Hama Yukihiro, Koyama Yoshinori, Urano Yasuteru, Choyke Peter L, Kobayashi Hisataka
Molecular Imaging Program, Center for Cancer for Cancer Research, National Cancer Institute, NIH, Bldg. 10, Room 1B40, MSC 1088, Bethesda, MD 20892-1088, USA.
Breast Cancer Res Treat. 2007 May;103(1):23-8. doi: 10.1007/s10549-006-9347-0. Epub 2006 Sep 21.
Due to their small size and poor access, the lymphatic function has been difficult to study in vivo. Especially difficult is the mapping of lymphatic drainage from two basins into the same node. Quantum dots can be used to perform multicolor images with high fluorescent intensity and are of a nano-size size suitable for lymphatic imaging via direct interstitial injection. Here we show simultaneous two-color in vivo wavelength-resolved spectral fluorescence lymphangiography using two near infrared quantum dots with different emission spectra, which allow non-invasive and simultaneous visualization of two separate lymphatic flows draining the breast and the upper extremity and variations in the drainage patterns and the water sheds within the axillary node. Two-color spectral fluorescence lymphangiography can provide insight into mechanisms of drainage from different lymphatic basins that may lead to sentinel lymph nodes detection of the breast cancer as well as prevention of complications such as lymphedema of the arm.
由于淋巴管尺寸小且难以触及,其功能在体内一直难以研究。尤其困难的是绘制从两个区域引流至同一淋巴结的淋巴引流图。量子点可用于进行具有高荧光强度的多色成像,其纳米尺寸适合通过直接间质注射进行淋巴成像。在此,我们展示了使用两种具有不同发射光谱的近红外量子点进行同步双色体内波长分辨光谱荧光淋巴管造影,这使得能够非侵入性地同时可视化引流乳房和上肢的两个独立淋巴流,以及腋窝淋巴结内引流模式和分水岭的变化。双色光谱荧光淋巴管造影可以深入了解不同淋巴区域的引流机制,这可能有助于乳腺癌前哨淋巴结的检测以及预防诸如手臂淋巴水肿等并发症。