Human whole-liver perfusion-decellularization is an emerging technique for producing bio-scaffolds for tissue engineering purposes. The native liver extracellular matrix (ECM) provides a superior microenvironment for hepatic cells in terms of adhesion, survival and function. However, current decellularization protocols show a high degree of variation in duration. More robust and effective protocols are required, before human decellularized liver ECM can be considered for tissue engineering applications. The aim of this study is to apply pressure-controlled perfusion and test the efficacy of two different detergents in porcine and human livers. To test this, porcine livers were decellularized using two different protocols; a triton-x-100 (Tx...
The growing number of patients requiring liver transplantation for chronic liver disease cannot be c...
Liver disease affects millions of patients each year. The field of regenerative medicine promises al...
Decellularization of native blood vessels is a promising technology to generate 3D biological scaffo...
Aim. To refine the decellularization protocol of whole porcine liver, which holds great promise for ...
Hepatic tissue engineering using decellularized scaffolds is a potential therapeutic alternative to ...
Background/PurposeUsing gradient ionic detergent, we optimized the preparation procedure for the dec...
Currently, due to the progress made in the field of regenerative medicine, whole-organ bioengineerin...
which permits unrestricted use, distribution, and reproduction in any medium, provided the original ...
Over the last decade new methods are explored in the field of tissue engineering to minimize the don...
Liver disease is a leading cause of mortality in the United States resulting in over 30,000 deaths a...
Decellularized human livers are considered the perfect extracellular matrix (ECM) surrogate bec...
Background and Aims: An estimated 29 million people in the European Union (EU) suffer from a chronic...
The development of human liver scaffolds retaining their 3-dimensional structure and extra-cellular ...
Shortage of donor organs combined with ever increasing liver disease has directed attention towards ...
Decellularization of native blood vessels is a promising technology to generate 3D biological scaffo...
The growing number of patients requiring liver transplantation for chronic liver disease cannot be c...
Liver disease affects millions of patients each year. The field of regenerative medicine promises al...
Decellularization of native blood vessels is a promising technology to generate 3D biological scaffo...
Aim. To refine the decellularization protocol of whole porcine liver, which holds great promise for ...
Hepatic tissue engineering using decellularized scaffolds is a potential therapeutic alternative to ...
Background/PurposeUsing gradient ionic detergent, we optimized the preparation procedure for the dec...
Currently, due to the progress made in the field of regenerative medicine, whole-organ bioengineerin...
which permits unrestricted use, distribution, and reproduction in any medium, provided the original ...
Over the last decade new methods are explored in the field of tissue engineering to minimize the don...
Liver disease is a leading cause of mortality in the United States resulting in over 30,000 deaths a...
Decellularized human livers are considered the perfect extracellular matrix (ECM) surrogate bec...
Background and Aims: An estimated 29 million people in the European Union (EU) suffer from a chronic...
The development of human liver scaffolds retaining their 3-dimensional structure and extra-cellular ...
Shortage of donor organs combined with ever increasing liver disease has directed attention towards ...
Decellularization of native blood vessels is a promising technology to generate 3D biological scaffo...
The growing number of patients requiring liver transplantation for chronic liver disease cannot be c...
Liver disease affects millions of patients each year. The field of regenerative medicine promises al...
Decellularization of native blood vessels is a promising technology to generate 3D biological scaffo...