Category Biology/Biotechnology

Mystery of How Snakes Lost their Legs Solved by Reptile Fossil

Mystery of how snakes lost their legs solved by reptile fossil

Modern snake skull, with inner ear shown in orange. Credit: Hongyu Yi

Fresh analysis of a 90 million-year-old skull is giving researchers vital clues about how snakes evolved. Comparisons between CT scans of the fossil and modern reptiles indicate that snakes lost their legs when their ancestors evolved to live and hunt in burrows, which many snakes still do today. The findings show snakes did not lose their limbs in order to live in the sea, as was previously suggested.

Scientists used CT scans to examine the bony inner ear of Dinilysia patagonica, a 2-meter long reptile closely linked to modern snakes. These bony canals and cavities, like those in the ears of modern burrowing snakes, controlled its hearing and balance...

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Functional Human Liver Cells Grown in the Lab

Fluorescently labeled polarized Upcyte® hepatocytes. Credit: Prof. Yaakov Nahmias

Fluorescently labeled polarized Upcyte® hepatocytes. Credit: Prof. Yaakov Nahmias

A new technique for growing human hepatocytes in the laboratory has now been described by a team of researchers. This groundbreaking development could help advance a variety of liver-related research and applications, from studying drug toxicity to creating bio-artificial liver support for patients awaiting transplantations.

Human hepatocytes – that comprise 85% of the liver – are routinely used for study of hepatotoxicity, drug clearance and drug-drug interactions. They also have clinical applications in cell therapy to correct genetic defects, reverse cirrhosis, or support patients with a liver-assist device.

Regrettably, while the human liver can rapidly regenerate in vivo attempts to expand human hepatoc...

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New Gene Map Reveals Cancer’s Achilles Heel

Cancer cells growing in a dish

Cancer cells growing in a dish

Scientists have mapped out the genes that keep our cells alive, creating a long-awaited foothold for understanding how our genome works and which genes are crucial in disease like cancer. A team of Toronto researchers have switched off, one by one, almost 18,000 genes – 90% of the entire human genome – to find the genes that are essential for cell survival. The data revealed a “core” set of more than 1,500 essential genes. This lays the foundation for reaching the long-standing goal in biomedical research of pinpointing a role for every single gene in the genome.

By turning genes off in 5 different cancer cell lines, including brain, retinal, ovarian, and 2 kinds of colorectal cancer cells, the team uncovered that each tumour relies on a unique set of genes t...

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Gratitude. What brain regions does it take to give thinks?

It takes a lot of brain power – and many parts of the brain – to fully give thanks.

In a past study, NIH researchers examined blood flow in various brain regions while subjects summoned up feelings of gratitude (Zahn et al, 2009). They found that subjects who showed more gratitude overall had higher levels of activity in the hypothalamus. This is important because the hypothalamus controls a huge array of essential bodily functions, including eating, drinking and sleeping. It also has a huge influence on your metabolism and stress levels. From this evidence on brain activity it starts to become clear how improvements in gratitude could have such wide-ranging effects from increased exercise, and improved sleep to decreased depression and fewer aches and pains.

Furthermore, feelings of...

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