Innovative precision oncology enabled by micro-organospheres derived from patients
The development of an automatic microfluidics droplet platform to rapidly generate patient-derived models of cancer.
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The development of an automatic microfluidics droplet platform to rapidly generate patient-derived models of cancer.
Why are scientists growing human brain cells in the lab?
Researchers at the UNC School of Medicine have made important strides in the exciting fields of cellular reprogramming and organ regeneration, and their findings could have a substantial impact on the development of future treatments for broken hearts.
Scientists at the UNC School of Medicine have made a significant advance in the promising field of cellular reprogramming and organ regeneration, and the discovery could play a major role in future medicines to heal damaged hearts.
Scientists at the UNC School of Medicine have made a significant advance in the promising field of cellular reprogramming and organ regeneration, and the discovery could play a major role in future medicines to heal damaged hearts.