2021
DOI: 10.1088/1758-5090/abff12
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A microphysiological system combining electrospun fibers and electrical stimulation for the maturation of highly anisotropic cardiac tissue

Abstract: The creation of cardiac tissue models for preclinical testing is still a non-solved problem in drug discovery, due to the limitations related to the in vitro replication of cardiac tissue complexity. Among these limitations, the difficulty of mimicking the functional properties of the myocardium due to the immaturity of the used cells hampers the obtention of reliable results that could be translated into human patients. In vivo models are the current gold standard to test new treatments, although it is widely… Show more

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Cited by 21 publications
(12 citation statements)
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References 77 publications
(142 reference statements)
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“…Finally, the wafers were silanized for 1 h with tri uorosilane. The PDMS replicas were obtained using the well-established method of soft lithography [42]. PDMS was mixed in a ratio 10:1 (base:crosslinking agent), poured into the mold and cured for 2 h at 65°C.…”
Section: Fabrication Of the Micro Uidic Devicementioning
confidence: 99%
“…Finally, the wafers were silanized for 1 h with tri uorosilane. The PDMS replicas were obtained using the well-established method of soft lithography [42]. PDMS was mixed in a ratio 10:1 (base:crosslinking agent), poured into the mold and cured for 2 h at 65°C.…”
Section: Fabrication Of the Micro Uidic Devicementioning
confidence: 99%
“…We perform the experiments using the angiogenesis platform design represented in Fig. 1, which has been inspired by the microfluidic platform used in previously published experiments 28,29 . Deposits of each side of the channel have different concentrations of chemotactic factors generating a gradient across the ECM.…”
Section: Methodsmentioning
confidence: 99%
“…The experiments have been inspired by the microfluidic platform used in previously published experiments 28,29 . The microfluidic platform design (see Fig.…”
Section: Microfluidic Assay and Cell Culture Preparationmentioning
confidence: 99%
“…e heart muscle is a hyper specific tissue characterized by a continuous cycle of ion polarization and depolarization in which electrical signals are converted to synchronous fiber contractions, implying that the spontaneous beating behavior is controlled by a network of electrical conductors within the heart tissue [14]. Due to the relative inertia of the fibrous scar formed after myocardial ischemia damage to electrical signals, the complex coordination of action potential and calcium signaling will halt, resulting in further deterioration of heart function.…”
Section: Introductionmentioning
confidence: 99%