Multi-Color Magneto-Fluorescent Nanoarchitectures for the Targeted Identification of Exosomes of Triple Negative Breast Cancer
Overview
With rising mortality caused by breast cancer, it is necessary to develop early diagnostic techniques for rapid identification, prior to metastasis. Triple negative breast cancer (TNBC) makes up 10-15% of breast cancers and is characterized by its lack of estrogen, progesterone, and HER-2 receptors. This lack of receptors leads to an absence of targeted therapeutics and higher mortality rates, underscoring the need for early detection. Exosomes are extracellular vesicles found abundantly in the blood, containing biomarkers specific to the cell they originated from. If the presence of multiple exosomes of TNBC in the blood could be detected, then that would enable early detection as well as provide further insight into cancer behavior and prediction of optimal treatment options. In this study, we report the design of fruit-based magneto-fluorescent carbon dot nanoarchitectures for the identification of exosomes associated with TNBC. Yellow, green, and blue carbon dots were prepared using orange peel, yellow melon, and cantaloupe organic material. The carbon dots were coupled with amine functionalized Fe2O3 magnetic nanoparticles (MNPs) using the EDC/NHS coupling method. The MNP-carbon dot composites were conjugated with aptamers to form magneto-fluorescent nanoarchitectures. The nanoarchitectures were then employed in mixed exosome environments, displaying good specificity to the Tenascin C, ubiquitin carboxyl terminal hydrolase L1, and Programmed Cell Death Ligand-1 exosomes enabling multi-exosome detection of TNBC.
Competition history
- ISEF 2025
Resources
Related projects
JSHS · 2025
Multi-Color Magneto-Fluorescent Nanoarchitectures for the Targeted Identification of Exosomes of Triple Negative Breast Cancer
JSHS · 2024
Early Detection of Triple Negative Breast Cancer using Multi -Functional Magneto -Fluorescent Carbon Dots
ISEF · 2020
Detecting and Imaging Triple Negative Breast Cancer Using Water-Soluble Perovskite Quantum Dots
ISEF · 2024
TNBCnano: Novel Layer-By-Layer Nanoparticles for Systemic Combination Delivery of MRP1 siRNA and Doxorubicin for Triple-Negative Breast Cancer Treatment
ISEF · 2018
Nanoparticle-Mediated Sorting of Circulating Tumor Cells
ISEF · 2025
Single-Cell Analysis Based Identification of Unique Markers and Metastasis Mechanism in Triple-Negative Breast Cancer
ISEF · 2017
Developing a Nanoscale DLD Array Using Immunosignature-Derived Aptamers to Effectively Separate and Analyze Tumor Exosomes
ISEF · 2020
Targeted Breast Cancer Therapy Using Nanoparticles Modified by Tumor-Homing Peptides
Closest projects by meaning, across every fair and year in the corpus.
Browse more like this
Source: Regeneron International Science and Engineering Fair