黄色视频不卡_午夜福利免费观看在线_亚洲国产精品999在线_欧美绝顶高潮抽搐喷水_久久精品成人免费网站_晚上一个人看的免费电影_国产又色又爽无遮挡免费看_成人国产av品久久久

    1. <dd id="lgp98"></dd>
      • <dd id="lgp98"></dd>
        1. 產(chǎn)品展廳收藏該商鋪

          您好 登錄 注冊

          當(dāng)前位置:
          美國布魯克海文儀器公司>技術(shù)文章>Optical barcoding of PLGA for multispectral analysis of nanoparticle fate in vivo

          技術(shù)文章

          Optical barcoding of PLGA for multispectral analysis of nanoparticle fate in vivo

          閱讀:290          發(fā)布時(shí)間:2017-11-25
           作者 David X. Medinaa. Kyle T. Householdera,b. Ricki Cetona,b. Tina Kovalika. John M. Heffernana,b. Rohini V. Shankarb. Robert P. Bowsera. Robert J. Wechsler-Reyac. Rachael W. Siriannia,b.

          a

          Barrow Brain Tumor Research Center, Barrow Neurological Institute, 350 W Thomas Road, Phoenix, AZ 85013, USA

          b

          School of Biological and Health Systems Engineering, Arizona State University, P.O. Box 879709, Tempe, AZ 85287, USA

          c

          Sanford Burnham Prebys Medical Discovery Institute, 2880 Torrey Pines Scenic Drive, La Jolla, CA 92037, USA

           

          摘要:Understanding of the mechanisms by which systemically administered nanoparticles achieve delivery across biological barriers remains incomplete, due in part to the challenge of tracking nanoparticle fate in the body. Here, we develop a new approach for “barcoding” nanoparticles composed of poly(lactic-co-glycolic acid) (PLGA) with bright, spectrally defined quantum dots (QDs) to enable direct, fluorescent detection of nanoparticle fate with subcellular resolution. We show that QD labeling does not affect major biophysical properties of nanoparticles or their interaction with cells and tissues. Live cell imaging enabled simultaneous visualization of the interaction of control and targeted nanoparticles with bEnd.3 cells in a flow chamber, providing direct evidence that surface modification of nanoparticles with the cell-penetrating peptide TAT increases their biophysical association with cell surfaces over very short time periods under convective current. We next developed this technique for quantitative biodistribution analysis in vivo. These studies demonstrate that nanoparticle surface modification with the cell penetrating peptide TAT facilitates brain-specific delivery that is restricted to brain vasculature. Although nanoparticle entry into the healthy brain parenchyma is minimal, with no evidence for movement of nanoparticles across the blood-brain barrier (BBB), we observed that nanoparticles are able to enter to the central nervous system (CNS) through regions of altered BBB permeability – for example, into circumventricular organs in the brain or leaky vasculature of late-stage intracranial tumors. In sum, these data demonstrate a new, multispectral approach for barcoding PLGA, which enables simultaneous, quantitative analysis of the fate of multiple nanoparticle formulations in vivo.

          收藏該商鋪

          登錄 后再收藏

          提示

          您的留言已提交成功!我們將在第一時(shí)間回復(fù)您~

          對比框

          產(chǎn)品對比 產(chǎn)品對比 聯(lián)系電話 二維碼 意見反饋 在線交流

          掃一掃訪問手機(jī)商鋪
          010-62081908
          在線留言
          岚皋县| 临夏市| 清流县| 高碑店市| 连南| 晋州市| 龙口市| 休宁县| 昌平区| 通州市| 巴中市| 兴隆县| 新田县| 乐平市| 青铜峡市| 灵宝市| 宝兴县| 南京市| 攀枝花市| 宜都市| 广元市| 卢氏县| 绥阳县| 汉寿县| 泰来县| 阿尔山市| 永善县| 吴忠市| 南京市| 达孜县| 固安县| 东乡族自治县| 周口市| 龙山县| 建瓯市| 闸北区| 枣强县| 彭山县| 隆昌县| 辽源市| 四川省|