Investigating the influence of 3D mechanotransduction on porcine adipose-derived stem cells in a hydrogel system for cultivated meat

For millenniums, livestock farming has been the sole source of meat production and with increasing awareness global warming, sustainability and food shortage, alternative protein production has garnered a lot of interest in recent years, one of which being the production of cultivated meat. The main...

Full description

Saved in:
Bibliographic Details
Main Author: Seah, Jasmine Si Han
Other Authors: Tan Lay Poh
Format: Thesis-Doctor of Philosophy
Language:English
Published: Nanyang Technological University 2024
Subjects:
Online Access:https://hdl.handle.net/10356/179775
Tags: Add Tag
No Tags, Be the first to tag this record!
Institution: Nanyang Technological University
Language: English
id sg-ntu-dr.10356-179775
record_format dspace
spelling sg-ntu-dr.10356-1797752024-08-22T00:39:24Z Investigating the influence of 3D mechanotransduction on porcine adipose-derived stem cells in a hydrogel system for cultivated meat Seah, Jasmine Si Han Tan Lay Poh School of Materials Science and Engineering LPTan@ntu.edu.sg Engineering For millenniums, livestock farming has been the sole source of meat production and with increasing awareness global warming, sustainability and food shortage, alternative protein production has garnered a lot of interest in recent years, one of which being the production of cultivated meat. The main challenges of cultivated meat is its ability to replicate meat texture, and the scalability and cost-effectiveness of its production process. To mitigate these challenges, the principles of 3D mechanotransduction are borrowed to direct pADSCs toward myogenesis. This approach reduces the reliance, cost and issues associated to biological soluble factors. This thesis, investigates the influence of 3D fibrous scaffold architecture on the myogenesis of pADSCs and seeks to elucidate the mechanisms of 3D mechanotransduction and examines the feasibility the proposed production method as an approach to produce cultivated meat. The use of an alginate-gelatin 3D composite hydrogel platform, with appropriate mechanical cues and stimulations, pADSCs can undergo myogenesis without the use of specific myogenic inducing biological factors. It was also discovered that the application of static longitudinal tension throughout the culture duration plays a significant role in promoting and accelerating the myogenic process as it facilitates cell elongation and alignment within the alginate-gelatin composite hydrogel. The cultivated meat prototypes produced with this process are not only visually similar to its traditional meat counterpart but has comparable soluble protein content as well. However, its mechanical and textural properties pale in comparison due to the significantly high water content. While there is room for improvement, this method is scalable, versatile, and is able to facilitate proliferation, differentiation and maturation of pADSCs toward skeletal muscle cells, demonstrating its potential for cultivated meat production. Doctor of Philosophy 2024-08-22T00:39:23Z 2024-08-22T00:39:23Z 2024 Thesis-Doctor of Philosophy Seah, J. S. H. (2024). Investigating the influence of 3D mechanotransduction on porcine adipose-derived stem cells in a hydrogel system for cultivated meat. Doctoral thesis, Nanyang Technological University, Singapore. https://hdl.handle.net/10356/179775 https://hdl.handle.net/10356/179775 en This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License (CC BY-NC 4.0). Nanyang Technological University
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Engineering
spellingShingle Engineering
Seah, Jasmine Si Han
Investigating the influence of 3D mechanotransduction on porcine adipose-derived stem cells in a hydrogel system for cultivated meat
description For millenniums, livestock farming has been the sole source of meat production and with increasing awareness global warming, sustainability and food shortage, alternative protein production has garnered a lot of interest in recent years, one of which being the production of cultivated meat. The main challenges of cultivated meat is its ability to replicate meat texture, and the scalability and cost-effectiveness of its production process. To mitigate these challenges, the principles of 3D mechanotransduction are borrowed to direct pADSCs toward myogenesis. This approach reduces the reliance, cost and issues associated to biological soluble factors. This thesis, investigates the influence of 3D fibrous scaffold architecture on the myogenesis of pADSCs and seeks to elucidate the mechanisms of 3D mechanotransduction and examines the feasibility the proposed production method as an approach to produce cultivated meat. The use of an alginate-gelatin 3D composite hydrogel platform, with appropriate mechanical cues and stimulations, pADSCs can undergo myogenesis without the use of specific myogenic inducing biological factors. It was also discovered that the application of static longitudinal tension throughout the culture duration plays a significant role in promoting and accelerating the myogenic process as it facilitates cell elongation and alignment within the alginate-gelatin composite hydrogel. The cultivated meat prototypes produced with this process are not only visually similar to its traditional meat counterpart but has comparable soluble protein content as well. However, its mechanical and textural properties pale in comparison due to the significantly high water content. While there is room for improvement, this method is scalable, versatile, and is able to facilitate proliferation, differentiation and maturation of pADSCs toward skeletal muscle cells, demonstrating its potential for cultivated meat production.
author2 Tan Lay Poh
author_facet Tan Lay Poh
Seah, Jasmine Si Han
format Thesis-Doctor of Philosophy
author Seah, Jasmine Si Han
author_sort Seah, Jasmine Si Han
title Investigating the influence of 3D mechanotransduction on porcine adipose-derived stem cells in a hydrogel system for cultivated meat
title_short Investigating the influence of 3D mechanotransduction on porcine adipose-derived stem cells in a hydrogel system for cultivated meat
title_full Investigating the influence of 3D mechanotransduction on porcine adipose-derived stem cells in a hydrogel system for cultivated meat
title_fullStr Investigating the influence of 3D mechanotransduction on porcine adipose-derived stem cells in a hydrogel system for cultivated meat
title_full_unstemmed Investigating the influence of 3D mechanotransduction on porcine adipose-derived stem cells in a hydrogel system for cultivated meat
title_sort investigating the influence of 3d mechanotransduction on porcine adipose-derived stem cells in a hydrogel system for cultivated meat
publisher Nanyang Technological University
publishDate 2024
url https://hdl.handle.net/10356/179775
_version_ 1814047448462524416