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Ultra-High Signal Detection of Human Embryonic Stem Cells Driven by Two-Dimensional Materials
Journal article   Peer reviewed

Ultra-High Signal Detection of Human Embryonic Stem Cells Driven by Two-Dimensional Materials

Sophia S. Y. Chan, Yaw Sing Tan, Kan-Xing Wu, Christine Cheung and Desmond K. Loke
ACS applied bio materials, Vol.1(2), pp.210-215
20/08/2018
PMID: 35016385

Abstract

Materials Science Materials Science, Biomaterials Nanoscience & Nanotechnology Science & Technology Science & Technology - Other Topics Technology
We observed a unique bioelectric signal of human embryonic stem cells using direct current-voltage measurements facilitated by few-layered 2D-MoS2 sheets. A 1.828 mA cell signal was achieved (2 orders of magnitude higher than previous electrical-based detection methods) as well as multiple cell reading cycles demonstrating I similar to 1.9 mA. Native stem cell proliferation, viability, and pluripotency were preserved. Molecular dynamics simulations elucidated the origin of the 2D-MoS2 sheet-assisted increase in current flow. This paves the way for the development of a broadly applicable, fast, and damage-free stem cell detection method capable of identifying pluripotency with virtually any complementary-metal-oxide-semiconductor circuits.

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