Multifunctional biocompatible graphene oxide quantum dots decorated magnetic nanoplatform for efficient capture and two-photon imaging of rare tumor cells.

Yongliang Shi, Avijit Pramanik, Christine Tchounwou, Francisco Pedraza, Rebecca A Crouch, Suhash Reddy Chavva, Aruna Vangara, Sudarson Sekhar Sinha, Stacy Jones, Dhiraj Sardar, Craig Hawker, Paresh Chandra Ray

Journal: ACS applied materials & interfaces 2016;7(20):10935-43

PMID: 25939643

Abstract

Circulating tumor cells (CTCs) are extremely rare cells in blood containing billions of other cells. The selective capture and identification of rare cells with sufficient sensitivity is a real challenge. Driven by this need, this manuscript reports the development of a multifunctional biocompatible graphene oxide quantum dots (GOQDs) coated, high-luminescence magnetic nanoplatform for the selective separation and diagnosis of Glypican-3 (GPC3)-expressed Hep G2 liver cancer tumor CTCs from infected blood. Experimental data show that an anti-GPC3-antibody-attached multifunctional nanoplatform can be used for selective Hep G2 hepatocellular carcinoma tumor cell separation from infected blood containing 10 tumor cells/mL of blood in a 15 mL sample. Reported data indicate that, because of an extremely high two-photon absorption cross section (40530 GM), an anti-GPC3-antibody-attached GOQDs-coated magnetic nanoplatform can be used as a two-photon luminescence platform for selective and very bright imaging of a Hep G2 tumor cell in a biological transparency window using 960 nm light. Experimental results with nontargeted GPC3(-) and SK-BR-3 breast cancer cells show that multifunctional-nanoplatform-based cell separation, followed by two-photon imaging, is highly selective for Hep G2 hepatocellular carcinoma tumor cells.

Address: †Department of Chemistry and Biochemistry, Jackson State University, Jackson, Mississippi 39217, United States.; ‡Department of Physics and Astronomy, University of Texas at San Antonio, San Antonio, Texas 78249, United States.; §Department of Chemistry and Biochemistry and Materials Research Laboratory, Materials Department, University of California at Santa Barbara, Santa Barbara, California 93106, United States.
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