TypDoc [Data] => dataset )
Array ( [Name] => Language [Label] => Language [Group] => Lang [Data] => unknown )
Array ( [Name] => NoteTitleSource [Label] => Relation [Group] => SrcInfo [Data] => https://figshare.com/articles/dataset/Table_1_Potential_correlation_of_allograft_infiltrating_group_2_innate_lymphoid_cells_with_acute_rejection_after_liver_transplantation_docx/20391441 )
Array ( [Name] => DOI [Label] => DOI [Group] => ID [Data] => 10.3389/fimmu.2022.953240.s001 )
Array ( [Name] => URL [Label] => Availability [Group] => URL [Data] => https://doi.org/10.3389/fimmu.2022.953240.s001<br />https://figshare.com/articles/dataset/Table_1_Potential_correlation_of_allograft_infiltrating_group_2_innate_lymphoid_cells_with_acute_rejection_after_liver_transplantation_docx/20391441 )
Array ( [Name] => Copyright [Label] => Rights [Group] => Cpyrght [Data] => CC BY 4.0 )
Array ( [Name] => AN [Label] => Accession Number [Group] => ID [Data] => edsbas.5F6F3083 )
RecordInfo Array ( [BibEntity] => Array ( [Identifiers] => Array ( [0] => Array ( [Type] => doi [Value] => 10.3389/fimmu.2022.953240.s001 ) ) [Languages] => Array ( [0] => Array ( [Text] => unknown ) ) [Subjects] => Array ( [0] => Array ( [SubjectFull] => Immunology [Type] => general ) [1] => Array ( [SubjectFull] => Applied Immunology (incl. Antibody Engineering [Type] => general ) [2] => Array ( [SubjectFull] => Xenotransplantation and T-cell Therapies) [Type] => general ) [3] => Array ( [SubjectFull] => Autoimmunity [Type] => general ) [4] => Array ( [SubjectFull] => Cellular Immunology [Type] => general ) [5] => Array ( [SubjectFull] => Humoural Immunology and Immunochemistry [Type] => general ) [6] => Array ( [SubjectFull] => Immunogenetics (incl. Genetic Immunology) [Type] => general ) [7] => Array ( [SubjectFull] => Innate Immunity [Type] => general ) [8] => Array ( [SubjectFull] => Transplantation Immunology [Type] => general ) [9] => Array ( [SubjectFull] => Tumour Immunology [Type] => general ) [10] => Array ( [SubjectFull] => Immunology not elsewhere classified [Type] => general ) [11] => Array ( [SubjectFull] => Genetic Immunology [Type] => general ) [12] => Array ( [SubjectFull] => Animal Immunology [Type] => general ) [13] => Array ( [SubjectFull] => Veterinary Immunology [Type] => general ) [14] => Array ( [SubjectFull] => ILC2 [Type] => general ) [15] => Array ( [SubjectFull] => Treg cell [Type] => general ) [16] => Array ( [SubjectFull] => immune tolerance [Type] => general ) [17] => Array ( [SubjectFull] => hepatic immune microenvironment [Type] => general ) [18] => Array ( [SubjectFull] => spatial distribution [Type] => general ) ) [Titles] => Array ( [0] => Array ( [TitleFull] => Table_1_Potential correlation of allograft infiltrating group 2 innate lymphoid cells with acute rejection after liver transplantation.docx [Type] => main ) ) ) [BibRelationships] => Array ( [HasContributorRelationships] => Array ( [0] => Array ( [PersonEntity] => Array ( [Name] => Array ( [NameFull] => Jie Sun ) ) ) [1] => Array ( [PersonEntity] => Array ( [Name] => Array ( [NameFull] => Guang-Peng Zhou ) ) ) [2] => Array ( [PersonEntity] => Array ( [Name] => Array ( [NameFull] => Shi-Peng Li ) ) ) [3] => Array ( [PersonEntity] => Array ( [Name] => Array ( [NameFull] => Xiao-Jie Chen ) ) ) [4] => Array ( [PersonEntity] => Array ( [Name] => Array ( [NameFull] => Jin-Ming Zhang ) ) ) [5] => Array ( [PersonEntity] => Array ( [Name] => Array ( [NameFull] => Yi-Zhou Jiang ) ) ) [6] => Array ( [PersonEntity] => Array ( [Name] => Array ( [NameFull] => Bin Cui ) ) ) [7] => Array ( [PersonEntity] => Array ( [Name] => Array ( [NameFull] => Hai-Ming Zhang ) ) ) [8] => Array ( [PersonEntity] => Array ( [Name] => Array ( [NameFull] => Li-Ying Sun ) ) ) [9] => Array ( [PersonEntity] => Array ( [Name] => Array ( [NameFull] => Zhi-Jun Zhu ) ) ) ) [IsPartOfRelationships] => Array ( [0] => Array ( [BibEntity] => Array ( [Dates] => Array ( [0] => Array ( [D] => 01 [M] => 01 [Type] => published [Y] => 2022 ) ) [Identifiers] => Array ( [0] => Array ( [Type] => issn-locals [Value] => edsbas ) [1] => Array ( [Type] => issn-locals [Value] => edsbas.oa ) ) ) ) ) ) )
IllustrationInfo