Key result
Anakinra and parthenolide significantly reduced graft inflammation and cellular recruitment relative to nontreated controls in a rat cardiac transplant model.
Why the study?
Ischemia-reperfusion injury is an important risk factor for accelerated cardiac allograft rejection and graft dysfunction, prompting the identification of involved inflammatory pathways and therapeutic targets.
Does blocking IL-1R signaling with Anakinra or parthenolide reduce ischemia-reperfusion injury and improve graft survival in a rat cardiac transplant model?
Does blocking IL-1R signaling with Anakinra or parthenolide reduce ischemia-reperfusion injury and improve graft survival in a rat cardiac transplant model?
Blocking IL-1R signaling or inflammasome activity reduces ischemia-reperfusion injury and extends survival of cardiac allografts from CMV-infected donors in a rat model.
Hypothesis-generating for IL-1R targeting in cardiac transplant IRI; leaves open clinical translation pending human data.
Ischemia-reperfusion injury (IRI) is an important risk factor for accelerated cardiac allograft rejection and graft dysfunction . Utilizing a rat heart isogeneic transplant model, we identified inflammatory pathways involved in IRI in order to identify therapeutic targets involved in disease. Pathway analyses identified several relevant targets, including cytokine signaling by the IL-1 receptor (IL-1R) pathway and inflammasome activation. To investigate the role of IL-1R signaling pathways during IRI, we treated syngeneic cardiac transplant recipients at 1-hour posttransplant with Anakinra, a US Food and Drug Administration (FDA)-approved IL-1R antagonist; or parthenolide, a caspase-1 and nuclear factor kappa-light-chain-enhancer of activated B cells inhibitor that blocks IL-1β maturation. Both Anakinra and parthenolide significantly reduced graft inflammation and cellular recruitment in the treated recipients relative to nontreated controls. Anakinra treatment administered at 1-hour posttransplant to recipients of cardiac allografts from CMV-infected donors significantly increased the time to rejection and reduced viral loads at rejection. Our results indicate that reducing IRI by blocking IL-1Rsignaling pathways with Anakinra or inflammasome activity with parthenolide provides a promising approach for extending survival of cardiac allografts from CMV-infected donors.
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Jones et al. (2020) studied Cardiac transplant ischemia and reperfusion injury. Anakinra or parthenolide vs. nontreated controls was evaluated on Graft inflammation and cellular recruitment. Anakinra and parthenolide significantly reduced graft inflammation and cellular recruitment relative to nontreated controls in a rat cardiac transplant model.
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