Scientists are creating a glioblastoma 'tumor on a chip'—a tiny living system capable of mimicking the key features of the ...
Organoid-on-chip technology merges patient-derived organoids with microfluidic engineering to recreate human physiology and predict drug responses with high precision. This innovation is reshaping ...
Columbia University scientists have engineered a microfluidic chip that sustains living glioblastoma tumor slices, enabling precise drug testing and high-resolution genomic analysis. By controlling ...
Chronic kidney disease (CKD) affects over 800 million people globally and is often diagnosed too late for effective intervention. Early detection depends on accurate measurement of biomarkers such as ...
A vascularized multilayer chip reveals shear stress-induced angiogenesis in diverse fluid conditions
(A) Exploded view and combined view of the multilayer microfluidic chip. (B) Detailed dimensional view of culture medium channels and tissue chambers. (C) Multilayer microfluidic chips fabricated by ...
UW researchers use patient tumor samples and microfluidic “tumor-on-a-chip” devices to model cancer behavior and treatment ...
Researchers developed a microfluidic chip with 3D-printed microstructures that moves droplets precisely, captures cells efficiently, and quickly forms cell spheroids for improved lab-grown tissue ...
Advancements in biosensors, microfluidics, and AI-driven diagnostics accelerate adoption across hospitals and home care, with strong U.S. and Asia-Pacific growth momentum.Austin, United States, April ...
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