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Paracrine Senescence of Mesenchymal Stromal Cells Involves Inflammatory Cytokines and the NF-κB Pathway
It has been known that senescence-associated secretory phenotype (SASP) triggers senescence of the surrounding normal cells. However, SASP signaling regarding mesenchymal stromal cell aging remains to be fully elucidated. Therefore, the present study aimed to clarify the molecular mechanism of late...
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Published in: | Cells (Basel, Switzerland) Switzerland), 2022-10, Vol.11 (20), p.3324 |
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description | It has been known that senescence-associated secretory phenotype (SASP) triggers senescence of the surrounding normal cells. However, SASP signaling regarding mesenchymal stromal cell aging remains to be fully elucidated. Therefore, the present study aimed to clarify the molecular mechanism of late (passage) MSC-induced paracrine SASP-mediated senescence of early (passage) MSCs during ex vivo expansion. Here, we conducted an extensive characterization of senescence features in bone-marrow (BM)-derived MSCs from healthy human donors. Late MSCs displayed an enlarged senescent-like morphology, induced SASP-related proinflammatory cytokines (IL-1α and IL-8), and reduced clonogenic capacity and osteogenic differentiation when compared to early MSCs. Of note, paracrine effects of SASP-related IL-1α and IL-8 from late MSCs induced cellular senescence of early MSCs via an NF-κB-dependent manner. Moreover, cellular senescence of early MSCs was promoted by the synergistic action of IL-1α and IL-8. However, inhibition of NF-κB by shRNA transfection or using inhibitors in early MSCs blocked early MSCs cellular senescence caused by paracrine SASP of late MSCs. In conclusion, these findings reveal that late MSCs display features of senescence and that, during ex vivo expansion, SASP-related proinflammatory cytokines contribute to activate a cellular senescence program in early MSCs that may ultimately impair their functionality. |
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However, SASP signaling regarding mesenchymal stromal cell aging remains to be fully elucidated. Therefore, the present study aimed to clarify the molecular mechanism of late (passage) MSC-induced paracrine SASP-mediated senescence of early (passage) MSCs during ex vivo expansion. Here, we conducted an extensive characterization of senescence features in bone-marrow (BM)-derived MSCs from healthy human donors. Late MSCs displayed an enlarged senescent-like morphology, induced SASP-related proinflammatory cytokines (IL-1α and IL-8), and reduced clonogenic capacity and osteogenic differentiation when compared to early MSCs. Of note, paracrine effects of SASP-related IL-1α and IL-8 from late MSCs induced cellular senescence of early MSCs via an NF-κB-dependent manner. Moreover, cellular senescence of early MSCs was promoted by the synergistic action of IL-1α and IL-8. However, inhibition of NF-κB by shRNA transfection or using inhibitors in early MSCs blocked early MSCs cellular senescence caused by paracrine SASP of late MSCs. In conclusion, these findings reveal that late MSCs display features of senescence and that, during ex vivo expansion, SASP-related proinflammatory cytokines contribute to activate a cellular senescence program in early MSCs that may ultimately impair their functionality.</description><identifier>ISSN: 2073-4409</identifier><identifier>EISSN: 2073-4409</identifier><identifier>DOI: 10.3390/cells11203324</identifier><language>eng</language><publisher>Basel: MDPI AG</publisher><subject>Aging ; Analysis ; Bone marrow ; Bone surgery ; Bones ; Cell cycle ; Cells ; Cytokines ; Genes ; Genomes ; Growth ; IL-1α ; IL-8 ; Inflammation ; Interleukin 8 ; Mesenchymal stem cells ; mesenchymal stromal cells ; Mesenchyme ; NF-κB ; NF-κB protein ; paracrine ; Paracrine signalling ; Phenotype ; Phenotypes ; Senescence ; Stromal cells ; Transfection</subject><ispartof>Cells (Basel, Switzerland), 2022-10, Vol.11 (20), p.3324</ispartof><rights>COPYRIGHT 2022 MDPI AG</rights><rights>2022 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/). 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However, SASP signaling regarding mesenchymal stromal cell aging remains to be fully elucidated. Therefore, the present study aimed to clarify the molecular mechanism of late (passage) MSC-induced paracrine SASP-mediated senescence of early (passage) MSCs during ex vivo expansion. Here, we conducted an extensive characterization of senescence features in bone-marrow (BM)-derived MSCs from healthy human donors. Late MSCs displayed an enlarged senescent-like morphology, induced SASP-related proinflammatory cytokines (IL-1α and IL-8), and reduced clonogenic capacity and osteogenic differentiation when compared to early MSCs. Of note, paracrine effects of SASP-related IL-1α and IL-8 from late MSCs induced cellular senescence of early MSCs via an NF-κB-dependent manner. Moreover, cellular senescence of early MSCs was promoted by the synergistic action of IL-1α and IL-8. However, inhibition of NF-κB by shRNA transfection or using inhibitors in early MSCs blocked early MSCs cellular senescence caused by paracrine SASP of late MSCs. In conclusion, these findings reveal that late MSCs display features of senescence and that, during ex vivo expansion, SASP-related proinflammatory cytokines contribute to activate a cellular senescence program in early MSCs that may ultimately impair their functionality.</description><subject>Aging</subject><subject>Analysis</subject><subject>Bone marrow</subject><subject>Bone surgery</subject><subject>Bones</subject><subject>Cell cycle</subject><subject>Cells</subject><subject>Cytokines</subject><subject>Genes</subject><subject>Genomes</subject><subject>Growth</subject><subject>IL-1α</subject><subject>IL-8</subject><subject>Inflammation</subject><subject>Interleukin 8</subject><subject>Mesenchymal stem cells</subject><subject>mesenchymal stromal cells</subject><subject>Mesenchyme</subject><subject>NF-κB</subject><subject>NF-κB protein</subject><subject>paracrine</subject><subject>Paracrine signalling</subject><subject>Phenotype</subject><subject>Phenotypes</subject><subject>Senescence</subject><subject>Stromal cells</subject><subject>Transfection</subject><issn>2073-4409</issn><issn>2073-4409</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2022</creationdate><recordtype>article</recordtype><sourceid>PIMPY</sourceid><sourceid>DOA</sourceid><recordid>eNptUs1u1DAQjhBIVKVH7pa4cEnxv-MLUllRWKlApcLZmnjt3SyJXezsVnk1HqLPVIetgEV4DjOa-eabH09VvST4nDGN31jX95kQihmj_El1QrFiNedYP_3Lfl6d5bzF5TVEEixOqs01JLCpCw7duOCydcE6FD365HIxN9MAPboZU5z1Yq6BlmEf-72bDd_DMMAY04QW0xi_F5qMIKzQuHHo82V9__MduoZxcwfTi-qZhz67s0d9Wn27fP918bG--vJhubi4qm1pkNeWqrahmlnrNLRUtp5qYMIKDsqKhiltCQPWCAtYMgutBg9USUm0ZrzETqvlgXcVYWtuUzdAmkyEzvxyxLQ2kMbO9s4I10rBPDSSe44bpbHQYAVTXrRSM1G43h64bnft4FZlN2OC_oj0OBK6jVnHvdESY47nZl4_EqT4Y-fyaIYuzz8FwcVdNlRRLShTihXoq3-g27hLoaxqRjVcKELkH9QaygBd8LHUtTOpuVBccIJ5M6PO_4MqsnJDZ2Nwviv-o4T6kGBTzDk5_3tGgs18XubovNgD0VrCLg</recordid><startdate>20221001</startdate><enddate>20221001</enddate><creator>Chou, Lun-Yin</creator><creator>Ho, Chun-Te</creator><creator>Hung, Shih-Chieh</creator><general>MDPI AG</general><general>MDPI</general><scope>AAYXX</scope><scope>CITATION</scope><scope>8FD</scope><scope>8FE</scope><scope>8FH</scope><scope>ABUWG</scope><scope>AFKRA</scope><scope>AZQEC</scope><scope>BBNVY</scope><scope>BENPR</scope><scope>BHPHI</scope><scope>CCPQU</scope><scope>DWQXO</scope><scope>FR3</scope><scope>GNUQQ</scope><scope>HCIFZ</scope><scope>LK8</scope><scope>M7P</scope><scope>P64</scope><scope>PIMPY</scope><scope>PQEST</scope><scope>PQQKQ</scope><scope>PQUKI</scope><scope>RC3</scope><scope>7X8</scope><scope>5PM</scope><scope>DOA</scope><orcidid>https://orcid.org/0000-0003-1813-4616</orcidid></search><sort><creationdate>20221001</creationdate><title>Paracrine Senescence of Mesenchymal Stromal Cells Involves Inflammatory Cytokines and the NF-κB Pathway</title><author>Chou, Lun-Yin ; Ho, Chun-Te ; Hung, Shih-Chieh</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c4404-c27b8293cce9ab26bf29a35c54a7c58379c13a385ca063cab9afa276619934c13</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2022</creationdate><topic>Aging</topic><topic>Analysis</topic><topic>Bone marrow</topic><topic>Bone surgery</topic><topic>Bones</topic><topic>Cell cycle</topic><topic>Cells</topic><topic>Cytokines</topic><topic>Genes</topic><topic>Genomes</topic><topic>Growth</topic><topic>IL-1α</topic><topic>IL-8</topic><topic>Inflammation</topic><topic>Interleukin 8</topic><topic>Mesenchymal stem cells</topic><topic>mesenchymal stromal cells</topic><topic>Mesenchyme</topic><topic>NF-κB</topic><topic>NF-κB protein</topic><topic>paracrine</topic><topic>Paracrine signalling</topic><topic>Phenotype</topic><topic>Phenotypes</topic><topic>Senescence</topic><topic>Stromal cells</topic><topic>Transfection</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Chou, Lun-Yin</creatorcontrib><creatorcontrib>Ho, Chun-Te</creatorcontrib><creatorcontrib>Hung, Shih-Chieh</creatorcontrib><collection>CrossRef</collection><collection>Technology Research Database</collection><collection>ProQuest SciTech Collection</collection><collection>ProQuest Natural Science Collection</collection><collection>ProQuest Central (Alumni)</collection><collection>ProQuest Central</collection><collection>ProQuest Central Essentials</collection><collection>Biological Science Collection</collection><collection>ProQuest Central</collection><collection>Natural Science Collection</collection><collection>ProQuest One Community College</collection><collection>ProQuest Central Korea</collection><collection>Engineering Research Database</collection><collection>ProQuest Central Student</collection><collection>SciTech Premium Collection</collection><collection>Biological Sciences</collection><collection>Biological Science Database</collection><collection>Biotechnology and BioEngineering Abstracts</collection><collection>Publicly Available Content Database</collection><collection>ProQuest One Academic Eastern Edition (DO NOT USE)</collection><collection>ProQuest One Academic</collection><collection>ProQuest One Academic UKI Edition</collection><collection>Genetics Abstracts</collection><collection>MEDLINE - Academic</collection><collection>PubMed Central (Full Participant titles)</collection><collection>DOAJ Directory of Open Access Journals</collection><jtitle>Cells (Basel, Switzerland)</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Chou, Lun-Yin</au><au>Ho, Chun-Te</au><au>Hung, Shih-Chieh</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Paracrine Senescence of Mesenchymal Stromal Cells Involves Inflammatory Cytokines and the NF-κB Pathway</atitle><jtitle>Cells (Basel, Switzerland)</jtitle><date>2022-10-01</date><risdate>2022</risdate><volume>11</volume><issue>20</issue><spage>3324</spage><pages>3324-</pages><issn>2073-4409</issn><eissn>2073-4409</eissn><abstract>It has been known that senescence-associated secretory phenotype (SASP) triggers senescence of the surrounding normal cells. 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subjects | Aging Analysis Bone marrow Bone surgery Bones Cell cycle Cells Cytokines Genes Genomes Growth IL-1α IL-8 Inflammation Interleukin 8 Mesenchymal stem cells mesenchymal stromal cells Mesenchyme NF-κB NF-κB protein paracrine Paracrine signalling Phenotype Phenotypes Senescence Stromal cells Transfection |
title | Paracrine Senescence of Mesenchymal Stromal Cells Involves Inflammatory Cytokines and the NF-κB Pathway |
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