Photoluminescent Hybrids of Cellulose Nanocrystals and Carbon Quantum Dots as Cytocompatible Probes for in Vitro Bioimaging.
Jiaqi GuoDongfei LiuIlari FilpponenLeena-Sisko JohanssonJani-Markus MalhoSakeena QuraishiFalk W LiebnerHélder Almeida SantosOrlando J RojasPublished in: Biomacromolecules (2017)
We present an approach to construct biocompatible and photoluminescent hybrid materials comprised of carbon quantum dots (CQDs) and TEMPO-oxidized cellulose nanocrystals (TO-CNCs). First, the amino-functionalized carbon quantum dots (NH2-CQDs) were synthesized using a simple microwave method, and the TO-CNCs were prepared by hydrochloric acid (HCl) hydrolysis followed by TEMPO-mediated oxidation. The conjugation of NH2-CQDs and TO-CNCs was conducted via carbodiimide-assisted coupling chemistry. The synthesized TO-CNC@CQD hybrid nanomaterials were characterized using X-ray photoelectron spectroscopy, cryo-transmittance electron microscopy, confocal microscopy, and fluorescence spectroscopy. Finally, the interactions of TO-CNC@CQD hybrids with HeLa and RAW 264.7 macrophage cells were investigated in vitro. Cell viability tests suggest the surface conjugation with NH2-CQDs not only improved the cytocompatibility of TO-CNCs, but also enhanced their cellular association and internalization on both HeLa and RAW 264.7 cells after 4 and 24 h incubation.
Keyphrases
- quantum dots
- room temperature
- energy transfer
- cell cycle arrest
- electron microscopy
- high resolution
- ionic liquid
- induced apoptosis
- single molecule
- sensitive detection
- cell death
- pi k akt
- signaling pathway
- hydrogen peroxide
- endoplasmic reticulum stress
- nitric oxide
- adipose tissue
- computed tomography
- mass spectrometry
- solid state
- cell proliferation
- contrast enhanced
- low density lipoprotein