2019
DOI: 10.1126/sciadv.aaw1317
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Colorectal tumor-on-a-chip system: A 3D tool for precision onco-nanomedicine

Abstract: Awareness that traditional two-dimensional (2D) in vitro and nonrepresentative animal models may not completely emulate the 3D hierarchical complexity of tissues and organs is on the rise. Therefore, posterior translation into successful clinical application is compromised. To address this dearth, on-chip biomimetic microenvironments powered by microfluidic technologies are being developed to better capture the complexity of in vivo pathophysiology. Here, we describe a “tumor-on-a-chip” model for assessment of… Show more

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Cited by 173 publications
(176 citation statements)
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“…View Article Online DOI: 10.1039/C9TB02289A Efforts can be mane also namely to reduce cytotoxicity and enhance transepithelial transport [37], for interaction with coupling molecules such as natural-based polymers [37], fluorescent probes [37], and an inner hydrophobic core where other molecules can be trapped [66,67]. Among the myriad possibilities, dendrimers can also find applications as imaging agents [66,68,69], and scaffolds for TERM [70].…”
Section: Journal Of Materials Chemistry B Accepted Manuscriptmentioning
confidence: 99%
“…View Article Online DOI: 10.1039/C9TB02289A Efforts can be mane also namely to reduce cytotoxicity and enhance transepithelial transport [37], for interaction with coupling molecules such as natural-based polymers [37], fluorescent probes [37], and an inner hydrophobic core where other molecules can be trapped [66,67]. Among the myriad possibilities, dendrimers can also find applications as imaging agents [66,68,69], and scaffolds for TERM [70].…”
Section: Journal Of Materials Chemistry B Accepted Manuscriptmentioning
confidence: 99%
“…After the removal of PMMA sheets, the cell samples in each chamber could be acquired by punching the PDMS layer with a biopsy punch and further transferred into other containers gently. [ 39 ]…”
Section: Figurementioning
confidence: 99%
“…In another example, microfluidic systems were used to study the efficacy of a colorectal cancer treatment, demonstrating increasing cell death up the concentration gradient. [77] This is a valuable tool for determining both effective dose and diffusive properties of drugs. Alternatively, microfluidic devices can model gradients of cytotoxic chemicals and their dosedependent effect on cells.…”
Section: Microfluidicsmentioning
confidence: 99%