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Journal ArticleDOI

Engineering vascularized skeletal muscle tissue.

TLDR
The induction of endothelial vessel networks in engineered skeletal muscle tissue constructs using a three-dimensional multiculture system consisting of myoblasts, embryonic fibroblasts and endothelial cells coseeded on highly porous, biodegradable polymer scaffolds is described.
Abstract
One of the major obstacles in engineering thick, complex tissues such as muscle is the need to vascularize the tissue in vitro. Vascularization in vitro could maintain cell viability during tissue growth, induce structural organization and promote vascularization upon implantation. Here we describe the induction of endothelial vessel networks in engineered skeletal muscle tissue constructs using a three-dimensional multiculture system consisting of myoblasts, embryonic fibroblasts and endothelial cells coseeded on highly porous, biodegradable polymer scaffolds. Analysis of the conditions for induction and stabilization of the vessels in vitro showed that addition of embryonic fibroblasts increased the levels of vascular endothelial growth factor expression in the construct and promoted formation and stabilization of the endothelial vessels. We studied the survival and vascularization of the engineered muscle implants in vivo in three different models. Prevascularization improved the vascularization, blood perfusion and survival of the muscle tissue constructs after transplantation.

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Journal ArticleDOI

Alginate: properties and biomedical applications

TL;DR: This review will provide a comprehensive overview of general properties of alginate and its hydrogels, their biomedical applications, and suggest new perspectives for future studies with these polymers.
Journal ArticleDOI

Growth Factors, Matrices, and Forces Combine and Control Stem Cells

TL;DR: Multifaceted technologies are increasingly required to produce and interrogate cells ex vivo, to build predictive models, and, ultimately, to enhance stem cell integration in vivo for therapeutic benefit.
Journal ArticleDOI

Capturing complex 3D tissue physiology in vitro.

TL;DR: Some of the 'design principles' for recreating the interwoven set of biochemical and mechanical cues in the cellular microenvironment are discussed, and the methods for implementing them are discussed.
Journal ArticleDOI

Bone Tissue Engineering: Recent Advances and Challenges

TL;DR: The fundamentals of bone tissue engineering are discussed, highlighting the current state of this field, and the recent advances of biomaterial and cell-based research, as well as approaches used to enhance bone regeneration.
Journal ArticleDOI

Scaffold-free vascular tissue engineering using bioprinting.

TL;DR: A fully biological self-assembly approach, which is implemented through a rapid prototyping bioprinting method for scaffold-free small diameter vascular reconstruction and has the ability to engineer vessels of distinct shapes and hierarchical trees that combine tubes of distinct diameters.
References
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Journal ArticleDOI

Angiogenesis in health and disease.

TL;DR: Molecular insights into the formation of new blood vessels are being generated at a rapidly increasing pace, offering new therapeutic opportunities that are currently being evaluated.
Journal ArticleDOI

Molecular regulation of vessel maturation.

TL;DR: The maturation of nascent vasculature, formed by vasculogenesis or angiogenesis, requires recruitment of mural cells, generation of an extracellular matrix and specialization of the vessel wall for structural support and regulation of vessel function.
Journal ArticleDOI

Serial passaging and differentiation of myogenic cells isolated from dystrophic mouse muscle

TL;DR: The present report describes the isolation of a cloned population of myogenic cells, derived from adult dystrophic mouse muscle, that can proliferate and differentiate in cell culture.
Journal ArticleDOI

Induction of Pancreatic Differentiation by Signals from Blood Vessels

TL;DR: A role for blood vessels as a source of developmental signals during pancreatic organogenesis is demonstrated and results indicate that vessels not only provide metabolic sustenance, but also provide inductive signals for organ development.
PatentDOI

Endothelial cells derived from human embryonic stem cells

TL;DR: A population of embryonic endothelial cells produced in vitro from human embryonic stem cells was introduced in this paper, which produced platelet endothelial cell adhesion molecule-1 and vasculogenic.
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