1. <sub id="zy88n"></sub>
        1. <blockquote id="zy88n"></blockquote>
          欧美黑人又大又粗xxxxx,人人爽久久久噜人人看,扒开双腿吃奶呻吟做受视频,中国少妇人妻xxxxx,2021国产在线视频,日韩福利片午夜免费观着,特黄aaaaaaa片免费视频,亚洲综合日韩av在线
           
          Receptor proteins that respond to nicotine may help fat cells burn energy: study
                           Source: Xinhua | 2018-05-22 02:59:46 | Editor: huaxia

          Illustration of thermogenesis in mice beige fat cells in response acetylcholine stimulation. (Credit: Stephanie King, LSI at the University of Michigan)

          WASHINGTON, May 21 (Xinhua) -- American researchers have identified a key signaling pathway that spurs certain types of fat cells to burn energy, providing a possible target for obesity therapies in humans.

          A study published on Monday in the journal Nature Medicine revealed that the same proteins that moderate nicotine dependence in the brain may be involved in regulating metabolism by acting directly on beige fat cells.

          Beige fat cells in mice and humans are fat cells that can be activated to burn energy through a process called thermogenesis. They are unlike the white fat cells that store energy as lipids.

          Researchers analyzed activated beige fat and uncovered a molecule directly linked to thermogenesis in these cells: CHRNA2 (for cholinergic receptor nicotinic alpha 2), a type of receptor that is best known for regulating nicotine dependence in brain cells.

          According to the study, CHRNA2 functions in mouse and human beige fat cells, but not in energy-storing white fat cells, indicating that this protein plays a role in energy metabolism.

          This doesn't mean that smoking is good for you, cautioned Wu Jun, assistant professor at Life Sciences Institute of University of Michigan, but the findings may help further explain some of the weight gain that is associated with smoking cessation.

          Previous research has shown that nicotine can suppress appetite. But by identifying how nicotine affects metabolism directly, this new study may open the door to more novel approaches to combating the weight gain that often occurs when individuals stop smoking.

          In research conducted in human and mouse cells and in genetically modified mice, Wu and her colleagues determined that CHRNA2 receptor proteins can be activated both by nicotine and by acetylcholine molecules produced by nearby immune cells.

          When the CHRNA2 protein receives the acetylcholine or nicotine, it stimulates the beige fat cells to start burning energy.

          "It is really cool to discover a selective pathway for beige fat, a new cell type--and even more exciting that this is conserved in humans," said Wu, the study's senior author.

          To further test the role of CHRNA2 in metabolism, the researchers analyzed mice that lacked the gene needed to make this protein.

          Mice without the CHRNA2 gene showed no differences from the control group when they were fed a regular diet. But when they were switched to a high-fat diet, the mice lacking the gene exhibited greater weight gain, higher body fat content and higher levels of blood glucose and insulin, indicators of diabetes.

          Back to Top Close
          Xinhuanet

          Receptor proteins that respond to nicotine may help fat cells burn energy: study

          Source: Xinhua 2018-05-22 02:59:46

          Illustration of thermogenesis in mice beige fat cells in response acetylcholine stimulation. (Credit: Stephanie King, LSI at the University of Michigan)

          WASHINGTON, May 21 (Xinhua) -- American researchers have identified a key signaling pathway that spurs certain types of fat cells to burn energy, providing a possible target for obesity therapies in humans.

          A study published on Monday in the journal Nature Medicine revealed that the same proteins that moderate nicotine dependence in the brain may be involved in regulating metabolism by acting directly on beige fat cells.

          Beige fat cells in mice and humans are fat cells that can be activated to burn energy through a process called thermogenesis. They are unlike the white fat cells that store energy as lipids.

          Researchers analyzed activated beige fat and uncovered a molecule directly linked to thermogenesis in these cells: CHRNA2 (for cholinergic receptor nicotinic alpha 2), a type of receptor that is best known for regulating nicotine dependence in brain cells.

          According to the study, CHRNA2 functions in mouse and human beige fat cells, but not in energy-storing white fat cells, indicating that this protein plays a role in energy metabolism.

          This doesn't mean that smoking is good for you, cautioned Wu Jun, assistant professor at Life Sciences Institute of University of Michigan, but the findings may help further explain some of the weight gain that is associated with smoking cessation.

          Previous research has shown that nicotine can suppress appetite. But by identifying how nicotine affects metabolism directly, this new study may open the door to more novel approaches to combating the weight gain that often occurs when individuals stop smoking.

          In research conducted in human and mouse cells and in genetically modified mice, Wu and her colleagues determined that CHRNA2 receptor proteins can be activated both by nicotine and by acetylcholine molecules produced by nearby immune cells.

          When the CHRNA2 protein receives the acetylcholine or nicotine, it stimulates the beige fat cells to start burning energy.

          "It is really cool to discover a selective pathway for beige fat, a new cell type--and even more exciting that this is conserved in humans," said Wu, the study's senior author.

          To further test the role of CHRNA2 in metabolism, the researchers analyzed mice that lacked the gene needed to make this protein.

          Mice without the CHRNA2 gene showed no differences from the control group when they were fed a regular diet. But when they were switched to a high-fat diet, the mice lacking the gene exhibited greater weight gain, higher body fat content and higher levels of blood glucose and insulin, indicators of diabetes.

          010020070750000000000000011100001371959661
          主站蜘蛛池模板: 无码人妻精品专区在线视频| 美女粉嫩啪啪高潮喷白浆动漫| 国产亚洲视频免费播放| 日本一区二区久久精品亚洲中文无| 米奇欧美777四色影视在线| 最新国产精品中文字幕| 国产免费人成在线视频| 精品国产免费观看一区| 99热久久最新地址| 亚洲乱码中文字幕综合久久| 99久久久无码国产精品动漫| 天天躁夜夜躁狠狠综合边吃奶| 91情侣在线精品国产| av一区二区中文字幕| 欧美成人aa免费观看| bt天堂新版中文在线| 亚洲日韩精品伊甸| 日韩精品无码免费专区网站| 强奷乱码中文字幕| av中文字幕一区二区| 欧美另类人妻制服丝袜| 精品无码一区二区三区的天堂| 国产成人a在线观看视频| 国产亚洲日韩在线播放更多| 亚洲精品日本久久一区二区三区| 久久99国产亚洲高清| 免费视频看片app| 高清无码爆乳潮喷在线观看| 99在线精品免费视频九九视| 国产精品乱码一区二三区| 日本高清色WWW网站色噜噜噜| 性夜影院午夜看片| 国产在线视频福利资源站| 538porm在线看国产亚洲| 亚洲国产成人无码av在线| 国产无套粉嫩白浆在线| 人人妻人人妻人人片色AV| 一区视频在线观看免费播放.| 幻女free性俄罗斯毛片| 蜜桃视频中文字幕一区二区三区 | 成人无码区免费AⅤ片WWW|