Literature DB >> 19998330

Micropatterned three-dimensional hydrogel system to study human endothelial-mesenchymal stem cell interactions.

Sasa Trkov1, George Eng, Rosa Di Liddo, Pier Paolo Parnigotto, Gordana Vunjak-Novakovic.   

Abstract

The creation of vascularized engineered tissues of clinically relevant size is a major challenge of tissue engineering. While it is known that endothelial and mural vascular cells are integral to the formation of stable blood vessels, the specific cell types and optimal conditions for engineered vascular networks are poorly understood. To this end, we investigated the vasculogenic potential of human mesenchymal stem cell (MSC) populations derived from three different sources: (a) bone marrow aspirates; (b) perivascular cells from the umbilical cord vein; and (c) perivascular cells from the umbilical cord artery. Cell populations were isolated and identified as MSCs according to their phenotypes and differentiation potential. Human umbilical vein endothelial cells (HUVECs) were used as a standard for endothelial cells. A novel co-culture system was developed to study cell-cell interactions in a spatially controlled three-dimensional (3D) fibrin hydrogel model. Using microfluidic patterning, it was possible to localize hydrogel-encapsulated HUVECs and MSCs within separate channels spaced at 500, 1000 or 2000 microm. All three MSC populations had similar expression profiles of mesenchymal cell markers and similar capacity for osteogenic and adipogenic differentiation. However, bone marrow-derived MSCs (but not umbilical vein or artery derived MSCs) showed strong distance-dependent migration toward HUVECs and supported the formation of stable vascular networks resembling capillary-like vasculature. The presented approach provides a simple and robust model to study the cell-cell communication of relevance to engineering vascularized tissues. Copyright (c) 2009 John Wiley & Sons, Ltd.

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Year:  2010        PMID: 19998330      PMCID: PMC2850966          DOI: 10.1002/term.231

Source DB:  PubMed          Journal:  J Tissue Eng Regen Med        ISSN: 1932-6254            Impact factor:   3.963


  30 in total

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2.  Endothelial cell culture: protocol to obtain and cultivate human umbilical endothelial cells.

Authors:  V Marin; G Kaplanski; S Grès; C Farnarier; P Bongrand
Journal:  J Immunol Methods       Date:  2001-08-01       Impact factor: 2.303

Review 3.  Molecular basis of endothelial cell morphogenesis in three-dimensional extracellular matrices.

Authors:  George E Davis; Kayla J Bayless; Anil Mavila
Journal:  Anat Rec       Date:  2002-11-01

Review 4.  Angiogenesis in health and disease.

Authors:  Peter Carmeliet
Journal:  Nat Med       Date:  2003-06       Impact factor: 53.440

5.  Searching for alternative sources of postnatal human mesenchymal stem cells: candidate MSC-like cells from umbilical cord.

Authors:  Yuri A Romanov; Veronika A Svintsitskaya; Vladimir N Smirnov
Journal:  Stem Cells       Date:  2003       Impact factor: 6.277

Review 6.  Endothelial-pericyte interactions in angiogenesis.

Authors:  Holger Gerhardt; Christer Betsholtz
Journal:  Cell Tissue Res       Date:  2003-07-22       Impact factor: 5.249

7.  Influence of adult mesenchymal stem cells on in vitro vascular formation.

Authors:  J Michael Sorrell; Marilyn A Baber; Arnold I Caplan
Journal:  Tissue Eng Part A       Date:  2009-07       Impact factor: 3.845

8.  Isolation of vascular smooth muscle cells from a single murine aorta.

Authors:  J L Ray; R Leach; J M Herbert; M Benson
Journal:  Methods Cell Sci       Date:  2001

9.  An activated form of transforming growth factor beta is produced by cocultures of endothelial cells and pericytes.

Authors:  A Antonelli-Orlidge; K B Saunders; S R Smith; P A D'Amore
Journal:  Proc Natl Acad Sci U S A       Date:  1989-06       Impact factor: 11.205

10.  Endothelial tubulogenesis within fibrin gels specifically requires the activity of membrane-type-matrix metalloproteinases (MT-MMPs).

Authors:  Marc A Lafleur; Madeleine M Handsley; Vera Knäuper; Gillian Murphy; Dylan R Edwards
Journal:  J Cell Sci       Date:  2002-09-01       Impact factor: 5.285

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  34 in total

Review 1.  Coculture strategies in bone tissue engineering: the impact of culture conditions on pluripotent stem cell populations.

Authors:  Sathyanarayana Janardhanan; Martha O Wang; John P Fisher
Journal:  Tissue Eng Part B Rev       Date:  2012-07-09       Impact factor: 6.389

2.  In Vitro Microscale Models for Embryogenesis.

Authors:  Jennifer Rico-Varela; Dominic Ho; Leo Q Wan
Journal:  Adv Biosyst       Date:  2018-05-07

3.  Dynamic three-dimensional micropatterned cell co-cultures within photocurable and chemically degradable hydrogels.

Authors:  Shinji Sugiura; Jae Min Cha; Fumiki Yanagawa; Pinar Zorlutuna; Hojae Bae; Ali Khademhosseini
Journal:  J Tissue Eng Regen Med       Date:  2013-10-30       Impact factor: 3.963

Review 4.  Concise review: tailoring bioengineered scaffolds for stem cell applications in tissue engineering and regenerative medicine.

Authors:  Steffen Cosson; Ellen A Otte; Hadi Hezaveh; Justin J Cooper-White
Journal:  Stem Cells Transl Med       Date:  2015-01-09       Impact factor: 6.940

5.  A mathematical model predicting the coculture dynamics of endothelial and mesenchymal stem cells for tissue regeneration.

Authors:  Yao Wang; Tomer Bronshtein; Udi Sarig; Evelyne Bao-Vi Nguyen; Freddy Yin Chiang Boey; Subbu S Venkatraman; Marcelle Machluf
Journal:  Tissue Eng Part A       Date:  2013-01-16       Impact factor: 3.845

6.  Assembly of complex cell microenvironments using geometrically docked hydrogel shapes.

Authors:  George Eng; Benjamin W Lee; Hesam Parsa; Curtis D Chin; Jesse Schneider; Gary Linkov; Samuel K Sia; Gordana Vunjak-Novakovic
Journal:  Proc Natl Acad Sci U S A       Date:  2013-03-04       Impact factor: 11.205

7.  Microfluidic organs-on-chips.

Authors:  Sangeeta N Bhatia; Donald E Ingber
Journal:  Nat Biotechnol       Date:  2014-08       Impact factor: 54.908

8.  Gradient Hydrogels.

Authors:  Antonina Lavrentieva
Journal:  Adv Biochem Eng Biotechnol       Date:  2021       Impact factor: 2.635

9.  Slowly degradable porous silk microfabricated scaffolds for vascularized tissue formation.

Authors:  Lindsay S Wray; Konstantinos Tsioris; Eun Seok Gi; Fiorenzo G Omenetto; David L Kaplan
Journal:  Adv Funct Mater       Date:  2013-07-19       Impact factor: 18.808

Review 10.  Endothelial cell micropatterning: methods, effects, and applications.

Authors:  Deirdre E J Anderson; Monica T Hinds
Journal:  Ann Biomed Eng       Date:  2011-07-15       Impact factor: 3.934

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