We present a wafer-scale fabricated, PDMS-based platform for culturing miniaturized engineered heart tissues (EHTs) which allows highly accurate measurements of the contractile properties of these tissues. The design of the platform is an anisometrically downscaled version of the Heart-Dyno system, consisting of two elastic micropillars inside an elliptic microwell with volume ranging from 3 down to 1μL which supports EHT formation. Size downscaling facilitates fabrication of the platform and makes it compatible with accurate and highly reproducible batch wafer-scale processing; furthermore, downscaling reduces the cost of cell cultures and increases assay throughput. After fabrication, the devices were characterized by nanoindentation to a...
Tissue engineering approaches have the potential to increase the physiologic relevance of human iPS-...
Engineered myocardial tissues can be used to elucidate fundamental features of myocardial biology, d...
We present the design of a higher throughput “heart on a chip” which utilizes a semi-automated fabri...
We present a wafer-scale fabricated, PDMS-based platform for culturing miniaturized engineered heart...
We present a wafer-scale fabricated, PDMS-based platform for culturing miniaturized engineered heart...
We present a wafer-scale fabricated, PDMS-based platform for culturing miniaturized engineered heart...
We presented the smallest and best characterised EHT devices to date. The devices were fabricated by...
There are the growing interests in microphysiological systems (MPS), also known as organs-on-chips, ...
There are the growing interests in microphysiological systems (MPS), also known as organs-on-chips, ...
Cardiac cells derived from stem cells exhibit cellular contractions when cultured in vitro. They can...
Cardiomyocytes derived from human pluripotent stem cells (hPSC-CMs) hold a great potential as human ...
recent induced pluripotent stem cell technology, disease modeling, but available techniques are unsu...
Cardiomyocytes derived from human pluripotent stem cells (hPSC-CMs) hold a great potential as human ...
Cardiomyocytes derived from human pluripotent stem cells (hPSC-CMs) hold a great potential as human ...
Tissue engineering approaches have the potential to increase the physiologic relevance of human iPS-...
Tissue engineering approaches have the potential to increase the physiologic relevance of human iPS-...
Engineered myocardial tissues can be used to elucidate fundamental features of myocardial biology, d...
We present the design of a higher throughput “heart on a chip” which utilizes a semi-automated fabri...
We present a wafer-scale fabricated, PDMS-based platform for culturing miniaturized engineered heart...
We present a wafer-scale fabricated, PDMS-based platform for culturing miniaturized engineered heart...
We present a wafer-scale fabricated, PDMS-based platform for culturing miniaturized engineered heart...
We presented the smallest and best characterised EHT devices to date. The devices were fabricated by...
There are the growing interests in microphysiological systems (MPS), also known as organs-on-chips, ...
There are the growing interests in microphysiological systems (MPS), also known as organs-on-chips, ...
Cardiac cells derived from stem cells exhibit cellular contractions when cultured in vitro. They can...
Cardiomyocytes derived from human pluripotent stem cells (hPSC-CMs) hold a great potential as human ...
recent induced pluripotent stem cell technology, disease modeling, but available techniques are unsu...
Cardiomyocytes derived from human pluripotent stem cells (hPSC-CMs) hold a great potential as human ...
Cardiomyocytes derived from human pluripotent stem cells (hPSC-CMs) hold a great potential as human ...
Tissue engineering approaches have the potential to increase the physiologic relevance of human iPS-...
Tissue engineering approaches have the potential to increase the physiologic relevance of human iPS-...
Engineered myocardial tissues can be used to elucidate fundamental features of myocardial biology, d...
We present the design of a higher throughput “heart on a chip” which utilizes a semi-automated fabri...