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  4. Tissue-Derived Primary Cell Type Dictates the Endocytic Uptake Route of Carbon Quantum Dots and In Vivo Uptake
 
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Tissue-Derived Primary Cell Type Dictates the Endocytic Uptake Route of Carbon Quantum Dots and In Vivo Uptake

Source
ACS Applied Bio Materials
Date Issued
2023-04-17
Author(s)
Yadav, Pankaj
Shah, Krupa
Kansara, Krupa
Kumar, Ashutosh
Rawal, Rakesh
Bhatia, Dhiraj  
DOI
10.1021/acsabm.3c00072
Volume
6
Issue
4
Abstract
Carbon quantum dots (CQDs) require systemic biological delivery to advance their applications in drug delivery, biosensing, and bioimaging. We describe the endocytic pathways of green-emitting fluorescent carbon quantum dots (GCQDs) with sizes varying from 3 to 5 nm in mouse tissue-derived primary cells, tissues, and zebrafish embryos. The GCQDs demonstrated cellular internalization into mouse kidney and liver primary cells via a clathrin-mediated pathway. Using imaging, we were able to identify and reinforce the animal’s body features in terms of different tissues exhibiting differential affinity for these CQDs, which will be extremely beneficial in the development of next-generation bioimaging and therapeutic scaffolds based on carbon-based quantum dots.
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URI
http://repository.iitgn.ac.in/handle/IITG2025/26828
Subjects
carbon quantum dots | clathrin-mediated pathway | endocytosis | nanomaterial | nanoparticles | tissue-derived primary cells
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