In Vitro Human Tissues via Multi-material 3-D Bioprinting

Author:

Kolesky David B.1,Homan Kimberly A.1,Skylar-Scott Mark1,Lewis Jennifer A.1

Affiliation:

1. Wyss Institute for Biologically Inspired Engineering and Paulson School of Engineering and Applied Sciences, Harvard University, Cambridge, MA, USA

Abstract

This paper highlights the foundational research on multi-material 3-D bioprinting of human tissues, for which the Lewis Bioprinting team at Harvard University was awarded the 2017 Lush Science Prize. The team's bioprinting platform enables the rapid fabrication of 3-D human tissues that contain all of the essential components found in their in vivo counterparts: cells, vasculature (or other tubular features) and extracellular matrix. The printed 3-D tissues are housed within a customised perfusion system and are subjected to controlled microphysiological environments over long durations (days to months). As exemplars, the team created a thick, stem cell-laden vascularised tissue that was controllably differentiated toward an osteogenic lineage in situ, and a 3-D kidney tissue that recapitulated the proximal tubule, a sub-unit of the nephron responsible for solute reabsorption. This highly versatile platform for manufacturing 3D human tissue in vitro opens new avenues for replacing animal models used to develop next-generation therapies, test toxicity and study disease pathology.

Publisher

SAGE Publications

Subject

Medical Laboratory Technology,Toxicology,General Biochemistry, Genetics and Molecular Biology,General Medicine

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