arrow
Return

Using Remote Fields for Complex Tissue Engineering

delete2020-03-01
delete71
delete
OA
AI
J
James P. K. Armstrong
M
Molly M. Stevens *
DOI:10.1016/j.tibtech.2019.07.005delete
deleteOriginal
deleteShare
deleteSave
View PDF
Abstract

Abstract

En 中文
Great strides have been taken towards the in vitro engineering of clinically relevant tissue constructs using the classic triad of cells, materials, and biochemical factors. In this perspective, we highlight ways in which these elements can be manipulated or stimulated using a fourth component: the application of remote fields. This arena has gained great momentum over the last few years, with a recent surge of interest in using magnetic, optical, and acoustic fields to guide the organization of cells, materials, and biochemical factors. We summarize recent developments and trends in this arena and then lay out a series of challenges that we believe, if met, could enable the widespread adoption of remote fields in mainstream tissue engineering.
Keywords:
COLLAGEN HYDROGELS
GENE-EXPRESSION
GROWTH-FACTOR
TECHNOLOGIES
CELLS
AI Summary

AI Summary

Key information extracted from the uploaded paper, including a brief overview, abstract, background, key highlights, visual analysis, and future outlook.

Journal

Trends in Biotechnology cover
Trends in Biotechnology
IF:
14.9
Papers:
3.8K
Citations:
2.0W

Organization

I
Imperial College London
Scholars:
8.3W
Papers: 7.3W
Citations: 11.1W
Cited Papers

Cited Papers

errShare
errSave
Acoustic Fabrication via the Assembly and Fusion of Particles
err2017-12-04
err132
PREAI
errMelde, Kai; Choi, Eunjin; Wu, Zhiguang; Palagi, Stefano; Qiu, Tian; Fischer, Peer
errShare
errSave
Remote regulation of glucose homeostasis in mice using genetically encoded nanoparticles
err2014-12-15
err202
errOAAI
errStanley, Sarah A.; Sauer, Jeremy; Kane, Ravi S.; Dordick, Jonathan S.; Friedman, Jeffrey M.
errShare
errSave
Engineering Anisotropic Muscle Tissue using Acoustic Cell Patterning
err2018-09-12
err160
errOAAI
errArmstrong, James P. K.; Puetzer, Jennifer L.; Serio, Andrea; Guex, Anne Geraldine; Kapnisi, Michaella; Breant, Alexandre; Zong, Yifan; Assal, Valentine; Skaalure, Stacey C.; King, Oisin; Murty, Tara; Meinert, Christoph; Franklin, Amanda C.; Bassindale, Philip G.; Nichols, Madeleine K.; Terracciano, Cesare M.; Hutmacher, Dietmar W.; Drinkwater, Bruce W.; Klein, Travis J.; Perriman, Adam W.; Stevens, Molly M.
errShare
errSave
Melt Electrospinning Writing of Poly-Hydroxymethylglycolide-co-ε-Caprolactone-Based Scaffolds for Cardiac Tissue Engineering
err2017-07-12
err157
errOAAI
errCastilho, Miguel; Feyen, Dries; Flandes-Iparraguirre, Maria; Hochleitner, Gernot; Groll, Juergen; Doevendans, Pieter A. F.; Vermonden, Tina; Ito, Keita; Sluijter, Joost P. G.; Malda, Jos
errShare
errSave
Glycosylated superparamagnetic nanoparticle gradients for osteochondral tissue engineering
err2018-09-01
err93
errOAAI
errLi, Chunching; Armstrong, James P. K.; Pence, Isaac J.; Kit-Anan, Worrapong; Puetzer, Jennifer L.; Carreira, Sara Correia; Moore, Axel C.; Stevens, Molly M.
errShare
errSave
Spatiotemporal quantification of acoustic cell patterning using Voronoi tessellation
err2019-01-01
err32
errOAAI
errArmstrong, James P. K.; Maynard, Stephanie A.; Pence, Isaac J.; Franklin, Amanda C.; Drinkwater, Bruce W.; Stevens, Molly M.
errShare
errSave
Bioacoustic-enabled patterning of human iPSC-derived cardiomyocytes into 3D cardiac tissue
err2017-07-01
err96
errOAAI
errSerpooshan, Vahid; Chen, Pu; Wu, Haodi; Lee, Soah; Sharma, Arun; Hu, Daniel A.; Venkatraman, Sneha; Ganesan, Adarsh Venkataraman; Usta, Osman Berk; Yarmush, Martin; Yang, Fan; Wu, Joseph C.; Demirci, Utkan; Wu, Sean M.
errShare
errSave
researcher View more