Pharmacologically Enhanced Regulatory Hematopoietic Stem Cells Revert Experimental Autoimmune Diabetes and Mitigate Other Autoimmune Disorders

免疫系统 免疫学 离体 造血 点头老鼠 癌症研究 1型糖尿病 下调和上调 自身免疫 干细胞 生物 医学 体内 细胞生物学 糖尿病 内分泌学 基因 生物技术 生物化学
作者
Moufida Ben Nasr,David Robbins,Philippe A. Parone,Vera Usuelli,Robert Tacke,Andy-Joe Seelam,Emily Driver,Thuy Le,Mohsen Sabouri-Ghomi,Lisa Guerrettaz,Daniel Shoemaker,Paolo Fiorina
出处
期刊:Journal of Immunology [American Association of Immunologists]
卷期号:208 (7): 1554-1565 被引量:5
标识
DOI:10.4049/jimmunol.2100949
摘要

Abstract Type 1 diabetes (T1D) is characterized by the loss of immune self-tolerance, resulting in an aberrant immune responses against self-tissue. A few therapeutics have been partially successful in reverting or slowing down T1D progression in patients, and the infusion of autologous hematopoietic stem cells (HSCs) is emerging as an option to be explored. In this study, we proposed to pharmacologically enhance by ex vivo modulation with small molecules the immunoregulatory and trafficking properties of HSCs to provide a safer and more efficacious treatment option for patients with T1D and other autoimmune disorders. A high-throughput targeted RNA sequencing screening strategy was used to identify a combination of small molecules (16,16-dimethyl PGE2 and dexamethasone), which significantly upregulate key genes involved in trafficking (e.g., CXCR4) and immunoregulation (e.g., programmed death ligand 1). The pharmacologically enhanced, ex vivo–modulated HSCs (regulatory HSCs [HSC.Regs]) have strong trafficking properties to sites of inflammation in a mouse model of T1D, reverted autoimmune diabetes in NOD mice, and delayed experimental multiple sclerosis and rheumatoid arthritis in preclinical models. Mechanistically, HSC.Regs reduced lymphocytic infiltration of pancreatic β cells and inhibited the activity of autoreactive T cells. Moreover, when tested in clinically relevant in vitro autoimmune assays, HSC.Regs abrogated the autoimmune response. Ex vivo pharmacological modulation enhances the immunoregulatory and trafficking properties of HSCs, thus generating HSC.Regs, which mitigated autoimmune diabetes and other autoimmune disorders.
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