Alpha-tocopherol conjugated DNA tetrahedron with enhanced cellular uptake and selective cytotoxicity for cancer therapeutics
Chithra, P.; Vaswani, P.; Bhatia, D. D.
Show abstract
One of the most fatal diseases in the world, cancer, lacks proper therapies that are toxic to cancer cells and specifically kill them. A newly emerging field, DNA nanotechnology facilitates the design of programmable, biocompatible DNA-based nanostructures, with applications spanning drug delivery, biosensing, and a number of applications in biomedical and therapeutics. However, the negatively charged outer leaflet of the plasma membrane poses challenges for the uptake of negatively charged DNA nanostructures. Strategies such as functionalizing DNA nanostructures with cationic lipids have been attempted, but these approaches have yielded conflicting results and certain limitations including stability and ambiguity of lipid functionalisation. Additionally, drug delivery using DNA tetrahedron (TD) and other conventional therapies has shown off-target effects due to the non-specificity of the drug. To address these challenges, this study utilizes a hydrophobic molecule, alpha-tocopherol succinate (AT), known for its selective cytotoxicity towards malignant cells over normal cells at appropriate concentrations. Covalently conjugating AT with TD preserved its selective toxicity property and enhance the cellular internalisation of DNA tetrahedron in specific cell lines. ROS generation was increased and led to apoptosis in malignant cell lines specifically. This suggests the development of a novel system with specific cytotoxicity towards cancer cells with increased uptake.
Matching journals
The top 11 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Multifunctional Molecular Hybrid for Targeted Colorectal Cancer Cells: Integrating Doxorubicin, AS1411 Aptamer, and T9/U4 ASO 96%
- A Priori Activation of Apoptosis Pathways of Tumor (AAAPT) Technology: Development of Targeted Apoptosis Initiators for Cancer Treatment. 95%
- Cannabis sativa (Hemp) seed-derived peptides WVYY and PSLPA modulate the Nrf2 signaling pathway in human keratinocytes 95%
Similar papers in this journal
- Tackling Anticancer Drug Resistance and Endosomal Escape in Aggressive Brain Tumors Using Bioelectronics 95%
- Plausible Mechanistic Insights in Biofilm Eradication Potential of against Candida spp. using In Situ Synthesized Tyrosol Functionalized Chitosan Gold Nanoparticles as a versatile Antifouling Coating on Implant Surfaces 95%
- The effect of COVID-19 mRNA vaccine on human lung carcinoma cells in vitro by means of Raman spectroscopy and imaging. 94%
Similar papers in this journal
- Potassium ferric oxalate nanoparticles prevent human blood clotting and thrombosis in a mouse model 94%
- Rapid and Effective Inactivation of SARS-CoV-2 by a Cationic Conjugated Oligomer with Visible Light: Studies of Antiviral Activity in Solutions and on Supports 94%
- Spatial and temporal control of CRISPR/Cas9-mediated gene editing delivered via a light-triggered liposome system 93%
Similar papers in this journal
- Nanoparticles with Curcumin and Piperine Modulate Steroid Biosynthesis in Prostate Cancer 96%
- Low dose Cold Atmospheric Plasma induces membrane oxidation, stimulates endocytosis and enhances uptake of nanomaterials in Glioblastoma multiforme cells 96%
- Optical tuning of polymer functionalized zinc oxide quantum dots as a selective probe for specific detection of antibiotics 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.