Long-term Tolerance to Islet Transplantation via Targeted Reduction of beta cell-specific T cells.
Kotliar, M.; Cianciolo, E. E.; Pham, D. H.; Carroll, K.; Barski, A.; Jordan, M. B.; Katz, J.
Show abstract
Type 1 diabetes (T1D) results from insulin insufficiency due to the loss or dysfunction of pancreatic beta cells following T cell-mediated autoimmune attack. Currently the only long-term therapy is daily exogenous insulin replacement. The ideal curative approach is the durable restoration of functional islets via transplantation. To date the limiting factors impeding realization of this goal is the lack of a cost effective and limitless source of high-quality islets suitable for transplantation and the ability to provide long-term islet graft acceptance without prolonged need for deleterious immunosuppression. Ongoing clinical trials are testing islets derived from human induced pluripotent stem cells (iPSC); however, long-term acceptance of islet graft will require a effective therapeutic strategy to prevent engrafted islet destruction by pre-existing islet-antigen specific T cells. Here we demonstrate in the NOD mouse model for T1D that autologous islet graft acceptance can be achieved by the targeted elimination of (re)-activated islet-reactive CD4+ and CD8+ T effector (Teff) cells in the initial post-transplantation period by using a short-acting, combination therapy that results in the elimination of islet-reactive Teff cells by exacerbation of their natural DNA damage response (DDR) to drive apoptosis while at the same time maintaining endogenous Treg cells. Article HighlightsO_LIActivated beta-cell reactive CD4+ and CD8+ T effector cells undergo a profound DNA-damage response which is targetable by small molecule inhibitors of the p53 and cell cycle pathways that lead to apoptosis. C_LIO_LIThe use of a combination of MDM2 and WEE1 inhibitors, which termed "p53 potentiation with checkpoint abrogation" (PPCA), conferred significant therapeutic efficacy in treating mouse models of new onset T1D. C_LIO_LISpecific targeting of these T effector cells by PPCA results in a loss of inflammatory T cell subsets, notably proliferation CD4+ Th0 and Th1 subsets and CD8+ T effector memory cells, as determined by single cell RNA-seq studies with the preservation of T regulatory cells. C_LIO_LIWhen autologous islet grafts are given to established diabetic NOD mice, a single course of PPCA results in long-term islet graft acceptance, restoration of normoglycemia and loss of beta cell specific CD4+ and CD8+ T cells. C_LIO_LIPPCA shows promise as a potential means of estimating islet graft tolerance in T1D recipients of islet graft transplantation. C_LI
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- 12-Lipoxygenase Governs the Innate Immune Pathogenesis of Islet Inflammation and Autoimmune Diabetes 94%
- Mitophagy protects beta cells from inflammatory damage in diabetes 94%
- Rapamycin Immunomodulation Utilizes Time-Dependent Alterations of Lymph Node Architecture, Leukocyte Trafficking, and Gut Microbiome 94%
Similar papers in this journal
- Natural protection from type 1 diabetes in Non Obese Diabetic (NOD) mice is characterised by a unique pancreatic islet phenotype 96%
- The Anna Karenina model of beta cell maturation in development and their dedifferentiation in type 1 and type 2 diabetes 96%
- An integrated map of cell type-specific gene expression in pancreatic islets 95%
Similar papers in this journal
- The IFIH1-A946T risk variant promotes diabetes in a sex-dependent manner 96%
- Precision engineering of an anti-HLA-A2 chimeric antigen receptor in regulatory T cells for transplant immune tolerance 95%
- CD3e-immunotoxin spares CD62L(lo) Tregs and reshapes organ-specific T-cell composition by preferentially depleting CD3e(hi) T cells. 94%
Similar papers in this journal
- Inhibition of the Eukaryotic Initiation Factor-2-α Kinase PERK Decreases Risk of Autoimmune Diabetes in Mice 97%
- Fatty Acid Transport Protein-2 (FATP2) Inhibition Enhances Glucose Tolerance through α-Cell-mediated GLP-1 Secretion 95%
- Microbial signals and lymphotoxin drive TNF-independent death of A20 and ABIN-1 deficient epithelium 93%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.