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Cited 8 time in webofscience Cited 9 time in scopus
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IL-17 and immunologically induced senescence regulate response to injury in osteoarthritis

Authors
Faust, Heather J.Zhang, HongHan, JinWolf, Matthew T.Jeon, Ok HeeSadtler, KaitlynPena, Alexis N.Chung, LiamMaestas, David R., Jr.Tam, Ada J.Pardoll, Drew M.Campisi, JudithHousseau, FranckZhou, DaohongBingham, Clifton O., IIIElisseeff, Jennifer H.
Issue Date
1-10월-2020
Publisher
AMER SOC CLINICAL INVESTIGATION INC
Keywords
Th17 immune response; Senescence; osteoarthritis
Citation
JOURNAL OF CLINICAL INVESTIGATION, v.130, no.10, pp.5493 - 5507
Indexed
SCIE
SCOPUS
Journal Title
JOURNAL OF CLINICAL INVESTIGATION
Volume
130
Number
10
Start Page
5493
End Page
5507
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/52515
DOI
10.1172/JCI134091
ISSN
0021-9738
Abstract
Senescent cells (SnCs) are implicated in the pathogenesis of age-related diseases including osteoarthritis (OA), in part via expression of a senescence-associated secretory phenotype (SASP) that includes immunologically relevant factors and cytokines. In a model of posttraumatic OA (PTOA), anterior cruciate ligament transection (ACLT) induced a type 17 immune response in the articular compartment and draining inguinal lymph nodes (LNs) that paralleled expression of the senescence marker p16(INK4a) (Cdknla) and p21 (Cdkn1a). Innate lymphoid cells, gamma delta(+) T cells, and CD4(+) T cells contributed to IL-17 expression. Intra-articular injection of IL-17-neutralizing antibody reduced joint degeneration and decreased expression of the senescence marker Cdkn1a. Local and systemic senolysis was required to attenuate tissue damage in aged animals and was associated with decreased IL-17 and increased IL-4 expression in the articular joint and draining LNs. In vitro, we found that Th17 cells induced senescence in fibroblasts and that SnCs skewed naive T cells toward Th17 or Th1, depending on the presence of TGF-beta. The SASP profile of the inflammation-induced SnCs included altered Wnt signaling, tissue remodeling, and cell-cycle pathways not previously implicated in senescence. These findings provide molecular targets and mechanisms for senescence induction and therapeutic strategies to support tissue healing in an aged environment.
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