In cell encapsulation, transplanted cells are protected from immune rejection by an artificial, semipermeable membrane, potentially allowing transplantation (allo-or xenotransplantation) without the need for immunosuppression. Yet, despite some promising results in animal studies, the field has not lived up to expectations, and clinical products based on encapsulated cell technology continue to elude the scientific community. This commentary discusses the reasons for this, summarizes recent progress in the field and outlines what is needed to bring this technology closer to clinical application
Treating many chronic diseases will require a tight, minute-to-minute regulation of therapeutic mole...
Treating many chronic diseases will require a tight, minute-to-minute regulation of therapeutic mole...
Treating many chronic diseases will require a tight, minute-to-minute regulation of therapeutic mole...
In cell encapsulation, transplanted cells are protected from immune rejection by an artificial, semi...
In cell encapsulation, transplanted cells are protected from immune rejection by an artificial, semi...
In cell encapsulation, transplanted cells are protected from immune rejection by an artificial, semi...
In cell encapsulation, transplanted cells are protected from immune rejection by an artificial, semi...
In cell encapsulation, transplanted cells are protected from immune rejection by an artificial, semi...
Cell encapsulation is a technological procedure with the potential to treat a wide range of human di...
The principle of immunoisolation of cells is based on encapsulation of cells in immunoprotective but...
The principle of immunoisolation of cells is based on encapsulation of cells in immunoprotective but...
The principle of immunoisolation of cells is based on encapsulation of cells in immunoprotective but...
The principle of immunoisolation of cells is based on encapsulation of cells in immunoprotective but...
The principle of immunoisolation of cells is based on encapsulation of cells in immunoprotective but...
The principle of immunoisolation of cells is based on encapsulation of cells in immunoprotective but...
Treating many chronic diseases will require a tight, minute-to-minute regulation of therapeutic mole...
Treating many chronic diseases will require a tight, minute-to-minute regulation of therapeutic mole...
Treating many chronic diseases will require a tight, minute-to-minute regulation of therapeutic mole...
In cell encapsulation, transplanted cells are protected from immune rejection by an artificial, semi...
In cell encapsulation, transplanted cells are protected from immune rejection by an artificial, semi...
In cell encapsulation, transplanted cells are protected from immune rejection by an artificial, semi...
In cell encapsulation, transplanted cells are protected from immune rejection by an artificial, semi...
In cell encapsulation, transplanted cells are protected from immune rejection by an artificial, semi...
Cell encapsulation is a technological procedure with the potential to treat a wide range of human di...
The principle of immunoisolation of cells is based on encapsulation of cells in immunoprotective but...
The principle of immunoisolation of cells is based on encapsulation of cells in immunoprotective but...
The principle of immunoisolation of cells is based on encapsulation of cells in immunoprotective but...
The principle of immunoisolation of cells is based on encapsulation of cells in immunoprotective but...
The principle of immunoisolation of cells is based on encapsulation of cells in immunoprotective but...
The principle of immunoisolation of cells is based on encapsulation of cells in immunoprotective but...
Treating many chronic diseases will require a tight, minute-to-minute regulation of therapeutic mole...
Treating many chronic diseases will require a tight, minute-to-minute regulation of therapeutic mole...
Treating many chronic diseases will require a tight, minute-to-minute regulation of therapeutic mole...