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>
    
    
    
     
    
    

    HK researchers discover new nanomaterial to enable early detection of Alzheimer's disease

    Source: Xinhua| 2018-10-30 20:14:43|Editor: mmm
    Video PlayerClose

    HONG KONG, Oct. 30 (Xinhua) -- Researchers from Hong Kong Baptist University have discovered a new nanomaterial which could enable the early detection and diagnosis of Alzheimer's disease, the university announced on Tuesday.

    The plaques in the brain, comprised of a protein called amyloid-beta, are one of the hallmarks of the Alzheimer's disease. The early detection of these plaques could help speed up the diagnosis of Alzheimer's and enable people to receive treatment earlier.

    Fabricated using a combination of superparamagnetic iron oxide nanoparticles and cyanine compounds, the university's study team found that the nanomaterial could easily pass through the blood-brain barrier to specifically target these amyloid-beta plaques.

    Once bound to amyloid-beta, the nanomaterial fluoresces and exhibits magnetic resonance properties, enabling it to be easily detected by magnetic resonance imaging (MRI) and near-infrared imaging machines, which offer superior resolution and do not require an invasive radioactive trace.

    "The successful diagnosis of the disease at an early stage may help delay the disease's progression," Ricky Wong Man-shing, professor from the university's Department of Chemistry, one of the leaders of the study team, said. "Current clinical methods of brain imaging using Positron Emission Tomography scans are expensive, require invasive radiative tracers and have poor visibility."

    The new nanomaterial which is non-radioactive, non-toxic and able to penetrate the blood-brain barrier shows its promise for use in near-infrared imaging and MRI scanning of the brain.

    As a result, its application as a contrast agent for imaging is highly important and could lead to earlier detection, and improved monitoring of Alzheimer's disease, Wong added.

    The research paper of the study is published in the journal Small, and the discovery has already been granted a U.S. patent.

    TOP STORIES
    EDITOR’S CHOICE
    MOST VIEWED
    EXPLORE XINHUANET
    010020070750000000000000011100001375696381
    明光市| 紫云| 邳州市| 耒阳市| 禹城市| 山东省| 修水县| 舟山市| 女性| 丹江口市| 萨迦县| 瓦房店市| 嘉义县| 泗阳县| 卢氏县| 广汉市| 三台县| 富宁县| 秦安县| 托克逊县| 辉南县| 新建县| 兰州市| 罗田县| 汤阴县| 南昌市| 阿坝县| 安多县| 伊川县| 温泉县| 喜德县| 黄山市| 金阳县| 元谋县| 西盟| 固安县| 军事| 萝北县| 凤山县| 阳新县| 绍兴市|