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dc.creatorValentijn F.A., Knoppert S.N., Marquez-Exposito L., Rodrigues-Diez R.R., Pissas G., Tang J., Tejedor-Santamaria L., Broekhuizen R., Samarakoon R., Eleftheriadis T., Goldschmeding R., Nguyen T.Q., Ruiz-Ortega M., Falke L.L.en
dc.date.accessioned2023-01-31T10:24:41Z
dc.date.available2023-01-31T10:24:41Z
dc.date.issued2022
dc.identifier10.1016/j.kint.2022.06.030
dc.identifier.issn00852538
dc.identifier.urihttp://hdl.handle.net/11615/80347
dc.description.abstractChronic allograft dysfunction with progressive fibrosis of unknown cause remains a major issue after kidney transplantation, characterized by ischemia-reperfusion injury (IRI). One hypothesis to account for this is that spontaneous progressive tubulointerstitial fibrosis following IRI is driven by cellular senescence evolving from a prolonged, unresolved DNA damage response (DDR). Since cellular communication network factor 2 ((CCN2), formerly called connective tissue growth factor), an established mediator of kidney fibrosis, is also involved in senescence-associated pathways, we investigated the relation between CCN2 and cellular senescence following kidney transplantation. Tubular CCN2 overexpression was found to be associated with DDR, loss of kidney function and tubulointerstitial fibrosis in both the early and the late phase in human kidney allograft biopsies. Consistently, CCN2 deficient mice developed reduced senescence and tubulointerstitial fibrosis in the late phase; six weeks after experimental IRI. Moreover, tubular DDR markers and plasma urea were less elevated in CCN2 knockout than in wild-type mice. Finally, CCN2 administration or overexpression in epithelial cells induced upregulation of tubular senescence–associated genes including p21, while silencing of CCN2 alleviated DDR induced by anoxia-reoxygenation injury in cultured proximal tubule epithelial cells. Thus, our observations indicate that inhibition of CCN2 can mitigate IRI-induced acute kidney injury, DNA damage, and the subsequent DDR-senescence-fibrosis sequence. Hence, targeting CCN2 might help to protect the kidney from transplantation-associated post-IRI chronic kidney dysfunction. © 2022 International Society of Nephrologyen
dc.language.isoenen
dc.sourceKidney Internationalen
dc.source.urihttps://www.scopus.com/inward/record.uri?eid=2-s2.0-85138191888&doi=10.1016%2fj.kint.2022.06.030&partnerID=40&md5=5de464d2969d2f57144d50d2701f5f4d
dc.subjectconnective tissue growth factoren
dc.subjectacute kidney failureen
dc.subjectanimalen
dc.subjectC57BL mouseen
dc.subjectDNA damageen
dc.subjectfibrosisen
dc.subjectgeneticsen
dc.subjecthumanen
dc.subjectkidneyen
dc.subjectmetabolismen
dc.subjectmouseen
dc.subjectpathologyen
dc.subjectreperfusion injuryen
dc.subjectAcute Kidney Injuryen
dc.subjectAnimalsen
dc.subjectConnective Tissue Growth Factoren
dc.subjectDNA Damageen
dc.subjectFibrosisen
dc.subjectHumansen
dc.subjectKidneyen
dc.subjectMiceen
dc.subjectMice, Inbred C57BLen
dc.subjectReperfusion Injuryen
dc.subjectElsevier B.V.en
dc.titleCellular communication network 2 (connective tissue growth factor) aggravates acute DNA damage and subsequent DNA damage response-senescence-fibrosis following kidney ischemia reperfusion injuryen
dc.typejournalArticleen


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