Human pancreatic islets develop through fusion of distinct β and α /δ islets
Autor: | Inchul Lee |
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Rok vydání: | 2016 |
Předmět: |
0301 basic medicine
Somatostatin-Secreting Cells endocrine system medicine.medical_specialty endocrine system diseases Late gestation 030209 endocrinology & metabolism Biology Cell Fusion 03 medical and health sciences 0302 clinical medicine Insulin-Secreting Cells Internal medicine medicine Humans Fusion geography Fetus geography.geographical_feature_category Pancreatic islets Neurogenesis Cell Biology Islet Cell biology 030104 developmental biology Endocrinology medicine.anatomical_structure Glucagon-Secreting Cells Developmental Biology |
Zdroj: | Development, Growth & Differentiation. 58:635-640 |
ISSN: | 0012-1592 |
DOI: | 10.1111/dgd.12308 |
Popis: | Human pancreatic islets show unique architecture in which α and δ cells are mostly at the peripheral and perivascular areas. It has remained unknown how such prototype is realized in every islet. Here, I report that fetal islets develop first in two distinct types consisting of β or α/δ cells, respectively. The α/δ islets are variable in shape, composed of α and δ cells evenly intermixed. They are vascularized better but encapsulated poorer than β islets in general. During the development, the β and α/δ islets adjoin and fuse with each other in such a way that α and δ cells form a crescent on β cells and, then, progress to encompass and encroach into β cells. Most mature-form islets appear to develop through the fusion. Islets at various stages of fusion are present concurrently until late gestation, suggesting that the islet fusion is an ongoing developmental process. The α/δ islets appear to play a primary role for the process, approaching toward the fusion partner actively. Direct connection is present between the α/δ islets and neural ganglia undergoing active neurogenesis, suggesting an organ-wide neuroendocrine network development. The fusion of precursor islets appears to be a principle of human pancreatic development providing the prototype of mature islets. The complex development might be a reference for in vitro reproduction of biologically competent islets. |
Databáze: | OpenAIRE |
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