蜜臀av性久久久久|国产免费久久精品99|国产99久久久久久免费|成人精品一区二区三区在线|日韩精品一区二区av在线|国产亚洲欧美在线观看四区|色噜噜综合亚洲av中文无码|99久久久国产精品免费播放器

<cite id="ygcks"><center id="ygcks"></center></cite>
  • 
    
  • <rt id="ygcks"></rt>
    <cite id="ygcks"></cite>
  • <li id="ygcks"><source id="ygcks"></source></li> <button id="ygcks"></button>
  • <button id="ygcks"></button>
    <button id="ygcks"><input id="ygcks"></input></button>
    
    
    <abbr id="ygcks"><source id="ygcks"></source></abbr>
    
    
    
     
    
    

    American, Chinese scientists develop system to effectively test drug function

    Source: Xinhua| 2018-06-19 03:09:22|Editor: Chengcheng
    Video PlayerClose

    WASHINGTON, June 18 (Xinhua) -- American and Chinese scientists have developed droplet-sized "mini-ecosystems" that can quickly see if a molecule can function as a potential therapeutic.

    The study published on Monday in the journal Proceedings of the National Academy of Sciences described the new method that allowed researchers save critical time and funding by simultaneously testing how could drug candidates bind to their cellular targets and alter cell function.

    The method was building on antibody phage display, a technology that scientists could use to label and test antibodies for their ability to bind to a biological target.

    But in the vast group of antibodies with a binding affinity for the disease target, there may be only a few antibodies that have the right biological functions. Testing these antibodies for function adds time and expense to the drug discovery process.

    The new mini-ecosystem method can test for affinity and function at the same time, according to scientists from Scripps Research in the United States and from ShanghaiTech University, Peking University and the University of Hong Kong.

    The mini-ecosystems are held in droplets the size of a picoliter, or one-trillionth of a liter. In these cramped quarters, the researchers brought together a mammalian cell and E. coli bacteria.

    The bacteria produce phage that serve as carriers for antibody drug candidates. These antibodies on phage surface can interact with the mammalian cell in the same system.

    The mammalian cell in the droplet is engineered to express a fluorescent protein if properly targeted by an antibody.

    This means that in one step, scientists can test antibody affinity and function, potentially making drug discovery more time- and cost-effective.

    "Co-cultivation of mammalian and bacteria cells in mini-ecosystems makes it possible to select functional antibodies directly with phage display," said Zheng Tianqing, postdoctoral associate at Scripps Research and the paper's first author.

    TOP STORIES
    EDITOR’S CHOICE
    MOST VIEWED
    EXPLORE XINHUANET
    010020070750000000000000011100001372633491
    门头沟区| 图片| 汾西县| 无为县| 庆元县| 永善县| 瑞安市| 河源市| 玉山县| 兴化市| 潜江市| 和田市| 新泰市| 涪陵区| 开鲁县| 琼结县| 永平县| 清河县| 淳化县| 进贤县| 佛冈县| 得荣县| 阳春市| 乐都县| 淮阳县| 中阳县| 永清县| 崇左市| 宝坻区| 蛟河市| 镇宁| 濮阳市| 东港市| 锡林浩特市| 吉安县| 虞城县| 长葛市| 辛集市| 康马县| 渭源县| 平南县|