4.8 Article

β-cell-mimetic designer cells provide closed-loop glycemic control

Journal

SCIENCE
Volume 354, Issue 6317, Pages 1296-1301

Publisher

AMER ASSOC ADVANCEMENT SCIENCE
DOI: 10.1126/science.aaf4006

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Funding

  1. European Research Council [321381]
  2. Natural Science Foundation of China [31522017]
  3. National Centre of Competence in Research Molecular Systems Engineering

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Chronically deregulated blood-glucose concentrations in diabetes mellitus result from a loss of pancreatic insulin-producing beta cells (type 1 diabetes, T1D) or from impaired insulin sensitivity of body cells and glucose-stimulated insulin release (type 2 diabetes, T2D). Here, we show that therapeutically applicable beta-cell-mimetic designer cells can be established by minimal engineering of human cells. We achieved glucose responsiveness by a synthetic circuit that couples glycolysis-mediated calcium entry to an excitation-transcription system controlling therapeutic transgene expression. Implanted circuit-carrying cells corrected insulin deficiency and self-sufficiently abolished persistent hyperglycemia in T1D mice. Similarly, glucose-inducible glucagon-like peptide 1 transcription improved endogenous glucose-stimulated insulin release and glucose tolerance in T2D mice. These systems may enable a combination of diagnosis and treatment for diabetes mellitus therapy.

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