Cancer Selective Turn-On Fluorescence Imaging Using a Biopolymeric Nanocarrier
Overview
Biology
Molecular Biology
Affiliations
Most nanoparticle-based bioresearch for clinical applications is unable to overcome the clinical barriers of efficacy (e.g., sensitivity and selectivity), safety for human use, and scalability for mass-production processes. Here, we proposed a promising concept of using a biocompatible nanocarrier that delivers natural fluorescent precursors into cancerous cells. The nanocarrier is a biopolymeric nanoparticle that can be easily loaded with fluorescent precursors to form a fluorescent moiety via a biosynthesis pathway. Once delivered into cancerous cells, the nanocarriers are selectively turned on and distinctively fluoresce upon excitation. We, therefore, demonstrated the efficacy of the selective turn-on fluorescence of the nanocarriers in in vitro coculture models and in vivo tumor-bearing models.
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Parhi R, Kaishap P, Jena G ADMET DMPK. 2024; 12(1):107-150.
PMID: 38560710 PMC: 10974823. DOI: 10.5599/admet.2088.
Lee S, Lee K Pharmaceutics. 2020; 12(6).
PMID: 32545164 PMC: 7355973. DOI: 10.3390/pharmaceutics12060537.