Modulation of CD39 and Exogenous APT102 Correct Immune Dysfunction in Experimental Colitis and Crohn’s Disease

炎症性肠病 结肠炎 免疫学 免疫系统 克罗恩病 过继性细胞移植 医学 溃疡性结肠炎 体内 药理学 生物 T细胞 内科学 疾病 生物技术
作者
Rene’ J. Robles,Samiran Mukherjee,Marta Vuerich,Anyan Xie,Rasika Harshe,Peter J. Cowan,Eva Csizmadia,Yan Wu,Alan C. Moss,Ridong Chen,Simon C. Robson,Maria Serena Longhi
出处
期刊:Journal of Crohn's and Colitis [Oxford University Press]
卷期号:14 (6): 818-830 被引量:20
标识
DOI:10.1093/ecco-jcc/jjz182
摘要

Abstract Background and Aims CD39/ENTPD1 scavenges pro-inflammatory nucleotides, to ultimately generate immunosuppressive adenosine, which has a central role in immune homeostasis. Global deletion of Cd39 increases susceptibility to experimental colitis while single nucleotide polymorphisms within the human CD39 promoter, and aberrant patterns of expression during experimental hypoxia, predispose to Crohn’s disease. We aimed to define the impact of transgenic human CD39 [hTG] overexpression in experimental colitis and to model therapeutic effects using the recombinant apyrase APT102 in vivo. We also determined the in vitro effects of APT102 on phenotypic and functional properties of regulatory T-lymphocytes derived from patients with Crohn’s disease. Methods Colitis was induced by administration of dextran sulfate sodium in wild-type [WT] or hTG mice, and, in another model, by adoptive transfer of CD45RBhigh cells with or without WT or hTG regulatory T cells [Treg]. In additional experiments, mice were treated with APT102. The effects of APT102 on phenotype and function of Treg and type-1 regulatory T [Tr1] cells were also evaluated, after purification from peripheral blood and lamina propria of Crohn’s disease patients [n = 38]. Results Overexpression of human CD39 attenuated experimental colitis and protected from the deleterious effects of systemic hypoxia, pharmacologically induced by deferoxamine. Administration of APT102 in vivo enhanced the beneficial effects of endogenous Cd39 boosted by the administration of the aryl hydrocarbon receptor [AhR] ligand unconjugated bilirubin [UCB]. Importantly, supplemental APT102 restored responsiveness to AhR stimulation by UCB in Treg and Tr1 cells, obtained from Crohn’s disease patients. Conclusions hCD39 overexpression ameliorated experimental colitis and prevented hypoxia-related damage in vivo. Exogenous administration of APT102 boosted AhR-mediated regulatory effects in vivo while enhancing Treg functions in Crohn’s disease in vitro.
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