A New High Throughput Screening Platform for Cell Encapsulation in Alginate Hydrogel Shows Improved Hepatocyte Functions by Mesenchymal Stromal Cells Co-encapsulation

Hepatocyte transplantation has emerged as an alternative to liver transplant for liver disease. Hepatocytes encapsulated in alginate microbeads have been proposed for the treatment of acute liver failure, as they are able to provide hepatic functions while the liver regenerates. Furthermore, they do...

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Main Authors: Valeria Iansante, Anil Dhawan, Fatma Masmoudi, Charlotte A. Lee, Raquel Fernandez-Dacosta, Simon Walker, Emer Fitzpatrick, Ragai R. Mitry, Céline Filippi
Format: Article
Language:English
Published: Frontiers Media S.A. 2018-08-01
Series:Frontiers in Medicine
Subjects:
Online Access:https://www.frontiersin.org/article/10.3389/fmed.2018.00216/full
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spelling doaj-1365163c4e2a4251bfc546dbc9ea5dcd2020-11-24T21:40:06ZengFrontiers Media S.A.Frontiers in Medicine2296-858X2018-08-01510.3389/fmed.2018.00216390760A New High Throughput Screening Platform for Cell Encapsulation in Alginate Hydrogel Shows Improved Hepatocyte Functions by Mesenchymal Stromal Cells Co-encapsulationValeria Iansante0Anil Dhawan1Fatma Masmoudi2Charlotte A. Lee3Raquel Fernandez-Dacosta4Simon Walker5Emer Fitzpatrick6Ragai R. Mitry7Céline Filippi8Dhawan Lab at Mowat Labs, Institute of Liver Studies, King's College London, King's College Hospital, London, United KingdomPaediatric Liver, GI and Nutrition Centre, King's College London, King's College Hospital, London, United KingdomDhawan Lab at Mowat Labs, Institute of Liver Studies, King's College London, King's College Hospital, London, United KingdomDhawan Lab at Mowat Labs, Institute of Liver Studies, King's College London, King's College Hospital, London, United KingdomDhawan Lab at Mowat Labs, Institute of Liver Studies, King's College London, King's College Hospital, London, United KingdomDhawan Lab at Mowat Labs, Institute of Liver Studies, King's College London, King's College Hospital, London, United KingdomPaediatric Liver, GI and Nutrition Centre, King's College London, King's College Hospital, London, United KingdomDhawan Lab at Mowat Labs, Institute of Liver Studies, King's College London, King's College Hospital, London, United KingdomDhawan Lab at Mowat Labs, Institute of Liver Studies, King's College London, King's College Hospital, London, United KingdomHepatocyte transplantation has emerged as an alternative to liver transplant for liver disease. Hepatocytes encapsulated in alginate microbeads have been proposed for the treatment of acute liver failure, as they are able to provide hepatic functions while the liver regenerates. Furthermore, they do not require immunosuppression, as the alginate protects the hepatocytes from the recipient's immune cells. Mesenchymal stromal cells are very attractive candidates for regenerative medicine, being able to differentiate into cells of the mesenchymal lineages and having extensive proliferative ability. When co-cultured with hepatocytes in two-dimensional cultures, they exert a trophic role, drastically improving hepatocytes survival and functions. In this study we aimed to (i) devise a high throughput system (HTS) to allow testing of a variety of different parameters for cell encapsulation and (ii) using this HTS, investigate whether mesenchymal stromal cells could have beneficial effects on the hepatocytes when co-encapsulated in alginate microbeads. Using our HTS platform, we observed some improvement of hepatocyte behavior with MSCs, subsequently confirmed in the low throughput analysis of cell function in alginate microbeads. Therefore, our study shows that mesenchymal stromal cells may be a good option to improve the function of hepatocytes microbeads. Furthermore, the platform developed may be used for HTS studies on cell encapsulation, in which several conditions (e.g., number of cells, combinations of cells, alginate modifications) could be easily compared at the same time.https://www.frontiersin.org/article/10.3389/fmed.2018.00216/fullhepatocytesmesenchymal stromal cellsalginatehydrogelmicrobeadshigh throughput screening
collection DOAJ
language English
format Article
sources DOAJ
author Valeria Iansante
Anil Dhawan
Fatma Masmoudi
Charlotte A. Lee
Raquel Fernandez-Dacosta
Simon Walker
Emer Fitzpatrick
Ragai R. Mitry
Céline Filippi
spellingShingle Valeria Iansante
Anil Dhawan
Fatma Masmoudi
Charlotte A. Lee
Raquel Fernandez-Dacosta
Simon Walker
Emer Fitzpatrick
Ragai R. Mitry
Céline Filippi
A New High Throughput Screening Platform for Cell Encapsulation in Alginate Hydrogel Shows Improved Hepatocyte Functions by Mesenchymal Stromal Cells Co-encapsulation
Frontiers in Medicine
hepatocytes
mesenchymal stromal cells
alginate
hydrogel
microbeads
high throughput screening
author_facet Valeria Iansante
Anil Dhawan
Fatma Masmoudi
Charlotte A. Lee
Raquel Fernandez-Dacosta
Simon Walker
Emer Fitzpatrick
Ragai R. Mitry
Céline Filippi
author_sort Valeria Iansante
title A New High Throughput Screening Platform for Cell Encapsulation in Alginate Hydrogel Shows Improved Hepatocyte Functions by Mesenchymal Stromal Cells Co-encapsulation
title_short A New High Throughput Screening Platform for Cell Encapsulation in Alginate Hydrogel Shows Improved Hepatocyte Functions by Mesenchymal Stromal Cells Co-encapsulation
title_full A New High Throughput Screening Platform for Cell Encapsulation in Alginate Hydrogel Shows Improved Hepatocyte Functions by Mesenchymal Stromal Cells Co-encapsulation
title_fullStr A New High Throughput Screening Platform for Cell Encapsulation in Alginate Hydrogel Shows Improved Hepatocyte Functions by Mesenchymal Stromal Cells Co-encapsulation
title_full_unstemmed A New High Throughput Screening Platform for Cell Encapsulation in Alginate Hydrogel Shows Improved Hepatocyte Functions by Mesenchymal Stromal Cells Co-encapsulation
title_sort new high throughput screening platform for cell encapsulation in alginate hydrogel shows improved hepatocyte functions by mesenchymal stromal cells co-encapsulation
publisher Frontiers Media S.A.
series Frontiers in Medicine
issn 2296-858X
publishDate 2018-08-01
description Hepatocyte transplantation has emerged as an alternative to liver transplant for liver disease. Hepatocytes encapsulated in alginate microbeads have been proposed for the treatment of acute liver failure, as they are able to provide hepatic functions while the liver regenerates. Furthermore, they do not require immunosuppression, as the alginate protects the hepatocytes from the recipient's immune cells. Mesenchymal stromal cells are very attractive candidates for regenerative medicine, being able to differentiate into cells of the mesenchymal lineages and having extensive proliferative ability. When co-cultured with hepatocytes in two-dimensional cultures, they exert a trophic role, drastically improving hepatocytes survival and functions. In this study we aimed to (i) devise a high throughput system (HTS) to allow testing of a variety of different parameters for cell encapsulation and (ii) using this HTS, investigate whether mesenchymal stromal cells could have beneficial effects on the hepatocytes when co-encapsulated in alginate microbeads. Using our HTS platform, we observed some improvement of hepatocyte behavior with MSCs, subsequently confirmed in the low throughput analysis of cell function in alginate microbeads. Therefore, our study shows that mesenchymal stromal cells may be a good option to improve the function of hepatocytes microbeads. Furthermore, the platform developed may be used for HTS studies on cell encapsulation, in which several conditions (e.g., number of cells, combinations of cells, alginate modifications) could be easily compared at the same time.
topic hepatocytes
mesenchymal stromal cells
alginate
hydrogel
microbeads
high throughput screening
url https://www.frontiersin.org/article/10.3389/fmed.2018.00216/full
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