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Challenges remain in engineering cardiac tissues with functional and morphological properties similar to those of native myocardium.
Another biomimetic approach is to develop nanoscopic biodegradable scaffolds as cell delivery vehicles that have structural and morphological properties similar to those of native extracellular matrix, thereby mimicking the cells' natural environment while providing structural stability [ 13].
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Despite differences in DECM tissue type, composite scaffolds demonstrated similar morphological properties and facilitated similar cell viability and morphology in vitro.
The present study advances one important aspect of this effort by establishing a Drosophila tripartite synapse model exhibiting morphological and functional properties similar to those of mammalian tripartite synapses.
Here we report a Drosophila tripartite synapse model which exhibits morphological and functional properties similar to those of mammalian synapses, including glial regulation of extracellular glutamate, synaptically-induced glial calcium transients and glial coupling of synapses with tracheal structures mediating gas exchange.
The aim of cardiac tissue engineering is to create artificial tissue with morphological and functional properties similar to native myocardium [ 89] which can be used as model in developmental biology studies and drug screening [ 90], as model for developing functional tissue replacement for heart failure patients [ 91, 92], or for modelling cardiac disorders with complex etiology.
Atomic force microscopy images of the SAMs on TS gold surfaces indicate that the films have similar morphological properties regardless of mixing ratio.
Similar morphological properties were obtained in 29 other biocytin-labeled cerebellar BCs.
These cardiomyocytes exhibit morphological, molecular, and electrophysiological properties similar to adult cardiomyocytes [ 46], and display quantifiable responses to physiological stimuli reminiscent of atrial, ventricular, and pacemaker/conduction tissue [ 47- 50].
On the other hand, the same strains of bacteria on HDPE surface adsorbed with BSA produce biofilms which have similar adhesive and morphological properties.
2 Parts of speech are linguistic categories of words, which are characterised by similar (syntactic and morphological) properties and distribution in the sentence.
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