Skip to search boxSkip to navigationSkip to main content

Digitally Tunable Microfluidic Bioprinting of Multilayered Cannular Tissues

  • Qingmeng Pi
    ,
  • Sushila Maharjan
    ,
  • Xiang Yan
    ,
  • Xiao Liu
    ,
  • Bijay Singh
    ,
  • Anne Metje van Genderen
  • Instituto Tecnologico de Estudios Superiores de Monterrey
Research Output:
Contribution to journal
Article
Peer-review

Publication metrics

Metrics

Scopus
Citations
SciVal
FWCI
9.03
SciVal
Author count
17
SciVal
Citations
289
SciVal
Paper percentile
99
SciVal
Top percentile
1

Abstract

Despite advances in the bioprinting technology, biofabrication of circumferentially multilayered tubular tissues or organs with cellular heterogeneity, such as blood vessels, trachea, intestine, colon, ureter, and urethra, remains a challenge. Herein, a promising multichannel coaxial extrusion system (MCCES) for microfluidic bioprinting of circumferentially multilayered tubular tissues in a single step, using customized bioinks constituting gelatin methacryloyl, alginate, and eight-arm poly(ethylene glycol) acrylate with a tripentaerythritol core, is presented. These perfusable cannular constructs can be continuously tuned up from monolayer to triple layers at regular intervals across the length of a bioprinted tube. Using customized bioink and MCCES, bioprinting of several tubular tissue constructs using relevant cell types with adequate biofunctionality including cell viability, proliferation, and differentiation is demonstrated. Specifically, cannular urothelial tissue constructs are bioprinted, using human urothelial cells and human bladder smooth muscle cells, as well as vascular tissue constructs, using human umbilical vein endothelial cells and human smooth muscle cells. These bioprinted cannular tissues can be actively perfused with fluids and nutrients to promote growth and proliferation of the embedded cell types. The fabrication of such tunable and perfusable circumferentially multilayered tissues represents a fundamental step toward creating human cannular tissues.

Publication Information

Output type

Research Output:
Contribution to journal
Article
Peer-review

Original language

English

Article number

1706913

Pages from-to (Number of pages)

Pages e1706913

Journal (Volume, Issue Number)

Advanced Materials (Volume 30, Issue 43)

Publication milestones

  • Published - 25/10/2018

Publication status

Published - 25/10/2018

ISSN

0935-9648

Publication IDs

  • Scopus: 85052655943
  • PubMed: 30136318

Funding Details

FundersFunding numbers
American Fund for Alternatives to Animal Research
-
New England Anti-Vivisection Society
-
Tecnologico de Monterrey
-
Young Overseas High-level Talents Introduction Plan
-
NIH
AR057837, AR068258, EB021857, DE021468, EB022403, AR066193, EB024403, HL137193, EB021148
NIH
-
NCI
K99CA201603
NCI
-
MIT
-
SNF
-
NSFC
81772712, 31570947
NSFC
-
CONACYT
291018-173853
CONACYT
-
Natural Science Foundation of Fujian Province
2018J06003
Natural Science Foundation of Fujian Province
-
CSC
201406235036
CSC
-
ITESM
-
NKRDPC
2018YFA0209500, 21621091, 21673197
NKRDPC
-
Higher Education Discipline Innovation Project
B16029
Higher Education Discipline Innovation Project
-