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Titlebook: Organ Tissue Engineering; Daniel Eberli,Sang Jin Lee,Andreas Traweger Reference work 2021 Springer Nature Switzerland AG 2021 Stem cell bi

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Bioinspired Vascular Graftstions remain associated with tissue engineering strategies, and the design of a living arterial substitute remains elusive. This chapter aims to describe the structural, mechanical, and biological properties of blood vessels and discuss the design considerations that must be implemented to realize the promise of bioinspired vascular grafts.
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Cell Sheets for Cardiac Tissue Engineeringf transplanted cells from the target site due to local hypoxia and cell washout remains a major problem. To overcome these limitations, we have developed cell sheet-based tissue engineering that allows the generation of confluent cultured cells, stacked cell sheets, and three-dimensional (3D) cell-d
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Bioengineering of Trachea and Esophagus where standard therapy has failed or current options for organ replacement fall short. Existing approaches have involved the use of scaffolds, cells, or a combination of both to reconstruct damaged organs, however increasing evidence suggests that hybrid techniques with exogenous cell delivery enha
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Bioprinting Strategies to Engineer Functional Salivary Gland Organoidsorgans, including exocrine glands. The development of salivary gland organoids can entail the use of biomaterial substrates (usually hydrogel- or Matrigel-based) or can be substrate-free to allow cells to produce their own extracellular matrix molecules. Our research strategies focus on the latter a
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Tissue-Engineered Renal Tissuely grow especially in countries that lack the infrastructure to support its treatments. In spite of this increasing prevalence, current treatments for renal failure are still limited to dialysis and donor organ transplantation. Although these treatments are indeed lifesaving, dialysis does not fully
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