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Strategies for durable β cell replacement in type 1 diabetes.

Todd M BruskoHolger A RussCherie L Stabler
Published in: Science (New York, N.Y.) (2021)
Technological advancements in blood glucose monitoring and therapeutic insulin administration have improved the quality of life for people with type 1 diabetes. However, these efforts fall short of replicating the exquisite metabolic control provided by native islets. We examine the integrated advancements in islet cell replacement and immunomodulatory therapies that are coalescing to enable the restoration of endogenous glucose regulation. We highlight advances in stem cell biology and graft site design, which offer innovative sources of cellular material and improved engraftment. We also cover cutting-edge approaches for preventing allograft rejection and recurrent autoimmunity. These insights reflect a growing understanding of type 1 diabetes etiology, β cell biology, and biomaterial design, together highlighting therapeutic opportunities to durably replace the β cells destroyed in type 1 diabetes.
Keyphrases
  • type diabetes
  • stem cells
  • single cell
  • cell therapy
  • glycemic control
  • cardiovascular disease
  • induced apoptosis
  • oxidative stress
  • adipose tissue
  • cell proliferation
  • blood glucose
  • signaling pathway
  • skeletal muscle