A new type of tissue model that more accurately mimics the architecture of the liver could help develop drugs to treat MASLD.
3D bio-printed liver model and high-content imaging for evaluating the toxicity effects of compounds
The effectiveness of non-clinical drug safety predictions is enhanced by the adoption of three-dimensional (3D) cellular models. 3D bioprinting enables the generation of complex models with spatial ...
More than 100 million people in the United States suffer from metabolic dysfunction-associated steatotic liver disease (MASLD ...
Austin, Texas, Jan. 19, 2026 (GLOBE NEWSWIRE) -- Human Liver Model Market Size & Growth Analysis: As per SNS Insider, the Human Liver Model Market was valued at USD 1.21 billion in 2025 and is ...
The liver is the body's control tower for metabolism, powering vital functions like converting nutrients to glucose, storing fat and breaking down toxins. Over a third of the world, however, is ...
The liver has a unique structure, especially at the level of individual cells. Hepatocytes, the main liver cells, release bile into tiny channels called bile canaliculi, which drain into the bile duct ...
The liver has a unique structure, especially at the level of individual cells. Hepatocytes, the main liver cells, release bile into tiny channels called bile canaliculi, which drain into the bile duct ...
In a bid to gain further understanding of the etiology and pathogenesis of metabolic dysfunction–associated steatohepatitis (MASH), a team of researchers has created 3D bioprinted liver models. MASH, ...
Human periportal assembloid, showcasing the three key cell types of the liver: portal fibroblasts (magenta), cholangiocytes (green), and hepatocyte nuclei (blue). All cell borders are delineated in ...
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