Synthetic Biomaterials to Rival Nature's Complexity—a Path Forward with Combinatorics, High‐Throughput Discovery, and High‐Content Analysis
Douglas Zhang, Junmin Lee, Kristopher A. Kilian
Source record
Source: Crossref
Published: Aug 25, 2017
DOI: 10.1002/adhm.201700535
Open original source ↗Source abstract
Abstract Cells in tissue receive a host of soluble and insoluble signals in a context‐dependent fashion, where integration of these cues through a complex network of signal transduction cascades will define a particular outcome. Biomaterials scientists and engineers are tasked with designing materials that can at least partially recreate this complex signaling milieu towards new materials for biomedical applications. In this progress report, recent advances in high throughput techniques and high content imaging approaches that are facilitating the discovery of efficacious biomaterials are described. From microarrays of synthetic polymers, peptides and full‐length proteins, to designer cell culture systems that present multiple biophysical and biochemical cues in tandem, it is discussed how the integration of combinatorics with high content imaging and analysis is essential to extracting biologically meaningful information from large scale cellular screens to inform the design of next generation biomaterials.
Evidence graph
No public relationships recorded yet.
Integrity note: This page is a factual metadata record created by deterministic ingestion. It is not a claim that the work moves a mathematical frontier or has been independently verified.