Abstract Background In view of the importance of beta cells in glucose homeostasis and the profound repercussions of beta cell pathology on human health, the acquisition of tools to study pancreatic islet function is essential for the design of alternative novel therapies for diabetes. One promising approach toward this goal involves the modification of gene expression profile of beta cells. Results This study describes a new method of gene and siRNA delivery into human pancreatic islets by microporation technology. We demonstrated that mild islet distention with accutase greatly enhanced the transfection efficiency without compromising in vitro function (secretion, apoptosis and viability). As an example, the recently identified gene invol...
Pancreatic islets control glucose homeostasis by the balanced secretion of insulin and other hormone...
Type-2 diabetes (T2D) is a complex disease characterized by insulin resistance in target tissues and...
Understanding the molecular mechanisms behind beta cell dysfunction is essential for the development...
Human β-cell gene profiling is a powerful tool for understanding β-cell biology in normal and pathol...
OBJECTIVE: The efficient transfer of genes into intact islets is difficult since islets exist as clu...
The present study uses a novel approach to gene therapy in which plasmid DNA is targeted to the panc...
AIMS/HYPOTHESIS: The process of islet isolation can cause chemical and mechanical injury to beta cel...
Successful normalization of blood glucose in patients transplanted with pancreatic islets isolated f...
The expression of 47 genes involved in the biosynthesis and secretion of insulin, apoptosis, and cel...
Patients with type I diabetes, which is caused by the destruction of pancreatic islets, now require ...
Cytoprotection of pancreatic islets before and early after transplantation using gene therapy. Pancr...
In type 1 diabetes, dysfunctional glucose regulation occurs due to the death of insulin-producing be...
The cross-talk between beta cells and endothelium plays a key role in islet physiopathology and in t...
The lack of efficient gene transfer methods into primary human pancreatic exocrine cells hampers stu...
There is growing evidence that transplantation of cadaveric human islets is an effective therapy for...
Pancreatic islets control glucose homeostasis by the balanced secretion of insulin and other hormone...
Type-2 diabetes (T2D) is a complex disease characterized by insulin resistance in target tissues and...
Understanding the molecular mechanisms behind beta cell dysfunction is essential for the development...
Human β-cell gene profiling is a powerful tool for understanding β-cell biology in normal and pathol...
OBJECTIVE: The efficient transfer of genes into intact islets is difficult since islets exist as clu...
The present study uses a novel approach to gene therapy in which plasmid DNA is targeted to the panc...
AIMS/HYPOTHESIS: The process of islet isolation can cause chemical and mechanical injury to beta cel...
Successful normalization of blood glucose in patients transplanted with pancreatic islets isolated f...
The expression of 47 genes involved in the biosynthesis and secretion of insulin, apoptosis, and cel...
Patients with type I diabetes, which is caused by the destruction of pancreatic islets, now require ...
Cytoprotection of pancreatic islets before and early after transplantation using gene therapy. Pancr...
In type 1 diabetes, dysfunctional glucose regulation occurs due to the death of insulin-producing be...
The cross-talk between beta cells and endothelium plays a key role in islet physiopathology and in t...
The lack of efficient gene transfer methods into primary human pancreatic exocrine cells hampers stu...
There is growing evidence that transplantation of cadaveric human islets is an effective therapy for...
Pancreatic islets control glucose homeostasis by the balanced secretion of insulin and other hormone...
Type-2 diabetes (T2D) is a complex disease characterized by insulin resistance in target tissues and...
Understanding the molecular mechanisms behind beta cell dysfunction is essential for the development...