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Delta-like Ligand-4-Notch Signaling Inhibition Regulates Pancreatic Islet Function and Insulin Secretion
Author(s) -
Fabienne Billiard,
Sevasti Karaliota,
Bei Wang,
Dimitris Stellas,
Ioannis Serafimidis,
Antigoni Manousopoulou,
Yiassemi Koutmani,
Elpinickie Ninou,
Jacquelynn Golubov,
Amanda DaNave,
Panagiοtis Tsakanikas,
Yurong Xin,
Wen Zhang,
Matthew Sleeman,
George D. Yancopoulos,
Andrew Murphy,
Spiros D. Garbis,
Katia Karalis,
Dimitris Skokos
Publication year - 2018
Publication title -
cell reports
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 6.264
H-Index - 154
eISSN - 2639-1856
pISSN - 2211-1247
DOI - 10.1016/j.celrep.2017.12.076
Subject(s) - notch signaling pathway , islet , pancreatic islets , insulin , endocrinology , medicine , signal transduction , microbiology and biotechnology , biology , gene knockdown , secretion , hes3 signaling axis , cancer research , chemistry , apoptosis , biochemistry
Although Notch signaling has been proposed as a therapeutic target for type-2 diabetes, liver steatosis, and atherosclerosis, its direct effect on pancreatic islets remains unknown. Here, we demonstrated a function of Dll4-Notch signaling inhibition on the biology of insulin-producing cells. We confirmed enhanced expression of key Notch signaling genes in purified pancreatic islets from diabetic NOD mice and showed that treatment with anti-Dll4 antibody specifically abolished Notch signaling pathway activation. Furthermore, we showed that Notch inhibition could drive proliferation of β-islet cells and confer protection from the development of STZ-induced diabetes. Importantly, inhibition of the Dll4 pathway in WT mice increased insulin secretion by inducing the differentiation of pancreatic β-islet cell progenitors, as well as the proliferation of insulin-secreting cells. These findings reveal a direct effect of Dll4-blockade on pancreatic islets that, in conjunction with its immunomodulatory effects, could be used for unmet medical needs hallmarked by inefficient insulin action.

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