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Emerging routes to the generation of functional β-cells for diabetes mellitus cell therapy
by
Tzanakakis, Emmanuel S
, Nair, Gopika G
, Hebrok Matthias
in
Beta cells
/ Bioengineering
/ Cell therapy
/ Diabetes
/ Diabetes mellitus
/ Endoderm
/ Homeostasis
/ Insulin
/ Islet cells
/ Mimicry
/ Pancreas
/ Pluripotency
/ Stem cell transplantation
/ Stem cells
2020
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Emerging routes to the generation of functional β-cells for diabetes mellitus cell therapy
by
Tzanakakis, Emmanuel S
, Nair, Gopika G
, Hebrok Matthias
in
Beta cells
/ Bioengineering
/ Cell therapy
/ Diabetes
/ Diabetes mellitus
/ Endoderm
/ Homeostasis
/ Insulin
/ Islet cells
/ Mimicry
/ Pancreas
/ Pluripotency
/ Stem cell transplantation
/ Stem cells
2020
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Emerging routes to the generation of functional β-cells for diabetes mellitus cell therapy
by
Tzanakakis, Emmanuel S
, Nair, Gopika G
, Hebrok Matthias
in
Beta cells
/ Bioengineering
/ Cell therapy
/ Diabetes
/ Diabetes mellitus
/ Endoderm
/ Homeostasis
/ Insulin
/ Islet cells
/ Mimicry
/ Pancreas
/ Pluripotency
/ Stem cell transplantation
/ Stem cells
2020
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Emerging routes to the generation of functional β-cells for diabetes mellitus cell therapy
Journal Article
Emerging routes to the generation of functional β-cells for diabetes mellitus cell therapy
2020
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Overview
Diabetes mellitus, which affects more than 463 million people globally, is caused by the autoimmune ablation or functional loss of insulin-producing β-cells, and prevalence is projected to continue rising over the next decades. Generating β-cells to mitigate the aberrant glucose homeostasis manifested in the disease has remained elusive. Substantial advances have been made in producing mature β-cells from human pluripotent stem cells that respond appropriately to dynamic changes in glucose concentrations in vitro and rapidly function in vivo following transplantation in mice. Other potential avenues to produce functional β-cells include: transdifferentiation of closely related cell types (for example, other pancreatic islet cells such as α-cells, or other cells derived from endoderm); the engineering of non-β-cells that are capable of modulating blood sugar; and the construction of synthetic ‘cells’ or particles mimicking functional aspects of β-cells. This Review focuses on the current status of generating β-cells via these diverse routes, highlighting the unique advantages and challenges of each approach. Given the remarkable progress in this field, scalable bioengineering processes are also discussed for the realization of the therapeutic potential of derived β-cells.This Review highlights the research advances, advantages and challenges in several different strategies for generating functional β-cells for therapeutic use in diabetes mellitus. In addition, scalable bioengineering processes are also discussed for the realization of the therapeutic potential of derived β-cells.
Publisher
Nature Publishing Group
Subject
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