Literature DB >> 33078175

Highly luminescent biocompatible CsPbBr3@SiO2 core-shell nanoprobes for bioimaging and drug delivery.

Pawan Kumar1, Madhumita Patel2, Chanho Park1, Hyowon Han1, Beomjin Jeong1, Hansol Kang1, Rajkumar Patel3, Won-Gun Koh2, Cheolmin Park1.   

Abstract

The encapsulation of lead halide perovskite nanocrystals (PNCs) with an inert protective layer against moisture and the environment is a promising approach to overcome hinderances for their practical use in optoelectronic and biomedical applications. Herein, a facile method for synthesizing highly luminescent and biocompatible CsPbBr3@SiO2 core-shell PNCs with a controlled SiO2 thickness, which are suitable for both cell imaging and drug delivery, is reported. The synthesized CsPbBr3@SiO2 core-shell PNCs exhibit bright green emission at 518 nm upon excitation of 374 nm. Interestingly, a significant increase in the photoluminescence intensity is observed with an increase in the SiO2 shell thickness, which varies with the increasing reaction time. Cytotoxicity results indicate that the CsPbBr3@SiO2 core-shell PNCs are nontoxic, making them suitable for in vitro cell imaging using HeLa cells. Furthermore, doxorubicin physically adsorbed on the surface of CsPbBr3@SiO2 core-shell PNCs is efficiently released in cells when the drug-loaded perovskite nanoprobes are injected in the cells, indicating that these core-shell nanoparticles can be used for drug loading and delivery. The results of this study suggest that the CsPbBr3@SiO2 core-shell PNCs can pave the way for new biomedical applications and processes.

Entities:  

Year:  2020        PMID: 33078175     DOI: 10.1039/d0tb01833c

Source DB:  PubMed          Journal:  J Mater Chem B        ISSN: 2050-750X            Impact factor:   6.331


  1 in total

1.  Highly Emitting Perovskite Nanocrystals with 2-Year Stability in Water through an Automated Polymer Encapsulation for Bioimaging.

Authors:  Sahitya Kumar Avugadda; Andrea Castelli; Balaji Dhanabalan; Tamara Fernandez; Niccolo Silvestri; Cynthia Collantes; Dmitry Baranov; Muhammad Imran; Liberato Manna; Teresa Pellegrino; Milena P Arciniegas
Journal:  ACS Nano       Date:  2022-08-01       Impact factor: 18.027

  1 in total

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