Bioconjug Chem. 2019 May 15;30(5):1575-1583. doi: 10.1021/acs.bioconjchem.9b00279. Epub 2019 Apr 30.
The innocent silicon quantum dots (SQDs) having dual emissive property (blue in VIS and red in NIR), high photostability, and freedom from auto fluorescence are designed and synthesized for the first time using ethylene glycol. A new attempt has been made for direct labeling of Alpha 2-HS-Glycoprotein (Fetuin A) through functionalization of the synthesized dots by EDC coupling. The SQDs were characterized by FTIR, TEM, AFM, XRD, EDX, DLS, and TGA. The chemistry involved in the synthesis and functionalization of dots is elucidated in detail. The synthesized SQDs are suitable for live cell imaging as well as direct labeling of the Fetuin A in the NIR region. The direct labeling technique developed for Fetuin A imaging is robust, more specific, and simple, and reduces the number of incubation and washing steps and produces better quality data compared to the conventional method using Rhodamine B.
首次使用乙二醇设计并合成了具有双发射特性(VIS 下为蓝色,NIR 下为红色)、高光稳定性和无自发荧光的纯净硅量子点(SQDs)。通过 EDC 偶联对合成的量子点进行功能化,首次尝试直接对 Alpha 2-HS-糖蛋白(胎球蛋白 A)进行标记。通过 FTIR、TEM、AFM、XRD、EDX、DLS 和 TGA 对 SQDs 进行了表征。详细阐明了合成和功能化量子点涉及的化学反应。所合成的 SQDs 既适合用于活细胞成像,也适合在 NIR 区域直接标记胎球蛋白 A。与使用 Rhodamine B 的传统方法相比,为胎球蛋白 A 成像开发的直接标记技术更稳健、更具特异性且更简单,并且减少了孵育和洗涤步骤的数量,产生了更好质量的数据。