Islet transplantation for type 1 diabetes treatment has been limited by the need for lifelong immunosuppression regimens. This challenge has prompted the development of macroencapsulation devices (MEDs) to immunoprotect the transplanted islets. While promising, conventional MEDs are faced with insufficient transport of oxygen, glucose, and insulin because of the reliance on passive diffusion. Hence, these devices are constrained to two-dimensional, wafer-like geometries with limited loading capacity to maintain cells within a distance of passive diffusion. We hypothesized that convective nutrient transport could extend the loading capacity while also promoting cell viability, rapid glucose equilibration, and the physiological levels of insu...
Macroencapsulation devices provide the dual possibility to immunoprotect transplanted cells while al...
The current epidemic of diabetes with its overwhelming burden on our healthcare system requires bett...
Type 1 diabetes (T1D) is an autoimmune disease in which the patient’s own immune system attacks and ...
364 pagesType 1 diabetes (T1D) is a disease characterized by the loss of glycemic control following ...
Macroencapsulation technology has been an attractive topic in the field of treatment for Type 1 diab...
The goal of this dissertation is to develop a bioartificial pancreas device consisting of silicon na...
Abstract Stem cell derived insulin producing cells or islets have shown promise in reversing Type 1 ...
Macroencapsulation of islets of Langerhans is a promising strategy for transplantation of insulin-pr...
Macroencapsulation of islets of Langerhans is a promising strategy for transplantation of insulin-pr...
Encapsulating, or immunoisolating, insulin-secreting cells within implantable, semipermeable membran...
Transplantation of encapsulated islets can cure diabetes without immunosuppression, but oxygen suppl...
Islet encapsulation devices can induce a Foreign Body Response (FBR) and the formation of a hardened...
Macroencapsulation devices provide the dual possibility to immunoprotect transplanted cells while al...
Transplantation of encapsulated islets devoid of immunosuppressants is a potential approach to reviv...
Macroencapsulation devices provide the dual possibility to immunoprotect transplanted cells while al...
The current epidemic of diabetes with its overwhelming burden on our healthcare system requires bett...
Type 1 diabetes (T1D) is an autoimmune disease in which the patient’s own immune system attacks and ...
364 pagesType 1 diabetes (T1D) is a disease characterized by the loss of glycemic control following ...
Macroencapsulation technology has been an attractive topic in the field of treatment for Type 1 diab...
The goal of this dissertation is to develop a bioartificial pancreas device consisting of silicon na...
Abstract Stem cell derived insulin producing cells or islets have shown promise in reversing Type 1 ...
Macroencapsulation of islets of Langerhans is a promising strategy for transplantation of insulin-pr...
Macroencapsulation of islets of Langerhans is a promising strategy for transplantation of insulin-pr...
Encapsulating, or immunoisolating, insulin-secreting cells within implantable, semipermeable membran...
Transplantation of encapsulated islets can cure diabetes without immunosuppression, but oxygen suppl...
Islet encapsulation devices can induce a Foreign Body Response (FBR) and the formation of a hardened...
Macroencapsulation devices provide the dual possibility to immunoprotect transplanted cells while al...
Transplantation of encapsulated islets devoid of immunosuppressants is a potential approach to reviv...
Macroencapsulation devices provide the dual possibility to immunoprotect transplanted cells while al...
The current epidemic of diabetes with its overwhelming burden on our healthcare system requires bett...
Type 1 diabetes (T1D) is an autoimmune disease in which the patient’s own immune system attacks and ...