Literature DB >> 31470437

In vitro and in vivo evaluation of 3D bioprinted small-diameter vasculature with smooth muscle and endothelium.

Haitao Cui1, Wei Zhu, Yimin Huang, Chengyu Liu, Zu-Xi Yu, Margaret Nowicki, Shida Miao, Yilong Cheng, Xuan Zhou, Se-Jun Lee, Yifu Zhou, Suna Wang, Muhammad Mohiuddin, Keith Horvath, Lijie Grace Zhang.   

Abstract

The ability to fabricate perfusable, small-diameter vasculature is a foundational step toward generating human tissues/organs for clinical applications. Currently, it is highly challenging to generate vasculature integrated with smooth muscle and endothelium that replicates the complexity and functionality of natural vessels. Here, a novel method for directly printing self-standing, small-diameter vasculature with smooth muscle and endothelium is presented through combining tailored mussel-inspired bioink and unique 'fugitive-migration' tactics, and its effectiveness and advantages over other methods (i.e. traditional alginate/calcium hydrogel, post-perfusion of endothelial cells) are demonstrated. The biologically inspired, catechol-functionalized, gelatin methacrylate (GelMA/C) undergoes rapid oxidative crosslinking in situ to form an elastic hydrogel, which can be engineered with controllable mechanical strength, high cell/tissue adhesion, and excellent bio-functionalization. The results demonstrate the bioprinted vascular construct possessed numerous favorable, biomimetic characteristics such as proper biomechanics, higher tissue affinity, vascularized tissue manufacturing ability, beneficial perfusability and permeability, excellent vasculoactivity, and in vivo autonomous connection (∼2 weeks) as well as vascular remodeling (∼6 weeks). The advanced achievements in creating biomimetic, functional vasculature illustrate significant potential toward generating a complicated vascularized tissue/organ for clinical transplantation.

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Year:  2019        PMID: 31470437      PMCID: PMC6803062          DOI: 10.1088/1758-5090/ab402c

Source DB:  PubMed          Journal:  Biofabrication        ISSN: 1758-5082            Impact factor:   9.954


  62 in total

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Review 2.  Vascularization in tissue engineering.

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Journal:  Trends Biotechnol       Date:  2008-06-26       Impact factor: 19.536

Review 3.  Effects of shear stress on endothelial cells: go with the flow.

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Journal:  Acta Physiol (Oxf)       Date:  2016-06-19       Impact factor: 6.311

4.  Three-dimensional bioprinting of thick vascularized tissues.

Authors:  David B Kolesky; Kimberly A Homan; Mark A Skylar-Scott; Jennifer A Lewis
Journal:  Proc Natl Acad Sci U S A       Date:  2016-03-07       Impact factor: 11.205

5.  Three-Dimensional-Bioprinted Dopamine-Based Matrix for Promoting Neural Regeneration.

Authors:  Xuan Zhou; Haitao Cui; Margaret Nowicki; Shida Miao; Se-Jun Lee; Fahed Masood; Brent T Harris; Lijie Grace Zhang
Journal:  ACS Appl Mater Interfaces       Date:  2018-03-01       Impact factor: 9.229

6.  Hierarchical Fabrication of Engineered Vascularized Bone Biphasic Constructs via Dual 3D Bioprinting: Integrating Regional Bioactive Factors into Architectural Design.

Authors:  Haitao Cui; Wei Zhu; Margaret Nowicki; Xuan Zhou; Ali Khademhosseini; Lijie Grace Zhang
Journal:  Adv Healthc Mater       Date:  2016-07-07       Impact factor: 9.933

7.  Creating perfused functional vascular channels using 3D bio-printing technology.

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Journal:  Biomaterials       Date:  2014-06-23       Impact factor: 12.479

8.  Collagen synthesis in cultured aortic smooth muscle cells. Modulation by collagen lattice culture, transforming growth factor-beta 1, and epidermal growth factor.

Authors:  W Schlumberger; M Thie; J Rauterberg; H Robenek
Journal:  Arterioscler Thromb       Date:  1991 Nov-Dec

9.  Vascular Tissue Engineering: Building Perfusable Vasculature for Implantation.

Authors:  Liqiong Gui; Laura E Niklason
Journal:  Curr Opin Chem Eng       Date:  2014-02-01       Impact factor: 5.163

10.  Biodegradable scaffold with built-in vasculature for organ-on-a-chip engineering and direct surgical anastomosis.

Authors:  Boyang Zhang; Miles Montgomery; M Dean Chamberlain; Shinichiro Ogawa; Anastasia Korolj; Aric Pahnke; Laura A Wells; Stéphane Massé; Jihye Kim; Lewis Reis; Abdul Momen; Sara S Nunes; Aaron R Wheeler; Kumaraswamy Nanthakumar; Gordon Keller; Michael V Sefton; Milica Radisic
Journal:  Nat Mater       Date:  2016-03-07       Impact factor: 43.841

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  18 in total

Review 1.  Biomaterials for Bioprinting Microvasculature.

Authors:  Ryan W Barrs; Jia Jia; Sophia E Silver; Michael Yost; Ying Mei
Journal:  Chem Rev       Date:  2020-09-01       Impact factor: 60.622

Review 2.  Bioprinted microvasculature: progressing from structure to function.

Authors:  Alexis J Seymour; Ashley D Westerfield; Vincent C Cornelius; Mark A Skylar-Scott; Sarah C Heilshorn
Journal:  Biofabrication       Date:  2022-02-23       Impact factor: 9.954

Review 3.  Systematic review on the application of 3D-bioprinting technology in orthoregeneration: current achievements and open challenges.

Authors:  Rachel L Pan; Kari Martyniak; Makan Karimzadeh; David G Gelikman; Jonathan DeVries; Kelly Sutter; Melanie Coathup; Mehdi Razavi; Rajendra Sawh-Martinez; Thomas J Kean
Journal:  J Exp Orthop       Date:  2022-09-19

Review 4.  Recent advances in bioprinting technologies for engineering cardiac tissue.

Authors:  Tarun Agarwal; Gabriele Maria Fortunato; Sung Yun Hann; Bugra Ayan; Kiran Yellappa Vajanthri; Dario Presutti; Haitao Cui; Alex H P Chan; Marco Costantini; Valentina Onesto; Concetta Di Natale; Ngan F Huang; Pooyan Makvandi; Majid Shabani; Tapas Kumar Maiti; Lijie Grace Zhang; Carmelo De Maria
Journal:  Mater Sci Eng C Mater Biol Appl       Date:  2021-03-25

5.  4D physiologically adaptable cardiac patch: A 4-month in vivo study for the treatment of myocardial infarction.

Authors:  Haitao Cui; Chengyu Liu; Timothy Esworthy; Yimin Huang; Zu-Xi Yu; Xuan Zhou; Hong San; Se-Jun Lee; Sung Yun Hann; Manfred Boehm; Muhammad Mohiuddin; John P Fisher; Lijie Grace Zhang
Journal:  Sci Adv       Date:  2020-06-24       Impact factor: 14.136

Review 6.  Building Scaffolds for Tubular Tissue Engineering.

Authors:  Alexander J Boys; Sarah L Barron; Damyan Tilev; Roisin M Owens
Journal:  Front Bioeng Biotechnol       Date:  2020-12-10

Review 7.  Vascular Tissue Engineering: Polymers and Methodologies for Small Caliber Vascular Grafts.

Authors:  Bruna B J Leal; Naohiro Wakabayashi; Kyohei Oyama; Hiroyuki Kamiya; Daikelly I Braghirolli; Patricia Pranke
Journal:  Front Cardiovasc Med       Date:  2021-01-11

8.  Printability, Durability, Contractility and Vascular Network Formation in 3D Bioprinted Cardiac Endothelial Cells Using Alginate-Gelatin Hydrogels.

Authors:  Christopher David Roche; Poonam Sharma; Anthony Wayne Ashton; Chris Jackson; Meilang Xue; Carmine Gentile
Journal:  Front Bioeng Biotechnol       Date:  2021-02-26

Review 9.  Complex 3D bioprinting methods.

Authors:  Shen Ji; Murat Guvendiren
Journal:  APL Bioeng       Date:  2021-03-11

10.  3D bioprinting of bicellular liver lobule-mimetic structures via microextrusion of cellulose nanocrystal-incorporated shear-thinning bioink.

Authors:  Yun Wu; Andrew Wenger; Hossein Golzar; Xiaowu Shirley Tang
Journal:  Sci Rep       Date:  2020-11-26       Impact factor: 4.379

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