Adipose group 1 innate lymphoid cells promote adipose tissue fibrosis and diabetes in obesity
NATURE COMMUNICATIONS
Authors: Wang, Hongdong; Shen, Lei; Sun, Xitai; Liu, Fangcen; Feng, Wenhuan; Jiang, Chunping; Chu, Xuehui; Ye, Xiao; Jiang, Can; Wang, Yan; Zhang, Pengzi; Zang, Mengwei; Zhu, Dalong; Bi, Yan
Abstract
Pathogenic factors driving obesity to type 2 diabetes (T2D) are not fully understood. Group 1 innate lymphoid cells (ILC1s) are effectors of innate immunity and enriched in inflamed tissues. Here we show that the number of adipose ILC1s increases in obese T2D patients and correlates with glycemic parameters and with the number of ILC1s in the blood; circulating ILC1 numbers decrease as a result of metabolic improvements after bariatric surgery. In vitro co-culture experiments show that human adipose ILC1s promote adipose fibrogenesis and CD11c(+) macrophage activation. Reconstruction of the adipose ILC1 population in Prkdc(-/-)IL2rg(-/-) mice by adoptive transfer drives adipose fibrogenesis through activation of TGF beta 1 signaling; however, transfer of Ifng(-/-)ILC1s has no effect on adipose fibrogenesis. Furthermore, inhibiting adipose accumulation of ILC1s using IL-12 neutralizing antibodies attenuates adipose tissue fibrosis and improves glycemic tolerance. Our data present insights into the mechanisms of local immune disturbances in obesity-related T2D.
Both mature KIR+ and immature KIR- NK cells control pediatric acute B-cell precursor leukemia in NOD.Cg-Prkdc(scid) IL2rg(tmWjl)/Sz mice
BLOOD
Authors: Kuebler, Ayline; Woiterski, Jeanette; Witte, Kai-Erik; Buehring, Hans-Joerg; Hartwig, Udo F.; Ebinger, Martin; Oevermann, Lena; Mezger, Markus; Herr, Wolfgang; Lang, Peter; Handgretinger, Rupert; Muenz, Christian; Andre, Maya C.
Abstract
Therapeutic natural killer (NK)-cell-mediated alloreactivity toward acute myeloid leukemia has largely been attributed to mismatches between killer immunoglobulin-like receptors (KIRs) on NK cells and their ligands, HLA class I molecules, on target cells. While adult acute B-cell precursor leukemia (BCP-ALL) appears to be resistant to NK-cell-mediated lysis, recent data indicate that pediatric BCP-ALL might yet be a target of NK cells. In this study, we demonstrate in a donor-patient-specific NOD.Cg-Prkdc(scid) IL2rg(tmWjl)/Sz (NSG) xenotransplantation model that NK cells mediate considerable alloreactivity toward pediatric BCP-ALL in vivo. Notably, both adoptively transferred mature KIR+ NK cells and immature KIR- NK cells arising early posttransplantation in humanized NSG mice exerted substantial antileukemic activity. Low-dose and long-term treatment of humanized NSG mice with the DNA-demethylating agent 5-aza-cytidine distinctly enhanced the antitumor response, interestingly without inducing common inhibitory KIR expression but rather by promoting the differentiation of various NK-cell precursor subsets. Collectively, these data indicate that the future design of innovative therapy protocols should consider further exploitation of NK-cell-mediated immune responses for poor prognosis pediatric BCP-ALL patients.