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Cancer-causing gene also plays a crucial role in aging, study finds

A gene called Myc (pronounced "mick") that is among the most important drivers of cancer in both mice and humans also plays a newly discovered crucial role in aging, according to a new Cell Reports study by researchers at UPMC Children's Hospital of Pittsburgh and the University of Pittsburgh School of Medicine.

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Taurine Shown to Slow Aging in Animal Studies

Taurine Shown to Slow Aging in Animal Studies
everydayhealth.com - get the latest breaking news, showbiz & celebrity photos, sport news & rumours, viral videos and top stories from everydayhealth.com Daily Mail and Mail on Sunday newspapers.

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High-Protein Nutrient Unveils Potential to Combat Aging in Animals—and Potentially Extend Lifespan in Humans

A recent study revealed that low levels of taurine can accelerate aging in various animal species. Scientists have recently discovered that increasing taurine levels, a nutrient found in protein-rich foods, could potentially slow down the aging process, leading to longer and healthier lives in animals-and potentially in humans as well.

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Taurine slows aging in mice. Will it ever work for people?

The amino acid taurine — found in meats, produced by the body and common in energy drinks — may have a role in health and aging, a new study suggests.

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Taurine slows aging in mice. Will it ever work for people?

Taurine slows aging in mice. Will it ever work for people?
samacharcentral.com - get the latest breaking news, showbiz & celebrity photos, sport news & rumours, viral videos and top stories from samacharcentral.com Daily Mail and Mail on Sunday newspapers.

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Pitt researchers describe a pathway by which cells repair damaged lysosomes

Today in Nature, University of Pittsburgh researchers describe for the first time a pathway by which cells repair damaged lysosomes, structures that contribute to longevity by recycling cellular trash.

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Pitt researchers to contribute to building an atlas of cellular senescence

Most cells throughout the body can divide and multiply to replace old cells and repair damaged tissue, but in response to certain stresses, cells can lose their ability to proliferate. These so-called senescent cells accumulate with age and may contribute to cancer and age-related disorders, such as chronic lung disease, cardiovascular disease, frailty and dementia, by pumping out signals that damage neighboring tissues.

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Johns Hopkins All Children's Hospital Inc. (via Public) / Research on Metabolism and Cytokine Signaling Provides Clues to Disease Development

Johns Hopkins All Children's Hospital Inc. (via Public) / Research on Metabolism and Cytokine Signaling Provides Clues to Disease Development
publicnow.com - get the latest breaking news, showbiz & celebrity photos, sport news & rumours, viral videos and top stories from publicnow.com Daily Mail and Mail on Sunday newspapers.

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