Literature DB >> 23989676

Formation of microvascular networks in vitro.

John P Morgan1, Peter F Delnero, Ying Zheng, Scott S Verbridge, Junmei Chen, Michael Craven, Nak Won Choi, Anthony Diaz-Santana, Pouneh Kermani, Barbara Hempstead, José A López, Thomas N Corso, Claudia Fischbach, Abraham D Stroock.   

Abstract

This protocol describes how to form a 3D cell culture with explicit, endothelialized microvessels. The approach leads to fully enclosed, perfusable vessels in a bioremodelable hydrogel (type I collagen). The protocol uses microfabrication to enable user-defined geometries of the vascular network and microfluidic perfusion to control mass transfer and hemodynamic forces. These microvascular networks (μVNs) allow for multiweek cultures of endothelial cells or cocultures with parenchymal or tissue cells in the extra-lumen space. The platform enables real-time fluorescence imaging of living engineered tissues, in situ confocal fluorescence of fixed cultures and transmission electron microscopy (TEM) imaging of histological sections. This protocol enables studies of basic vascular and blood biology, provides a model for diseases such as tumor angiogenesis or thrombosis and serves as a starting point for constructing prevascularized tissues for regenerative medicine. After one-time microfabrication steps, the system can be assembled in less than 1 d and experiments can run for weeks.

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Year:  2013        PMID: 23989676     DOI: 10.1038/nprot.2013.110

Source DB:  PubMed          Journal:  Nat Protoc        ISSN: 1750-2799            Impact factor:   13.491


  43 in total

1.  Molding of three-dimensional microstructures of gels.

Authors:  Min D Tang; Andrew P Golden; Joe Tien
Journal:  J Am Chem Soc       Date:  2003-10-29       Impact factor: 15.419

2.  Reconstituted rattail collagen used as substrate for tissue cultures on coverslips in Maximow slides and roller tubes.

Authors:  M B BORNSTEIN
Journal:  Lab Invest       Date:  1958 Mar-Apr       Impact factor: 5.662

Review 3.  Engineering principles of clinical cell-based tissue engineering.

Authors:  George F Muschler; Chizu Nakamoto; Linda G Griffith
Journal:  J Bone Joint Surg Am       Date:  2004-07       Impact factor: 5.284

Review 4.  Microfluidic models of vascular functions.

Authors:  Keith H K Wong; Juliana M Chan; Roger D Kamm; Joe Tien
Journal:  Annu Rev Biomed Eng       Date:  2012-04-23       Impact factor: 9.590

5.  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

6.  A microfluidic biomaterial.

Authors:  Mario Cabodi; Nak Won Choi; Jason P Gleghorn; Christopher S D Lee; Lawrence J Bonassar; Abraham D Stroock
Journal:  J Am Chem Soc       Date:  2005-10-12       Impact factor: 15.419

7.  Formation of perfused, functional microvascular tubes in vitro.

Authors:  Kenneth M Chrobak; Daniel R Potter; Joe Tien
Journal:  Microvasc Res       Date:  2006-05       Impact factor: 3.514

8.  Tissue engineering: Blood vessels on a chip.

Authors:  Claudio Franco; Holger Gerhardt
Journal:  Nature       Date:  2012-08-23       Impact factor: 49.962

Review 9.  Tissue engineering.

Authors:  R Langer; J P Vacanti
Journal:  Science       Date:  1993-05-14       Impact factor: 47.728

10.  Prevascularization of porous biodegradable polymers.

Authors:  A G Mikos; G Sarakinos; M D Lyman; D E Ingber; J P Vacanti; R Langer
Journal:  Biotechnol Bioeng       Date:  1993-09-05       Impact factor: 4.530

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  65 in total

Review 1.  Tumour-on-a-chip: microfluidic models of tumour morphology, growth and microenvironment.

Authors:  Hsieh-Fu Tsai; Alen Trubelja; Amy Q Shen; Gang Bao
Journal:  J R Soc Interface       Date:  2017-06       Impact factor: 4.118

Review 2.  Integrated micro/nanoengineered functional biomaterials for cell mechanics and mechanobiology: a materials perspective.

Authors:  Yue Shao; Jianping Fu
Journal:  Adv Mater       Date:  2013-12-12       Impact factor: 30.849

Review 3.  Strategies for improving the physiological relevance of human engineered tissues.

Authors:  Rosalyn D Abbott; David L Kaplan
Journal:  Trends Biotechnol       Date:  2015-04-30       Impact factor: 19.536

4.  State-of-the-Art Methods for Evaluation of Angiogenesis and Tissue Vascularization: A Scientific Statement From the American Heart Association.

Authors:  Michael Simons; Kari Alitalo; Brian H Annex; Hellmut G Augustin; Craig Beam; Bradford C Berk; Tatiana Byzova; Peter Carmeliet; William Chilian; John P Cooke; George E Davis; Anne Eichmann; M Luisa Iruela-Arispe; Eli Keshet; Albert J Sinusas; Christiana Ruhrberg; Y Joseph Woo; Stefanie Dimmeler
Journal:  Circ Res       Date:  2015-04-30       Impact factor: 17.367

5.  Detecting the functional complexities between high-density lipoprotein mimetics.

Authors:  Yoshitaka J Sei; Jungho Ahn; Taeyoung Kim; Eunjung Shin; Angel J Santiago-Lopez; Seung Soon Jang; Noo Li Jeon; Young C Jang; YongTae Kim
Journal:  Biomaterials       Date:  2018-04-06       Impact factor: 12.479

Review 6.  Cancer metabolism gets physical.

Authors:  Peter DelNero; Benjamin D Hopkins; Lewis C Cantley; Claudia Fischbach
Journal:  Sci Transl Med       Date:  2018-05-23       Impact factor: 17.956

7.  Multicellular Vascularized Engineered Tissues through User-Programmable Biomaterial Photodegradation.

Authors:  Christopher K Arakawa; Barry A Badeau; Ying Zheng; Cole A DeForest
Journal:  Adv Mater       Date:  2017-07-24       Impact factor: 30.849

8.  Collagen-based brain microvasculature model in vitro using three-dimensional printed template.

Authors:  Jeong Ah Kim; Hong Nam Kim; Sun-Kyoung Im; Seok Chung; Ji Yoon Kang; Nakwon Choi
Journal:  Biomicrofluidics       Date:  2015-04-15       Impact factor: 2.800

Review 9.  Microvascular platforms for the study of platelet-vessel wall interactions.

Authors:  Ying Zheng; Junmei Chen; José A López
Journal:  Thromb Res       Date:  2014-01-07       Impact factor: 3.944

10.  Biomimetic on-a-chip platforms for studying cancer metastasis.

Authors:  Esak Lee; H-H Greco Song; Christopher S Chen
Journal:  Curr Opin Chem Eng       Date:  2015-12-18       Impact factor: 5.163

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