Immunomodulation Followed by Antigen-Specific T<sub>reg</sub> Infusion Controls Islet Autoimmunity.
basic_science · Level V
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- Record sourced from PubMed, PMID 31712320.
- Also identified by DOI 10.2337/db19-0061 and PMC identifier 6971488.
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Abstract
Optimal immune-based therapies for type 1 diabetes (T1D) should restore self-tolerance without inducing chronic immunosuppression. CD4<sup>+</sup>Foxp3<sup>+</sup> regulatory T cells (T<sub>regs</sub>) are a key cell population capable of facilitating durable immune tolerance. However, clinical trials with expanded T<sub>regs</sub> in T1D and solid-organ transplant recipients are limited by poor T<sub>reg</sub> engraftment without host manipulation. We showed that T<sub>reg</sub> engraftment and therapeutic benefit in nonautoimmune models required ablative host conditioning. Here, we evaluated T<sub>reg</sub> engraftment and therapeutic efficacy in the nonobese diabetic (NOD) mouse model of autoimmune diabetes using nonablative, combinatorial regimens involving the anti-CD3 (αCD3), cyclophosphamide (CyP), and IAC (IL-2/JES6-1) antibody complex. We demonstrate that αCD3 alone induced substantial T-cell depletion, impacting both conventional T cells (T<sub>conv</sub>) and T<sub>regs</sub>, subsequently followed by more rapid rebound of T<sub>regs</sub> Despite robust depletion of host T<sub>conv</sub> and host T<sub>regs</sub>, donor T<sub>regs</sub> failed to engraft even with interleukin-2 (IL-2) support. A single dose of CyP after αCD3 depleted rebounding host T<sub>regs</sub> and resulted in a 43-fold increase in donor T<sub>reg</sub> engraftment, yet polyclonal donor T<sub>regs</sub> failed to reverse diabetes. However, infusion of autoantigen-specific T<sub>regs</sub> after αCD3 alone resulted in robust T<sub>reg</sub> engraftment within the islets and induced remission in all mice. This novel combinatorial therapy promotes engraftment of autoantigen-specific donor T<sub>regs</sub> and controls islet autoimmunity without long-term immunosuppression.
Medical subject headings
- Immunomodulation
- Islets of Langerhans
- T-Lymphocytes, Regulatory