Polymeric Micellar Nanoparticles Enable Image-guided Drug Delivery in Solid Tumors
Uddin, M. J.; Lo, J. H.; Gupta, M. K.; Werfel, T. A.; Asaduzzaman, A.; Oltman, C. G.; Gbur, E. F.; mohyuddin, m. T.; nazmin, f.; Rahman, M. S.; Jashim, A.; Crews, B. C.; kingsley, p. J.; Marnett, L. J.; Duvall, C. L.; Cook, R. S.
Show abstract
We report the development of a nanotechnology to co-deliver chemocoxib A with a reactive oxygen species (ROS)-activatable and COX-2 targeted pro-fluorescent probe, fluorocoxib Q (FQ) enabling real time visualization of COX-2 and CA drug delivery into solid cancers, using a di-block PPS135-b-POEGA17 copolymer, selected for its intrinsic responsiveness to elevated reactive oxygen species (ROS), a key trait of the tumor microenvironment. FQ and CA were synthesized independently, then co-encapsulated within micellar PPS135-b-POEGA17 co-polymeric nanoparticles (FQ-CA-NPs), and were assessed for cargo concentration, hydrodynamic diameter, zeta potential, and ROS-dependent cargo release. The uptake of FQ-CA-NPs in mouse mammary cancer cells and cargo release was assessed by fluorescence microscopy. Intravenous delivery of FQ-CA-NPs to mice harboring orthotopic mammary tumors, followed by vital optimal imaging, was used to assess delivery to tumors in vivo. The CA-FQ-NPs exhibited a hydrodynamic diameter of 109.2 {+/-} 4.1 nm and a zeta potential ({zeta}) of -1.59 {+/-} 0.3 mV. Fluorescence microscopy showed ROS-dependent cargo release by FQ-CA-NPs in 4T1 cells, decreasing growth of 4T1 breast cancer cells, but not affecting growth of primary human mammary epithelial cells (HMECs). NP-derived fluorescence was detected in mammary tumors, but not in healthy organs. Tumor LC-MS/MS analysis identified both CA (2.38 nmol/g tumor tissue) and FQ (0.115 nmol/g tumor tissue), confirming the FQ-mediated image guidance of CA delivery in solid tumors. Thus, co-encapsulation of FQ and CA into micellar nanoparticles (FQ-CA-NPs) enabled ROS-sensitive drug release and COX-2-targeted visualization of solid tumors.
Matching journals
The top 8 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Hybrid Adipocyte-Derived Exosome Nano Platform for Potent Chemo-Phototherapy in Targeted Hepatocellular Carcinoma 97%
- {Pi}-{Pi} Interactions Stabilize PeptoMicelle-Based Formulations of Pretomanid Derivatives Leading to Promising Therapy Against Tuberculosis in Zebrafish and Mouse Models 96%
- Ionic liquid-coated lipid nanoparticles demonstrate prolonged circulation and brain uptake via red blood cell hitchhiking 96%
Similar papers in this journal
- Potassium ferric oxalate nanoparticles prevent human blood clotting and thrombosis in a mouse model 95%
- Dual-targeting strategy to repurpose Cetuximab with HFn nanoconjugates for immunotherapy of triple-negative breast cancer 95%
- Paclitaxel-loaded Cationic Fluid Lipid Nanodiscs and Liposomes with Brush-Conformation PEG Chains Penetrate Breast Tumors and Trigger Caspase-3 Activation 94%
Similar papers in this journal
- Optimizing Angiopep-2 Density on Polymeric Nanoparticles for Enhanced Blood-Brain Barrier Penetration and Glioblastoma Targeting: Insights from In Vitro and In Vivo Experiments 97%
- Cold Quad-Modal Nanocomplex for Precise and Quantitative in Vivo Stem Cell Tracking 95%
- iRGD-liposomes enhance tumor delivery and therapeutic efficacy of antisense oligonucleotide drugs against primary prostate cancer and bone metastasis 95%
Similar papers in this journal
- Oxygen-releasing nanodroplets relieve intratumoral hypoxia in head and neck cancer spheroids. 97%
- Construction of mirror-image RNA nanostructure for enhanced biostability and drug delivery efficiency 96%
- Design and synthesis of triazine-based hydrogel for combined targeted doxorubicin delivery and PI3Kinhibition 94%
Similar papers in this journal
- Heparin-derived theranostic nanoprobes overcome the blood-brain barrier and target glioma in murine model 96%
- Organ-restricted vascular delivery of nanoparticles for lung cancer therapy 96%
- The Combination of Morphology and Surface Chemistry Defines the Biological Identity of Nanocarriers in Human Blood 94%
"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.