Advanced models of human skeletal muscle differentiation, development and disease: 3D cultures, organoids and beyond
Introduction The organization and function of living muscle tissues cannot be fully recapitulated by typical two-dimensional
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 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 PDMS, often known as dimethylpolysiloxane or dimethicone, is a silicone polymer. There are various uses
Introduction Drug compounds’ effectiveness, toxicity, and pharmacokinetics may be more accurately predicted in humans with the
Introduction Liver microphysiological platforms for drug metabolism applications are the need of the hour to fix
Introduction Recently, microfluidics and 3D cell culture technologies have merged, to increase the potential of in
Introduction Every organ is composed of a mesenchymal (stroma) and a parenchymal fraction. Conventional two-dimensional (2D)
Introduction The vascular network carries the transportation of materials and nutrients as the fluid delivery mechanism
Introduction – The Organ-on-a-Chip (OOAC) is a leading organ biomimetic (POB) device based on a microfluidic
Introduction Organoids and organs-on-a-chip (vascularized 3d culture) have seen rapid growth in recent years due to
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