Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5945492 | Atherosclerosis | 2015 | 11 Pages |
Abstract
Regulatory T-Cells (Tregs) play a protective role against the development of atherosclerosis. Moreover, thymic stromal lymphopoietin (TSLP)/thymic stromal lymphopoietin receptor (TSLPR) signaling in myeloid dendritic cells (DCs) promote Treg differentiation. Here, we examined the potential role of TSLP/TSLPR on Treg homeostasis in atherosclerosis. The frequencies of both latency-associated peptide (LAP)+ and Foxp3+ Tregs were reduced in the thymus and spleen of ApoEâ/â mice compared with C57BL/6 mice, and this effect was associated with decreased thymic output. The tolerogenic function of DCs obtained from ApoEâ/â mice was compromised compared with those from C57BL/6 mice. The expression of TSLP and TSLPR was also inhibited in ApoEâ/â mice. In addition, we found that ox-LDL attenuated TSLP expression in cultured thymic epithelial cells (TECs) through the activation of retinoid X receptor alpha (RXRA) and IL-1β and decreased LAP and PD-L1 expression in oxLDL-activated DCs while both were up-regulated in TSLP-activated DCs. We also observed that the TSLP-DCs mediated differentiation of Tregs was abrogated through LAP neutralization. Furthermore, TSLP injection rescued Treg defects in ApoEâ/â mice. These findings suggest that Treg defects in ApoEâ/â mice might partially be attributed to the disruption of TSLP-TSLPR-LAP signaling in epithelial cells (ECs) and DCs.
Keywords
TSLPTregsRetinoid X receptor alphaTECsLAPDCsThymic stromal lymphopoietin (TSLP)ACSPD-L1FOXP3rxraOx-LDLTRECregulatory T-cellsAtherosclerosisApoeapolipoprotein Ecoronary artery diseaseforkhead box P3T-cell receptor excision circleDendritic cellthymus epithelial cellsDendritic cellsAcute coronary syndromeCADThymic stromal lymphopoietinoxidized low density lipoproteinLow-density lipoprotein (LDL)Programmed death ligand-1latency-associated peptide
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Authors
Kunwu Yu, Qian Dong, Xiaobo Mao, Kai Meng, Xiaoqi Zhao, Qingwei Ji, Bangwei Wu, Yucheng Zhong, Zhengfeng Zhu, Yuzhou Liu, Wei Zhang, Hasahya Tony, Huairui Shi, Qiutang Zeng,