3D Microphysiological System- Vascularized Tissue Constructs for Regenerative Medicine
Introduction Human vascular microphysiological systems (MPS) represent promising three-dimensional in vitro models of normal and diseased vascular tissue.
Get a better understanding and prediction for pre-clinical drug trials
Allowing comprehension and predicting of human responses earlier, while also offering ethical alternatives to animal testing.
Introduction Human vascular microphysiological systems (MPS) represent promising three-dimensional in vitro models of normal and diseased vascular tissue.
Introduction Organ-on-a-Chip is a potential, multidisciplinary method for in-vitro modeling of disease, drug screening, and precision medicine
Introduction Biomaterial scaffold like the extracellular matrix (ECM) is the non-cellular component of an organ on
Introduction The supporting vasculature is critical to the development of Adipose Tissue (AT) engineered models. Although it is
Introduction The phrase ‘vascular niche’ refers to a region rich in blood arteries where endothelial cells
Introduction Organ-on-a-chip is regarded as a key new technology for research and drug development because it
Introduction The organization and function of living muscle tissues cannot be fully recapitulated by typical two-dimensional
Introduction Kidney Organoid and Microphysiological Kidney Chip Models, both have their own unique advantages and deficiencies.
Introduction DMS, often known as dimethylpolysiloxane or dimethicone, is a silicone polymer. There are various uses
Introduction Microphysiological systems may predict drug pharmacokinetics, effectiveness and toxicity more accurately in humans. Pharmacokinetics-On-a-Chip: In Vitro Microphysiological Models
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