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    Home > Medical News > Medical World News > Nature: Scientists find 'hibernating switch' for the first time in mouse brains

    Nature: Scientists find 'hibernating switch' for the first time in mouse brains

    • Last Update: 2020-07-08
    • Source: Internet
    • Author: User
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    From the academic latitudefairy tale, Sleeping Beauty sleeps for 100 years, time is stagnant and looks old; in a sci-fi movie, astronauts lie quietly in dormant cabins, through vast space, during a long interstellar journeyDespite these fantasies, the idea of pressing the "life pause button" may not be as far away from reality, according to a new set of findings by scientists, two research papers published online by nature, a leading academic journal, from Harvard Medical School in the United States and two research teams from Tsukuba University in Japan, found a special group of nerve cells in the brains of mice that play a key role in body temperature controlArtificialactivation of these nerve cells can trigger mice into a hibernating state, resulting in significantly lower body temperature and energy consumptionMoreover, after the animal recovered from this state, there were no tissue organs and behavioral abnormalitiesThe researchers hope that based on this finding, "artificial hibernation" can be achieved in humansnature, animals such as frogs, snakes and bears can survive hibernation (seasonal sleep) through harsh winters, food shortages or other extreme conditionsUnlike everyday sleep, hibernation involves physical changes throughout the body, with a slower heartbeat, weaker breathing, less oxygen consumption, and a significant drop in body temperaturewhy do some animals hibernate, and some animals don't hibernate? The problem not only curiouss five or six-year-olds, but also inspires many scientists to explore itresearchers point out that one of the reasons for the difficulty of hibernating research is that commonly used experimental animal mice and rats do not hibernateHowever, the team, led by Professor Michael Greenberg of Harvard Medical School, noted that mice entered a short-lived state of insensitivity when food was scarce and cold around themAt ambient temperatures as low as 22 degrees C, the core body temperature of mice hungry for 24 hours decreased, and metabolic rates and physical activity decreased significantly, compared with those who ate enough to maintain normal body temperaturethe team used biomarkers of neuronal activity to look for neurons that were activated when they entered a numbing state in the brains of micein the process, they focused their search on the hypothalamus, the brain region responsible for body temperature regulation, hunger, thirst, hormone secretion and other functionsIn hundreds of different regions of the hypothalamus, the researchers identified which regions of neurons caused numbness in mice when activatedpainstaking search, they eventually identified a group of neurons in a specific area of the hypothalamus (the inner and outer side front region) Stimulating the neurons alone allowed the mice to rapidly lower their body temperature and significantly reduce their activity, and inhibited the activity of these neurons, which prevented hungry mice from getting numb The researchers then identified the groups of neurons that expressed iconic proteins, such as neurotransmitters, using single-cellRNA sequencing another research paper, scientists at The University of Tsukuba in Japan used different methods to find the same "neural switch" in similar areas of the hypothalamus They named the nerve cells Q neurons genetically modified, the researchers were able to activate Q neurons in the brains of mice with chemicalors or light-specific activation They were surprised to find that the mice's core body temperature dropped by nearly 10 degrees and showed the animal's hibernating state for 48 hours: incontinturity, lower heart rate, reduced oxygen consumption, and so on "When the surroundings drop significantly, their function remains normal and their body temperature becomes lower, at around 22 degrees Celsius." Professor Sakurai, who was the study leader, said " even more surprisingly, in rats that neither hibernate nor daily numbness ,torpor, the activation of Q neurons also triggers a similar state of hibernation in mice "Although we don't yet know the exact answer, humans may also have Q neurons that can trigger similar states, " said lead author Takahashi "
    next step, can humans "sleep at one click"? "It's too early to say whether we can induce the same state in people, but it's a goal worth exploring." Professor Greenberg said talk about the future of "artificial hibernation", both teams have developed ideas such as replacing anesthesia in clinical surgery; slowing down metabolism after a stroke or trauma to avoid further brain damage; extending lifespan; and even turning fantasies into reality to help humans travel to Mars and space "Imagination gets crazy when we imagine that humans can also have a state of hibernation." One of the study's authors, Dr Sinisa Hrvatin of Harvard Medical School, said
    This article is an English version of an article which is originally in the Chinese language on echemi.com and is provided for information purposes only. This website makes no representation or warranty of any kind, either expressed or implied, as to the accuracy, completeness ownership or reliability of the article or any translations thereof. If you have any concerns or complaints relating to the article, please send an email, providing a detailed description of the concern or complaint, to service@echemi.com. A staff member will contact you within 5 working days. Once verified, infringing content will be removed immediately.

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