[HTML][HTML] Evolution of biochip technology: A review from lab-on-a-chip to organ-on-a-chip

N Azizipour, R Avazpour, DH Rosenzweig, M Sawan… - Micromachines, 2020 - mdpi.com
Following the advancements in microfluidics and lab-on-a-chip (LOC) technologies, a novel
biomedical application for microfluidic based devices has emerged in recent years and …

Microfluidic organs-on-chips

SN Bhatia, DE Ingber - Nature biotechnology, 2014 - nature.com
An organ-on-a-chip is a microfluidic cell culture device created with microchip manufacturing
methods that contains continuously perfused chambers inhabited by living cells arranged to …

Organ‐on‐a‐chip platforms: a convergence of advanced materials, cells, and microscale technologies

S Ahadian, R Civitarese, D Bannerman… - Advanced …, 2018 - Wiley Online Library
Significant advances in biomaterials, stem cell biology, and microscale technologies have
enabled the fabrication of biologically relevant tissues and organs. Such tissues and organs …

Physical influences of the extracellular environment on cell migration

G Charras, E Sahai - Nature reviews Molecular cell biology, 2014 - nature.com
The way in which a cell migrates is influenced by the physical properties of its surroundings,
in particular the properties of the extracellular matrix. How the physical aspects of the cell's …

[HTML][HTML] Microfluidic 3D cell culture: from tools to tissue models

V Van Duinen, SJ Trietsch, J Joore, P Vulto… - Current opinion in …, 2015 - Elsevier
Highlights•Comprehensive review of advances in microfluidic 3D cell culture since
2012.•Increased physiological relevance by precise control of cellular microenvironment.• …

Immunotherapy discovery on tumor organoid-on-a-chip platforms that recapitulate the tumor microenvironment

J Zhang, H Tavakoli, L Ma, X Li, L Han, XJ Li - Advanced drug delivery …, 2022 - Elsevier
Cancer immunotherapy has achieved remarkable success over the past decade by
modulating patients' own immune systems and unleashing pre-existing immunity. However …

[HTML][HTML] Mimicking arterial thrombosis in a 3D-printed microfluidic in vitro vascular model based on computed tomography angiography data

PF Costa, HJ Albers, JEA Linssen, HHT Middelkamp… - Lab on a Chip, 2017 - pubs.rsc.org
Arterial thrombosis is the main instigating factor of heart attacks and strokes, which result in
over 14 million deaths worldwide every year. The mechanism of thrombosis involves factors …

Microfluidics: a new tool for modeling cancer–immune interactions

A Boussommier-Calleja, R Li, MB Chen, SC Wong… - Trends in cancer, 2016 - cell.com
In recognition of the enormous potential of immunotherapies against cancer, research into
the interactions between tumor and immune cells has accelerated, leading to the recent FDA …

[HTML][HTML] Development, characterization, and applications of multi-material stereolithography bioprinting

B Grigoryan, DW Sazer, A Avila, JL Albritton… - Scientific Reports, 2021 - nature.com
As a 3D bioprinting technique, hydrogel stereolithography has historically been limited in its
ability to capture the spatial heterogeneity that permeates mammalian tissues and dictates …

[HTML][HTML] In Vitro Model of Tumor Cell Extravasation

JS Jeon, IK Zervantonakis, S Chung, RD Kamm… - PloS one, 2013 - journals.plos.org
Tumor cells that disseminate from the primary tumor and survive the vascular system can
eventually extravasate across the endothelium to metastasize at a secondary site. In this …