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12 resultados carregados para "tissue"
Stem cells create humanlike heart valve tissue to model disease and test treatments
Stem cells create humanlike heart valve tissue to model disease and test treatments
Melbourne researchers have created human heart valve tissues from stem cells, providing a powerful new platform to advance treatments for childhood heart diseases.
Immune cells rely on a cholesterol sensor to maintain balance, researchers discover
Immune cells rely on a cholesterol sensor to maintain balance, researchers discover
Every day, billions of cells in our body die and are removed as part of normal tissue maintenance.
AI model maps tumor tissue to improve cancer care
AI model maps tumor tissue to improve cancer care
A tumor is more than its cancer cells. Immune cells, blood vessels and other surrounding tissue influence how a cancer grows and responds to treatment. Two tumors containing the same cell types can respond very differently to the same therapy depending on how those cells are arra
Deadly brain tumors show vulnerability to new sound wave approach
Deadly brain tumors show vulnerability to new sound wave approach
In a promising sign for the potential of focused sound waves to improve care for brain tumors, UVA Health researchers have determined that tumors called gliomas may be even more receptive to targeted drug delivery than normal brain tissue.
Traditional Japanese medicine may ease age-related fat tissue scarring
Traditional Japanese medicine may ease age-related fat tissue scarring
A traditional Japanese medicine used for obesity may do more than support weight loss. Researchers at the University of Osaka, working with Kobayashi Pharmaceutical Co., Ltd., investigated whether Bofutsushosan could protect aging tissues from fibrosis—the excessive buildup of sc
Foto: Google DeepMind / Pexels
Biochemists discover new strategy to combat pediatric bone cancer
Researchers at the UNC School of Medicine and UNC Lineberger Comprehensive Cancer Center are zeroing in on less toxic and more targeted strategies to combat Ewing sarcoma, an aggressive and rare pediatric cancer that develops in the bones and soft tissues.
Immune cells in human lung tissue may drive the development of autoimmune disease
Immune cells in human lung tissue may drive the development of autoimmune disease
A massive analysis of immune cells in human tissue is yielding clues to the root causes of lung and autoimmune diseases.
Foto: Monstera Production / Pexels
Soluble signals released by neighboring cells direct how the human kidney is built
A human kidney is built once, before birth, and the rules guiding its construction have been largely inferred from animal models. Researchers at Penn Medicine have now read those rules directly in human tissue. They found that developing cells are steered by soluble signals relea
A hands-on approach to distance medicine
A hands-on approach to distance medicine
Dr. Pijuan Yu sits at his lab station, focused on the task at hand. He is feeling for a lump. The glass wall to his right reveals other students and researchers as they pass, but his attention remains steady. Two rubbery samples simulating human neck tissue lie on a smooth black
Foto: Markus Winkler / Pexels
PRISM2 model uses clinical dialogue to interpret pathology slides
Built by Paige and Microsoft, PRISM2 reads whole-slide images through a perceiver-based encoder trained jointly on tissue tiles and clinical dialogue drawn from pathology reports. The model aggregates thousands of tile embeddings per slide into one representation, then generates
New imaging technique reveals how scar tissue disrupts the heartbeat
New imaging technique reveals how scar tissue disrupts the heartbeat
When a heart attack damages the heart, the injured muscle is replaced by scar tissue. That scar can interfere with the electrical signals that coordinate each heartbeat, increasing the risk of dangerous rhythm disorders known as arrhythmias.
Cells of the same age can follow sharply different biological aging paths
Cells of the same age can follow sharply different biological aging paths
New research reveals that cells of the same chronological age can follow dramatically different biological aging paths, offering new insights into cancer, neurodegeneration and the fundamental biology of aging. Rather than aging uniformly, tissues become a mosaic of biologically