删除或更新信息,请邮件至freekaoyan#163.com(#换成@)

Nanozymes: From New Concepts, Mechanisms, and Standards to Applications,Acc Chem Res, 05 Jul 2019

本站小编 Free考研/2020-05-28

Accounts of Chemical Research, 05 July, 2019,DOI:https://doi.org/10.1021/acs.accounts.9b00140
Nanozymes: From New Concepts, Mechanisms, and Standards to Applications
Minmin Liang* and Xiyun Yan*
Abstract
Conspectus
Nanozymes are nanomaterials with intrinsic enzyme-like characteristics that have been booming over the past decade because of their capability to address the limitations of natural enzymes such as low stability, high cost, and difficult storage. Along with the rapid development and ever-deepening understanding of nanoscience and nanotechnology, nanozymes hold promise to serve as direct surrogates of traditional enzymes by mimicking and further engineering the active centers of natural enzymes. In 2007, we reported the first evidence that Fe3O4 nanoparticles (NPs) have intrinsic peroxidase-mimicking activity, and since that time, hundreds of nanomaterials have been found to mimic the catalytic activity of peroxidase, oxidase, catalase, haloperoxidase, glutathione peroxidase, uricase, methane monooxygenase, hydrolase, and superoxide dismutase. Uniquely, a broad variety of nanomaterials have been reported to simultaneously exhibit dual- or multienzyme mimetic activity. For example, Fe3O4 NPs show pH-dependent peroxidase-like and catalase-like activities; Prussian blue NPs simultaneously possess peroxidase-, catalase-, and superoxide dismutase-like activity; and Mn3O4 NPs mimic all three cellular antioxidant enzymes including superoxide dismutase, catalase, and glutathione peroxidase. Taking advantage of the physiochemical properties of nanomaterials, nanozymes have shown a broad range of applications from in vitro detection to replacing specific enzymes in living systems. With the emergence of the new concept of “nanozymology”, nanozymes have now become an emerging new field connecting nanotechnology and biology.
Since the landmark paper on nanozymes was published in 2007, we have extensively explored their catalytic mechanism, established the corresponding standards to quantitatively determine their catalytic activities, and opened up a broad range of applications from biological detection and environmental monitoring to disease diagnosis and biomedicine development. Here we mainly focus on our progress in the systematic design and construction of functionally specific nanozymes, the standardization of nanozyme research, and the exploration of their applications for replacing natural enzymes in living systems. We also show that, by combining the unique physicochemical properties and enzyme-like catalytic activities, nanozymes can offer a variety of multifunctional platforms with a broad of applications from in vitro detection to in vivo monitoring and therapy. For instance, targeting antibody-conjugated ferromagnetic nanozymes simultaneously provide three functions: target capture, magnetic separation, and nanozyme color development for target detection. We finally will address the prospect of nanozyme research to become “nanozymology”. We expect that nanozymes with unique physicochemical properties and intrinsic enzyme-mimicking catalytic properties will attract broad interest in both fundamental research and practical applications and offer new opportunities for traditional enzymology.
文章链接:https://pubs.acs.org/doi/10.1021/acs.accounts.9b00140


附件下载:

相关话题/附件 链接

  • 领限时大额优惠券,享本站正版考研考试资料!
    大额优惠券
    优惠券领取后72小时内有效,10万种最新考研考试考证类电子打印资料任你选。涵盖全国500余所院校考研专业课、200多种职业资格考试、1100多种经典教材,产品类型包含电子书、题库、全套资料以及视频,无论您是考研复习、考证刷题,还是考前冲刺等,不同类型的产品可满足您学习上的不同需求。 ...
    本站小编 Free壹佰分学习网 2022-09-19
  • 心理所研究发现健康人群分裂型特质与纹状体-皮层功能链接有关
    精神分裂症患者在行为、认知和运动等方面的功能异常被认为与“皮层-纹状体-丘脑-皮层环路”有关,其中纹状体是这一环路中的关键脑区之一。最近的元分析发现,精神分裂症患者甚至是分裂型特质群体,纹状体突触前多巴胺合成增多。中国科学院心理健康重点实验室神经认知与应用认知神经科学实验室(NACN Lab)王毅博 ...
    本站小编 Free考研 2020-05-25
  • 中央音乐学院2020年博士招生相关附件下载
    相关附件: 博附件一:专业方向、招生导师.pdf博附件二(1):2020年作曲系博士研究生招生考试办法.pdf博附件二(2):2020年音乐学系博士研究生招生考试办法.pdf博附件二(3):2020年指挥系博士研究生申请-考核制招生考试办法.pdf博附件二(4):2020年钢琴系博士研究生申请-考核制招 ...
    本站小编 Free考研考试 2020-05-16
  • 读经典 学新知 链接美好生活
    草长莺飞四月天,正是读书好时节。4月25日,由中国图书馆学会与国家图书馆主办,中国科学院长春应用化学研究所图书馆与长春市图书馆承办的“读经典、学新知、链接美好生活”读书分享活动在长春应化所举办,这也是今年长春市“4.23世界读书日”主题系列活动的重头戏之一。来自中国科学院长春应用化学研究所与长春市图 ...
    本站小编 Free考研考试 2020-03-19
  • 中国人民大学2019年博士研究生招生复试成绩公示网址链接
    商学院 劳动人事学院 理学院化学系 数学学院 经济学院 理学院物理学系 统计学院 环境学院 文学院 ...
    本站小编 免费考研网 2019-10-22
  • 2020年中国人民大学各学院接收推免生工作办法及名单网址链接
    注:如以上有学院未做网址链接,请及时关注学院网站进行相关查询 财政金融学院 复试办法 社会与人口学院 工作办法 劳动人事学院 ...
    本站小编 免费考研网 2019-10-22
  • 2020年中央音乐学院统考硕士研究生招生考试信息相关附件
    相关附件: 附件一(1):统考全日制硕士生报考各专业方向导师名单.pdf附件一(2):统考非全日制硕士生报考各专业方向导师名单.pdf附件二(1):作曲系统考硕士研究生招生考试基本信息.pdf附件二(2):音乐学系统考硕士研究生招生考试基本信息.pdf附件二(3):指挥系统考硕士研究生招生考试基本信息.pdf附件二(4 ...
    本站小编 免费考研网 2019-10-22
  • 东北林业大学各学院通知公告网站链接及联系方式
    各学院通知公告链接 001 林学院https://forestry.nefu.edu.cn/002 园林学院https://yuanlin.nefu.edu.cn/index/tzgg.htm003 野生动物与自然保护地学院https://wildlife.nefu.edu.cn/index/xytz.htm004 化学化工与资源利用学院https://www.nefu.edu.cn/zzjg/jxky.htm#005 经济管理学院 http://cem.nefu.edu.cn/xw.a ...
    本站小编 免费考研网 2019-10-13
  • 2019年中国人民大学各学院硕士生复试办法网站链接
    中国人民大学2019年硕士研究生招生复试学院(系)复试办法、复试名单公示网址链接 法学院法律硕士(非法学、法学) 复试办法、复试名单 法学院法学硕士 复试办法、复试名单 ...
    本站小编 免费考研网 2019-05-23