Correlation Engine 2.0
Clear Search sequence regions


  • cellular (1)
  • culture (4)
  • culture techniques (1)
  • delta cells (1)
  • GLUT2 (1)
  • graft (1)
  • imidazoles (2)
  • indoles (2)
  • insulin (7)
  • Islets (6)
  • islets langerhans (1)
  • mice (2)
  • mice nude (1)
  • necrostatin- 1 (8)
  • oxygen (2)
  • swine (1)
  • transplant (2)
  • Sizes of these terms reflect their relevance to your search.

    Pre-weaned porcine islets (PPIs) represent an unlimited source for islet transplantation but are functionally immature. We previously showed that necrostatin-1 (Nec-1) immediately after islet isolation enhanced the in vitro development of PPIs. Here, we examined the impact of Nec-1 on the in vivo function of PPIs after transplantation in diabetic mice. PPIs were isolated from pancreata of 8-15-day-old, pre-weaned pigs and cultured in media alone, or supplemented with Nec-1 (100 µM) on day 0 or on day 3 of culture (n = 5 for each group). On day 7, islet recovery, viability, oxygen consumption rate, insulin content, cellular composition, insulin secretion capacity, and transplant outcomes were evaluated. While islet viability and oxygen consumption rate remained high throughout 7-day tissue culture, Nec-1 supplementation on day 3 significantly improved islet recovery, insulin content, endocrine composition, GLUT2 expression, differentiation potential, proliferation capacity of endocrine cells, and insulin secretion. Adding Nec-1 on day 3 of tissue culture enhanced the islet recovery, proportion of delta cells, beta-cell differentiation and proliferation, and stimulation index. In vivo, this leads to shorter times to normoglycemia, better glycemic control, and higher circulating insulin. Our findings identify the novel time-dependent effects of Nec-1 supplementation on porcine islet quantity and quality prior to transplantation.

    Citation

    Hien Lau, Shiri Li, Nicole Corrales, Samuel Rodriguez, Mohammadreza Mohammadi, Michael Alexander, Paul de Vos, Jonathan Rt Lakey. Necrostatin-1 Supplementation to Islet Tissue Culture Enhances the In-Vitro Development and Graft Function of Young Porcine Islets. International journal of molecular sciences. 2021 Aug 04;22(16)

    Expand section icon Mesh Tags

    Expand section icon Substances


    PMID: 34445075

    View Full Text