Ballou Byron, Ernst Lauren A, Andreko Susan, Harper Theresa, Fitzpatrick James A J, Waggoner Alan S, Bruchez Marcel P
Molecular Biosensor and Imaging Center, Department of Biological Sciences, and Department of Chemistry, Carnegie Mellon University, 4400 Fifth Avenue, Pittsburgh, Pennsylvania 15213, USA.
Bioconjug Chem. 2007 Mar-Apr;18(2):389-96. doi: 10.1021/bc060261j. Epub 2007 Jan 31.
We demonstrate that quantum dots injected into two model tumors rapidly migrate to sentinel lymph nodes. PEG-coated quantum dots having terminal carboxyl, amino, or methoxyl groups all migrated from the tumor to surrounding lymph nodes similarly. Passage from the tumor through lymphatics to adjacent nodes could be visualized dynamically through the skin; at least two nodes could usually be defined. Imaging during necropsy confirmed confinement of the quantum dots to the lymphatic system and demonstrated easy tagging of sentinel lymph nodes for pathology. Examination of the sentinel nodes identified by quantum dot localization showed that at least some contained metastatic tumor foci.
我们证明,注入两种模型肿瘤中的量子点能迅速迁移至前哨淋巴结。具有末端羧基、氨基或甲氧基的聚乙二醇包覆量子点均以相似的方式从肿瘤迁移至周围淋巴结。通过皮肤可动态观察到量子点从肿瘤经淋巴管至相邻淋巴结的过程;通常至少可确定两个淋巴结。尸检时的成像证实量子点局限于淋巴系统,并表明前哨淋巴结易于标记以便进行病理学检查。对通过量子点定位确定的前哨淋巴结进行检查发现,至少部分前哨淋巴结含有转移性肿瘤病灶。