Study links human blood cells to 700-million-year-old ancestors

Researchers at Kyoto University have traced the origins of human blood cells to single-celled organisms that lived about 700 million years ago. Their analysis shows that modern immune cells reflect an ancient evolutionary path dating back to the emergence of multicellular animals.

The team developed a new method to compare gene expression across cell types and species. This approach allowed them to construct evolutionary trees for blood cell lineages and identify similarities with unicellular organisms. Macrophages displayed the closest links to these early ancestors, suggesting they represent the earliest form of blood cells.

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Microscopic view contrasting helpful and harmful senescent cells in tissue repair
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Review argues some “senescent” cells can support tissue repair, complicating anti-aging strategies

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A review in the journal Aging (Aging-US) says senescent cells—often dubbed “zombie cells”—can contribute to wound healing and tissue stability in some settings, even as other senescent cells promote inflammation and age-related disease.

Researchers at UCLA have identified senescent immune cells, dubbed 'zombie' cells, that accumulate in aging livers and contribute to fatty liver disease. By eliminating these cells in mice, the team reversed liver damage and reduced body weight, even on an unhealthy diet. The findings, published in Nature Aging, suggest similar mechanisms may drive human liver conditions.

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Researchers in Sweden have created insulin-producing cells from human stem cells that reversed diabetes symptoms when transplanted into mice. The cells matured after placement in the eye and maintained glucose regulation for months. The work was published in Stem Cell Reports.

Genetic analysis of remains from a megalithic tomb near Bury, 50 kilometers north of Paris, reveals a complete population turnover around 3000 BC. The earlier group shared genetics with northern European farmers, while newcomers arrived from southern France and the Iberian Peninsula. Researchers link the shift to disease, environmental stress, and social changes.

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Researchers have analyzed mitochondrial DNA from eight Neanderthal teeth found in Stajnia Cave in Poland, reconstructing the genetic profile of a small group that lived there around 100,000 years ago. The study, published in Current Biology, marks the first such multi-individual genetic picture from a single site north of the Carpathians. The findings show genetic links to Neanderthals across Europe and the Caucasus.

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