Both type 1 and type 2 diabetes are conditions that are associated with the loss of insulin-producing β-cells within the pancreas. An active research therefore aims at regenerating these β-cells with the hope that they could restore euglycemia. The approaches classically used consist in mimicking embryonic development, making use of diverse cell sources or converting pre-existing pancreatic cells. Despite impressive progresses and promising successes, it appears that we still need to gain further insight into the molecular mechanisms underlying β-cell development. This becomes even more obvious with the emergence of a relatively new field of research, epigenetics. The current review therefore focuses on the latest advances in...
During pancreatic development, insulin-producing beta cells, glucagon-producing alpha cells, and som...
During pancreatic development, insulin-producing beta cells, glucagon-producing alpha cells, and som...
Epigenetics is involved in the altered expression of gene networks that underlie insulin resistance ...
Both type 1 and type 2 diabetes are conditions that are associated with the loss of insulin-producin...
Since diabetes is characterized by impaired ability of pancreatic beta-cells to respond and/or produ...
Since diabetes is characterized by impaired ability of pancreatic beta-cells to respond and/or produ...
Glucose homeostasis in mammals is primarily maintained by the insulin-secreting β-cells contained wi...
Glucose homeostasis in mammals is primarily maintained by the insulin-secreting β-cells contained wi...
The pancreas is composed of two main compartments consisting of endocrine and exocrine tissues. The ...
The raising worldwide prevalence of Type 1 and Type 2 diabetes mellitus (T1DM and T2DM) solicits the...
Insulin-dependent diabetes is a complex multifactorial disorder characterized by loss or dysfunction...
Insulin-dependent diabetes is a complex multifactorial disorder characterized by loss or dysfunction...
Insulin-secreting beta cell loss or dysfunction is a feature of both type 1 and type 2 diabetes. Str...
Introduction: Since diabetes is characterized by impaired ability of pancreatic betacells to respond...
Epigenetics is involved in the altered expression of gene networks that underlie insulin resistance ...
During pancreatic development, insulin-producing beta cells, glucagon-producing alpha cells, and som...
During pancreatic development, insulin-producing beta cells, glucagon-producing alpha cells, and som...
Epigenetics is involved in the altered expression of gene networks that underlie insulin resistance ...
Both type 1 and type 2 diabetes are conditions that are associated with the loss of insulin-producin...
Since diabetes is characterized by impaired ability of pancreatic beta-cells to respond and/or produ...
Since diabetes is characterized by impaired ability of pancreatic beta-cells to respond and/or produ...
Glucose homeostasis in mammals is primarily maintained by the insulin-secreting β-cells contained wi...
Glucose homeostasis in mammals is primarily maintained by the insulin-secreting β-cells contained wi...
The pancreas is composed of two main compartments consisting of endocrine and exocrine tissues. The ...
The raising worldwide prevalence of Type 1 and Type 2 diabetes mellitus (T1DM and T2DM) solicits the...
Insulin-dependent diabetes is a complex multifactorial disorder characterized by loss or dysfunction...
Insulin-dependent diabetes is a complex multifactorial disorder characterized by loss or dysfunction...
Insulin-secreting beta cell loss or dysfunction is a feature of both type 1 and type 2 diabetes. Str...
Introduction: Since diabetes is characterized by impaired ability of pancreatic betacells to respond...
Epigenetics is involved in the altered expression of gene networks that underlie insulin resistance ...
During pancreatic development, insulin-producing beta cells, glucagon-producing alpha cells, and som...
During pancreatic development, insulin-producing beta cells, glucagon-producing alpha cells, and som...
Epigenetics is involved in the altered expression of gene networks that underlie insulin resistance ...