Literature DB >> 24712390

Fabrication and in vivo microanastomosis of vascularized tissue-engineered constructs.

Rachel Campbell Hooper1, Karina A Hernandez, Tatiana Boyko, Alice Harper, Jeremiah Joyce, Alyssa R Golas, Jason A Spector.   

Abstract

Tissue engineering endeavors to create replacement tissues and restore function that may be lost through infection, trauma, and cancer. However, wide clinical application of engineered scaffolds has yet to come to fruition due to inadequate vascularization. Here, we fabricate hydrogel constructs using Pluronic(®) F127 as a sacrificial microfiber, creating microchannels within biocompatible, biodegradable type I collagen matrices. Microchannels were seeded with human umbilical vein endothelial cells (HUVEC) or HUVEC and human aortic smooth muscle cells (HASMC) in co-culture, generating constructs with an internal endothelialized microchannel. Histological analysis demonstrated HASMC/HUVEC-seeded constructs with a confluent lining after 7 days with preservation and further maturation of the lining after 14 days. Immunohistochemical staining demonstrated von Willebrand factor and CD31(+) endothelial cells along the luminal surface (neointima) and alpha-smooth muscle actin expressing smooth muscle cells in the subendothelial plane (neomedia). Additionally, the deposition of extracellular matrix (ECM) components, heparan sulfate and basal lamina collagen IV were detected after 14 days of culture. HUVEC-only- and HASMC/HUVEC-seeded microchannel-containing constructs were microsurgically anastomosed to rat femoral artery and vein and perfused, in vivo. Both HUVEC only and HUVEC/HAMSC-seeded constructs withstood physiologic perfusion pressures while their channels maintained their internal infrastructure. In conclusion, we have synthesized and performed microvascular anastomosis of tissue-engineered hydrogel constructs. This represents a significant advancement toward the generation of vascularized tissues and brings us closer to the fabrication of more complex tissues and solid organs for clinical application.

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Year:  2014        PMID: 24712390      PMCID: PMC4195524          DOI: 10.1089/ten.tea.2013.0583

Source DB:  PubMed          Journal:  Tissue Eng Part A        ISSN: 1937-3341            Impact factor:   3.845


  28 in total

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Authors:  Alexander V Kabanov; Pierre Lemieux; Sergey Vinogradov; Valery Alakhov
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2.  In vitro expression of the endothelial phenotype: comparative study of primary isolated cells and cell lines, including the novel cell line HPMEC-ST1.6R.

Authors:  Ronald E Unger; Vera Krump-Konvalinkova; Kirsten Peters; C James Kirkpatrick
Journal:  Microvasc Res       Date:  2002-11       Impact factor: 3.514

Review 3.  Molecular mechanisms controlling vascular lumen formation in three-dimensional extracellular matrices.

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Journal:  Cells Tissues Organs       Date:  2011-10-13       Impact factor: 2.481

4.  In vitro microvessels for the study of angiogenesis and thrombosis.

Authors:  Ying Zheng; Junmei Chen; Michael Craven; Nak Won Choi; Samuel Totorica; Anthony Diaz-Santana; Pouneh Kermani; Barbara Hempstead; Claudia Fischbach-Teschl; José A López; Abraham D Stroock
Journal:  Proc Natl Acad Sci U S A       Date:  2012-05-29       Impact factor: 11.205

Review 5.  Anterolateral thigh flap: systematic literature review of specific donor-site complications and their management.

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6.  Biological vascularized matrix for bladder tissue engineering: matrix preparation, reseeding technique and short-term implantation in a porcine model.

Authors:  Dirk Schultheiss; Alexander I Gabouev; Serghei Cebotari; Igor Tudorache; Thorsten Walles; Norbert Schlote; Jörg Wefer; P Matthias Kaufmann; Axel Haverich; Udo Jonas; Christian G Stief; Heike Mertsching
Journal:  J Urol       Date:  2005-01       Impact factor: 7.450

7.  Mathematical modeling and frequency gradient analysis of cellular and vascular invasion into integra and strattice: toward optimal design of tissue regeneration scaffolds.

Authors:  Alyssa J Reiffel; Peter W Henderson; David D Krijgh; Daniel A Belkin; Ying Zheng; Lawrence J Bonassar; Abraham D Stroock; Jason A Spector
Journal:  Plast Reconstr Surg       Date:  2012-01       Impact factor: 4.730

Review 8.  Tissue-engineered skin. Current status in wound healing.

Authors:  Y M Bello; A F Falabella; W H Eaglstein
Journal:  Am J Clin Dermatol       Date:  2001       Impact factor: 7.403

9.  Endothelium-dependent contractions to acetylcholine in the aorta of the spontaneously hypertensive rat.

Authors:  T F Lüscher; P M Vanhoutte
Journal:  Hypertension       Date:  1986-04       Impact factor: 10.190

10.  Regeneration and experimental orthotopic transplantation of a bioengineered kidney.

Authors:  Jeremy J Song; Jacques P Guyette; Sarah E Gilpin; Gabriel Gonzalez; Joseph P Vacanti; Harald C Ott
Journal:  Nat Med       Date:  2013-04-14       Impact factor: 53.440

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  6 in total

1.  In Vivo Anastomosis and Perfusion of a Three-Dimensionally-Printed Construct Containing Microchannel Networks.

Authors:  Renganaden Sooppan; Samantha J Paulsen; Jason Han; Anderson H Ta; Patrick Dinh; Ann C Gaffey; Chantel Venkataraman; Alen Trubelja; George Hung; Jordan S Miller; Pavan Atluri
Journal:  Tissue Eng Part C Methods       Date:  2015-12-14       Impact factor: 3.056

Review 2.  Applied Bioengineering in Tissue Reconstruction, Replacement, and Regeneration.

Authors:  Juan M Colazo; Brian C Evans; Angel F Farinas; Salam Al-Kassis; Craig L Duvall; Wesley P Thayer
Journal:  Tissue Eng Part B Rev       Date:  2019-08       Impact factor: 6.389

3.  Generation, Endothelialization, and Microsurgical Suture Anastomosis of Strong 1-mm-Diameter Collagen Tubes.

Authors:  Xuanyue Li; Jing Xu; Calin T Nicolescu; Jordann T Marinelli; Joe Tien
Journal:  Tissue Eng Part A       Date:  2017-01-13       Impact factor: 3.845

Review 4.  Microengineered vascular systems for drug development.

Authors:  Candice M Hovell; Yoshitaka J Sei; YongTae Kim
Journal:  J Lab Autom       Date:  2014-11-25

Review 5.  Skeletal muscle tissue engineering: strategies for volumetric constructs.

Authors:  Giorgio Cittadella Vigodarzere; Sara Mantero
Journal:  Front Physiol       Date:  2014-09-22       Impact factor: 4.566

6.  Development of 3D Microvascular Networks Within Gelatin Hydrogels Using Thermoresponsive Sacrificial Microfibers.

Authors:  Jung Bok Lee; Xintong Wang; Shannon Faley; Bradly Baer; Daniel A Balikov; Hak-Joon Sung; Leon M Bellan
Journal:  Adv Healthc Mater       Date:  2016-02-04       Impact factor: 9.933

  6 in total

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