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利用量子点对斑马鱼进行活体成像。

Intravital imaging in zebrafish using quantum dots.

作者信息

Son Sang Wook, Kim Jae Hwan, Kim Su Hyun, Kim Ho, Chung Ah-Young, Choo Jae Bum, Oh Chil Hwan, Park Hae-Chul

机构信息

Department of Dermatology, College of Medicine, Korea University, Seoul, Korea.

出版信息

Skin Res Technol. 2009 May;15(2):157-60. doi: 10.1111/j.1600-0846.2008.00341.x.

Abstract

BACKGROUND/AIMS: Fluorescent quantum dots (QDs) are powerful multipurpose interfaces of nanotechnology providing long-term and multicolor imaging of cellular and molecular interactions. The application of QDs in living organisms is just beginning to be explored, and zebrafish embryos may be suitable vertebrate model organisms for intravital imaging with QDs. To investigate their potential in skin research, we used QDs as microangiography contrast agents and attempted to visualize the cardiovascular system in zebrafish. We also attempted to find the pathway relationship between the cardiovascular system and the nerve network using QDs together with the transgenic zebrafish line.

METHOD

Quantum Dot QD605, which reveals green color under the fluorescent microscope, was used as a microangiography contrast agent. The olig2-Dsred transgenic zebrafish line, which expresses motor neurons in red color, was used together with QDs. Images of QD605-injected embryos were recorded with a digital camera.

RESULTS

Combining the green fluorescence of QD605 and the red fluorescence of olig2-Dsred transgenic zebrafish, we could obtain detailed images manifesting the spatial relationship between the vascular and the nervous system of zebrafish

CONCLUSION

QDs could easily be used as a bright microangiography agent in living embryos. Our image of the vascular and motor nervous system in zebrafish showed a similar pattern of trajectory overall. However, their segmented repetitive networks along the dorsoventral axis were not completely overlapped.

摘要

背景/目的:荧光量子点(QDs)是纳米技术强大的多功能界面,可对细胞和分子相互作用进行长期和多色成像。量子点在活生物体中的应用才刚刚开始探索,斑马鱼胚胎可能是适合用量子点进行活体成像的脊椎动物模型生物。为了研究它们在皮肤研究中的潜力,我们将量子点用作微血管造影造影剂,并试图可视化斑马鱼的心血管系统。我们还尝试使用量子点和转基因斑马鱼品系来寻找心血管系统与神经网络之间的通路关系。

方法

将在荧光显微镜下呈现绿色的量子点QD605用作微血管造影造影剂。将表达红色运动神经元的olig2-Dsred转基因斑马鱼品系与量子点一起使用。用数码相机记录注射了QD605的胚胎的图像。

结果

结合QD605的绿色荧光和olig2-Dsred转基因斑马鱼的红色荧光,我们可以获得详细的图像,显示斑马鱼血管和神经系统之间的空间关系。

结论

量子点可以很容易地用作活胚胎中的明亮微血管造影剂。我们对斑马鱼血管和运动神经系统的图像总体上显示出相似的轨迹模式。然而,它们沿背腹轴的分段重复网络并未完全重叠。

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