Literature DB >> 29861814

Endothelial cell culture in microfluidic devices for investigating microvascular processes.

Robert G Mannino, Yongzhi Qiu, Wilbur A Lam.   

Abstract

Numerous conditions and disease states such as sickle cell disease, malaria, thrombotic microangiopathy, and stroke significantly impact the microvasculature function and its role in disease progression. Understanding the role of cellular interactions and microvascular hemodynamic forces in the context of disease is crucial to understanding disease pathophysiology. In vivo models of microvascular disease using animal models often coupled with intravital microscopy have long been utilized to investigate microvascular phenomena. However, these methods suffer from some major drawbacks, including the inability to tightly and quantitatively control experimental conditions, the difficulty of imaging multiple microvascular beds within a living organism, and the inability to isolate specific microvascular geometries such as bifurcations. Thus, there exists a need for in vitro microvascular models that can mitigate the drawbacks associated with in vivo systems. To that end, microfluidics has been widely used to develop such models, as it allows for tight control of system inputs, facile imaging, and the ability to develop robust and repeatable systems with well-defined geometries. Incorporating endothelial cells to branching microfluidic models allows for the development of "endothelialized" systems that accurately recapitulate physiological microvessels. In this review, we summarize the field of endothelialized microfluidics, specifically focusing on fabrication methods, limitations, and applications of these systems. We then speculate on future directions and applications of these cutting edge technologies. We believe that this review of the field is of importance to vascular biologists and bioengineers who aim to utilize microfluidic technologies to solve vascular problems.

Entities:  

Year:  2018        PMID: 29861814      PMCID: PMC5953751          DOI: 10.1063/1.5024901

Source DB:  PubMed          Journal:  Biomicrofluidics        ISSN: 1932-1058            Impact factor:   2.800


  58 in total

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Journal:  Biomaterials       Date:  1999-12       Impact factor: 12.479

2.  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
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Review 3.  Biophysical aspects of blood flow in the microvasculature.

Authors:  A R Pries; T W Secomb; P Gaehtgens
Journal:  Cardiovasc Res       Date:  1996-10       Impact factor: 10.787

4.  Motion in microfluidic ratchets.

Authors:  D Caballero; J Katuri; J Samitier; S Sánchez
Journal:  Lab Chip       Date:  2016-11-15       Impact factor: 6.799

5.  Endothelial cell interactions with sickle cell, sickle trait, mechanically injured, and normal erythrocytes under controlled flow.

Authors:  G A Barabino; L V McIntire; S G Eskin; D A Sears; M Udden
Journal:  Blood       Date:  1987-07       Impact factor: 22.113

6.  3D microvascular model recapitulates the diffuse large B-cell lymphoma tumor microenvironment in vitro.

Authors:  Robert G Mannino; Adriana N Santiago-Miranda; Pallab Pradhan; Yongzhi Qiu; Joscelyn C Mejias; Sattva S Neelapu; Krishnendu Roy; Wilbur A Lam
Journal:  Lab Chip       Date:  2017-01-31       Impact factor: 6.799

Review 7.  Molecular basis of erythrocyte adhesion to endothelial cells in diseases.

Authors:  Jean-Luc Wautier; Marie-Paule Wautier
Journal:  Clin Hemorheol Microcirc       Date:  2013       Impact factor: 2.375

8.  In vitro model of tumor cell extravasation.

Authors:  Jessie S Jeon; Ioannis K Zervantonakis; Seok Chung; Roger D Kamm; Joseph L Charest
Journal:  PLoS One       Date:  2013-02-20       Impact factor: 3.240

9.  Bioinspired microfluidic assay for in vitro modeling of leukocyte-endothelium interactions.

Authors:  Giuseppina Lamberti; Balabhaskar Prabhakarpandian; Charles Garson; Ashley Smith; Kapil Pant; Bin Wang; Mohammad F Kiani
Journal:  Anal Chem       Date:  2014-08-05       Impact factor: 6.986

10.  Detection of frequency-dependent endothelial response to oscillatory shear stress using a microfluidic transcellular monitor.

Authors:  Yoshitaka J Sei; Song Ih Ahn; Theodore Virtue; Taeyoung Kim; YongTae Kim
Journal:  Sci Rep       Date:  2017-08-30       Impact factor: 4.379

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  8 in total

1.  Preface to Special Topic: Bio-Transport Processes and Drug Delivery in Physiological Micro-Devices.

Authors:  Netanel Korin; Josué Sznitman
Journal:  Biomicrofluidics       Date:  2018-08-07       Impact factor: 2.800

2.  "Do-it-in-classroom" fabrication of microfluidic systems by replica moulding of pasta structures.

Authors:  Ngan Nguyen; Peter Thurgood; Jiu Yang Zhu; Elena Pirogova; Sara Baratchi; Khashayar Khoshmanesh
Journal:  Biomicrofluidics       Date:  2018-08-20       Impact factor: 2.800

Review 3.  Dissecting the complexities of Alzheimer disease with in vitro models of the human brain.

Authors:  Joel W Blanchard; Matheus B Victor; Li-Huei Tsai
Journal:  Nat Rev Neurol       Date:  2021-11-08       Impact factor: 42.937

Review 4.  Tissue Engineering Approaches to Uncover Therapeutic Targets for Endothelial Dysfunction in Pathological Microenvironments.

Authors:  Dimitris Ntekoumes; Sharon Gerecht
Journal:  Int J Mol Sci       Date:  2022-07-03       Impact factor: 6.208

5.  Bone-on-a-chip: microfluidic technologies and microphysiologic models of bone tissue.

Authors:  Amin Mansoorifar; Ryan Gordon; Raymond Bergan; Luiz E Bertassoni
Journal:  Adv Funct Mater       Date:  2020-10-25       Impact factor: 19.924

6.  Thromboinflammation Model-on-A-Chip by Whole Blood Microfluidics on Fixed Human Endothelium.

Authors:  Alexander Dupuy; Lejla Hagimola; Neil S A Mgaieth; Callum B Houlahan; Renee E Preketes-Tardiani; Paul R Coleman; Freda H Passam
Journal:  Diagnostics (Basel)       Date:  2021-01-29

7.  Multicellular Cell Seeding on a Chip: New Design and Optimization towards Commercialization.

Authors:  Trieu Nguyen; Linh Ho; Sakib M Moinuddin; Tanoy Sarkar; Dipongkor Saha; Fakhrul Ahsan
Journal:  Biosensors (Basel)       Date:  2022-08-01

Review 8.  Microfluidic devices for studying coagulation biology.

Authors:  Brady M Trevisan; Christopher D Porada; Anthony Atala; Graça Almeida-Porada
Journal:  Semin Cell Dev Biol       Date:  2020-06-18       Impact factor: 7.499

  8 in total

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