Literature DB >> 23059002

The role of endothelial cells in myofiber differentiation and the vascularization and innervation of bioengineered muscle tissue in vivo.

Tracy L Criswell1, Benjamin T Corona, Zhan Wang, Yu Zhou, Guoguang Niu, Yong Xu, George J Christ, Shay Soker.   

Abstract

Musculoskeletal disorders are a major cause of disability and effective treatments are currently lacking. Tissue engineering affords the possibility of new therapies utilizing cells and biomaterials for the recovery of muscle volume and function. A major consideration in skeletal muscle engineering is the integration of a functional vasculature within the regenerating tissue. In this study we employed fluorescent cell labels to track the location and differentiation of co-cultured cells in vivo and in vitro. We first utilized a co-culture of fluorescently labeled endothelial cells (ECs) and muscle progenitor cells (MPCs) to investigate the ability of ECs to enhance muscle tissue formation and vascularization in an in vivo model of bioengineered muscle. Scaffolds that had been seeded with both MPCs and ECs showed significantly greater vascularization, tissue formation and enhanced innervation as compared to scaffolds seeded with MPCs alone. Subsequently, we performed in vitro experiments using a 3-cell type system (ECs, MPCs, and pericytes (PCs)) to demonstrate the utility of fluorescent cell labeling for monitoring cell growth and differentiation. The growth and differentiation of individual cell types was determined using live cell fluorescent microscopy demonstrating the utility of fluorescent labels to monitor tissue organization in real time.
Copyright © 2012 Elsevier Ltd. All rights reserved.

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Year:  2012        PMID: 23059002      PMCID: PMC4134941          DOI: 10.1016/j.biomaterials.2012.09.045

Source DB:  PubMed          Journal:  Biomaterials        ISSN: 0142-9612            Impact factor:   12.479


  48 in total

1.  The role of pericytes in controlling angiogenesis in vivo.

Authors:  S Egginton; A L Zhou; M D Brown; O Hudlická
Journal:  Adv Exp Med Biol       Date:  2000       Impact factor: 2.622

2.  A fiber-optic-based imaging system for nondestructive assessment of cell-seeded tissue-engineered scaffolds.

Authors:  Matthias C Hofmann; Bryce M Whited; Tracy Criswell; Marissa Nichole Rylander; Christopher G Rylander; Shay Soker; Ge Wang; Yong Xu
Journal:  Tissue Eng Part C Methods       Date:  2012-05-10       Impact factor: 3.056

3.  The morphology of regeneration of skeletal muscles in the rat.

Authors:  H Schmalbruch
Journal:  Tissue Cell       Date:  1976       Impact factor: 2.466

Review 4.  Fiber types in mammalian skeletal muscles.

Authors:  Stefano Schiaffino; Carlo Reggiani
Journal:  Physiol Rev       Date:  2011-10       Impact factor: 37.312

5.  Angiogenic gene-modified muscle cells for enhancement of tissue formation.

Authors:  Paolo De Coppi; Dawn Delo; Lynn Farrugia; Kavid Udompanyanan; James J Yoo; Masashi Nomi; Anthony Atala; Shay Soker
Journal:  Tissue Eng       Date:  2005 Jul-Aug

6.  Endothelial cells guided by immobilized gradients of vascular endothelial growth factor on porous collagen scaffolds.

Authors:  Devang Odedra; Loraine L Y Chiu; Molly Shoichet; Milica Radisic
Journal:  Acta Biomater       Date:  2011-05-10       Impact factor: 8.947

7.  Human microvasculature fabrication using thermal inkjet printing technology.

Authors:  Xiaofeng Cui; Thomas Boland
Journal:  Biomaterials       Date:  2009-08-19       Impact factor: 12.479

Review 8.  Role of growth factors and endothelial cells in therapeutic angiogenesis and tissue engineering.

Authors:  Masashi Nomi; Hideaki Miyake; Yoshifumi Sugita; Masato Fujisawa; Shay Soker
Journal:  Curr Stem Cell Res Ther       Date:  2006-09       Impact factor: 3.828

9.  Engineering an artificial alveolar-capillary membrane: a novel continuously perfused model within microchannels.

Authors:  Divya D Nalayanda; Qihong Wang; William B Fulton; Tza-Huei Wang; Fizan Abdullah
Journal:  J Pediatr Surg       Date:  2010-01       Impact factor: 2.545

10.  Myoblast-acellular skeletal muscle matrix constructs guarantee a long-term repair of experimental full-thickness abdominal wall defects.

Authors:  Paolo De Coppi; Silvia Bellini; Maria Teresa Conconi; Morena Sabatti; Enea Simonato; Pier Giorgio Gamba; Gastone Giovanni Nussdorfer; Pier Paolo Parnigotto
Journal:  Tissue Eng       Date:  2006-07
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  20 in total

1.  Endothelial Network Formation Within Human Tissue-Engineered Skeletal Muscle.

Authors:  Dacha Gholobova; Lieselot Decroix; Vicky Van Muylder; Linda Desender; Melanie Gerard; Gilles Carpentier; Herman Vandenburgh; Lieven Thorrez
Journal:  Tissue Eng Part A       Date:  2015-09-01       Impact factor: 3.845

Review 2.  Muscular dystrophy in a dish: engineered human skeletal muscle mimetics for disease modeling and drug discovery.

Authors:  Alec S T Smith; Jennifer Davis; Gabsang Lee; David L Mack; Deok-Ho Kim
Journal:  Drug Discov Today       Date:  2016-04-22       Impact factor: 7.851

Review 3.  Striated muscle function, regeneration, and repair.

Authors:  I Y Shadrin; A Khodabukus; N Bursac
Journal:  Cell Mol Life Sci       Date:  2016-06-06       Impact factor: 9.261

4.  Elderly Patient-Derived Endothelial Cells for Vascularization of Engineered Muscle.

Authors:  Luba Perry; Moshe Y Flugelman; Shulamit Levenberg
Journal:  Mol Ther       Date:  2017-03-06       Impact factor: 11.454

5.  * The Impact of Age on Skeletal Muscle Progenitor Cell Survival and Fate After Injury.

Authors:  Yu Zhou; Daniel Lovell; Maigen Bethea; Benyam Yoseph; James Poteracki; Shay Soker; Tracy Criswell
Journal:  Tissue Eng Part C Methods       Date:  2017-12       Impact factor: 3.056

6.  Keratin Hydrogel Enhances In Vivo Skeletal Muscle Function in a Rat Model of Volumetric Muscle Loss.

Authors:  J A Passipieri; H B Baker; Mevan Siriwardane; Mary D Ellenburg; Manasi Vadhavkar; Justin M Saul; Seth Tomblyn; Luke Burnett; George J Christ
Journal:  Tissue Eng Part A       Date:  2017-04-14       Impact factor: 3.845

Review 7.  Design, evaluation, and application of engineered skeletal muscle.

Authors:  Mark Juhas; Jean Ye; Nenad Bursac
Journal:  Methods       Date:  2015-10-06       Impact factor: 3.608

Review 8.  Vascularized and Innervated Skeletal Muscle Tissue Engineering.

Authors:  Jordana Gilbert-Honick; Warren Grayson
Journal:  Adv Healthc Mater       Date:  2019-10-17       Impact factor: 9.933

Review 9.  Engineering Biomimetic Materials for Skeletal Muscle Repair and Regeneration.

Authors:  Karina H Nakayama; Mahdis Shayan; Ngan F Huang
Journal:  Adv Healthc Mater       Date:  2019-02-06       Impact factor: 9.933

10.  Evaluation of the regenerative potential of decellularized skeletal muscle seeded with mesenchymal stromal cells in critical-sized bone defect of rat models.

Authors:  Lujain Hakeem; Mohammed Al-Kindi; Nihal AlMuraikhi; Sarah BinHamdan; Ahmad Al-Zahrani
Journal:  Saudi Dent J       Date:  2021-03-22
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