Ferroptosis-inducing agents compromise in vitro human islet viability and function

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作者
Antonio Bruni
Andrew R. Pepper
Rena L. Pawlick
Boris Gala-Lopez
Anissa F. Gamble
Tatsuya Kin
Karen Seeberger
Gregory S. Korbutt
Stefan R. Bornstein
Andreas Linkermann
A. M. James Shapiro
机构
[1] University of Alberta,Clinical Islet Transplant Program, Alberta Diabetes Institute
[2] University of Alberta,Department of Surgery
[3] Dalhousie University,QEII Health Science Centre
[4] Hospital Carl Gustav Carus Dresden,Clinic for Internal Medicine 3
[5] Hospital Carl Gustav Carus Dresden,Division of Nephrology, Clinic for Internal Medicine 3
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Cell Death & Disease | / 9卷
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摘要
Human islet transplantation has been hampered by donor cell death associated with the islet preparation procedure before transplantation. Regulated necrosis pathways are biochemically and morphologically distinct from apoptosis. Recently, ferroptosis was identified as a non-apoptotic form of iron-dependent regulated necrosis implicated in various pathological conditions. Mediators of islet oxidative stress, including glutathione peroxidase-4 (GPX4), have been identified as inhibitors of ferroptosis, and mechanisms that affect GPX4 function can impact islet function and viability. Ferroptosis has not been investigated directly in human islets, and its relevance in islet transplantation remains unknown. Herein, we sought to determine whether in vitro human islet viability and function is compromised in the presence of two distinct ferroptosis-inducing agents (FIA), erastin or RSL3, and whether these effects could be rescued with ferroptosis inhibitors, ferrostatin-1 (Fer-1), or desferrioxamine (DFO). Viability, as assessed by lactate dehydrogenase (LDH) release, revealed significant death in erastin- and RSL3-treated islets, 20.3% ± 3.8 and 24.4% ± 2.5, 24 h post culture, respectively. These effects were ameliorated in islets pre-treated with Fer-1 or the iron chelator, desferrioxamine (DFO). Stimulation index, a marker of islet function revealed a significant reduction in function in erastin-treated islets (control 1.97 ± 0.13 vs. 50 μM erastin 1.32 ± 0.1) (p < 0.05). Fer-1 and DFO pre-treatment alone did not augment islet viability or function. Pre-treatment of islets with erastin or Fer-1 did not impact in vivo engraftment in an immunodeficient mouse transplant model. Our data reveal that islets are indeed susceptible to ferroptosis in vitro, and induction of this novel cell death modality leads to compromised islet function, which can be recoverable in the presence of the ferroptosis inhibitors. The in vivo impact of this pathway in islet transplantation remains elusive given the constraints of our study, but warrants continued investigation.
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  • [1] Bruni A(2014)Islet cell transplantation for the treatment of type 1 diabetes: recent advances and future challenges Diabetes Metab. Syndr. Obes. 7 211-223
  • [2] Gala-Lopez B(2000)Islet transplantation in seven patients with type 1 diabetes mellitus using a glucocorticoid-free immunosuppressive regimen N. Engl. J. Med. 343 230-238
  • [3] Pepper AR(2005)Five-year follow-up after clinical islet transplantation Diabetes 54 2060-2069
  • [4] Abualhassan NS(2012)Caspase inhibitor IDN6556 facilitates marginal mass islet engraftment in a porcine islet autotransplant model Transplantation 94 30-35
  • [5] Shapiro AJ(1996)Vulnerability of islets in the immediate posttransplantation period. Dynamic changes in structure and function Diabetes 45 1161-1167
  • [6] Shapiro AM(2002)Beta-cell death and mass in syngeneically transplanted islets exposed to short- and long-term hyperglycemia Diabetes 51 66-72
  • [7] Ryan EA(2007)Caspase inhibitor therapy enhances marginal mass islet graft survival and preserves long-term function in islet transplantation Diabetes 56 1289-1298
  • [8] McCall MD(2014)Regulated cell death and inflammation: an auto-amplification loop causes organ failure Nat. Rev. Immunol. 14 759-767
  • [9] Davalli AM(2016)Nonapoptotic cell death in acute kidney injury and transplantation Kidney Int. 89 46-57
  • [10] Biarnes M(2015)Necroptosis and its role in inflammation Nature 517 311-320