Abstract
Conophylline and betacellulin-δ4 reproduce differentiation-inducing activity of activin A and betacellulin, respectively. We examined the effect of conophylline and betacellulin-δ4 on β cell differentiation. In AR42J cells, conophylline and betacellulin-δ4 converted them into insulin-producing cells. Cells treated with conophylline and betacellulin-δ4 continued to grow after differentiation. Thus, cell number and insulin content were much greater compared to cells treated with activin A and betacellulin. Furthermore, cells treated with conophylline and betacellulin-δ4 secreted insulin in response to glucose. Likewise, conophylline and betacellulin-δ4 converted pancreatic ductal cells into insulin-producing cells. Insulin content, cell number and glucose-evoked insulin secretion were significantly greater than those in cells treated with activin A and betacellulin. Transplantation of pseudoislets prepared using ductal cells treated with conophylline and betacellulin-δ4 was able to reduce effectively the plasma glucose concentration in streptozotocin-treated nude mice. Conophylline and betacellulin-δ4 are effective in inducing differentiation of β cells from progenitors.
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Kitamura, R. I., Ogata, T., Tanaka, Y., Motoyoshi, K., Seno, M., Takei, I., … Kojima, I. (2007). Conophylline and betacellulin-δ4: An effective combination of differentiation factors for pancreatic β cells. Endocrine Journal, 54(2), 255–264. https://doi.org/10.1507/endocrj.K06-199
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