A nanoporous matrix co-confines parahydrogen and target molecules to boost spin polarization without cryogenic DNP or microwave hardware.
Combining anti-parasitic agents with autophagy inhibitors helps overcome rapid drug resistance and improve chemotherapy response in pancreatic and liver cancers.
A low-endotoxin A38C-ALEXA647 probe boosts tumor signal-to-noise ratio, enabling detection of microscopic carcinoma nodules during surgery.
Zwitterionic fluorophores pair antigen-specific vectors with charge balance to reduce background uptake and improve NIR target-to-background ratio.
Replacing gadolinium or manganese, iron-containing hemin agents enhance T1 relaxation while supporting biodegradability and improved biosafety.
Low-PLQY NIR-II dyes limit biological imaging; redox-switchable TTFtt bimetallic complexes offer bright, air- and water-stable emission.
This method dissolves gas in cell culture medium at controlled pH and temperature before measuring cell function.
Multi-arm polymers combine radiopaque aromatic groups with hydrophilic functionality to stabilize hydrogels visible on planar X-ray imaging.
A pharmaceutical formulation merges a liver-specific agent with a non-specific gadolinium chelate to provide sustained vascular enhancement.
Pudexacianinium chloride provides near-infrared fluorescence imaging of the ureter through renal excretion.
A pH-controlled precipitation process purifies Fe-tCDTA contrast agents for MRI applications.
SABRE-SHEATH transfers spin order from parahydrogen to heteronuclei using microtesla fields, bypassing complex d-DNP infrastructure.
SR101 staining resolves the contradiction between frozen section speed and antibody accuracy by providing immediate molecular diagnosis during surgery.
Lyophilised cMet peptide formulations prevent agglomeration and degradation during storage, ensuring homogeneity for intravenous administration.
A phase transfer process isolates hyperpolarized molecules into aqueous solutions via rapid liquid-liquid extraction.
Split luciferase enzymes bind specific RNA aptamers to produce bioluminescence, eliminating autofluorescence and phototoxicity during live animal tracking.
Macrocyclic tetraamines complex gadolinium to lower osmolality and viscosity in MRI formulations.
CLT antigens induce strong immune responses to treat non small cell lung cancer and cutaneous melanoma.
Hydroxyalkyl modifications increase transmetallation inertness in manganese contrast agents, reducing toxicity risks.
Dummy-fluorescent polypeptides reduce cellular toxicity and photo bleaching while maintaining protein tracking capabilities.
NIR-II imaging probes enable precise in vivo stem cell tracking by coupling fluorescent dyes to protein carriers, overcoming tissue penetration limits.
A fluorophore-labeled uPAR peptide conjugate formulation uses a surfactant to achieve full solubilization in low water environments.
Novel precursors with solubilizing moieties improve reaction yields and polarizations, resolving low solubility challenges in PHIP-SAH methods.
Incorporating 1H-13C-15N sequences into the polymer side chain increases isotopic abundance to resolve background noise limitations in MRI contrast agents.
Segmented fluorine-rich polymers with polyethylene glycol blocks deliver high signal intensity for magnetic resonance imaging applications.
Rigid cyclophanes resist photobleaching and cytotoxicity by confining chromophores within a stable molecular architecture.
A pharmaceutical composition combining caffeine with a partial adenosine A2A receptor agonist to increase coronary blood flow during myocardial imaging.
Imprinted polymer selectively binds and elutes cannabinoids from crude Cannabis extract, reducing heavy metal and pesticide residues by up to 98%.
Linking a metal-binding protein to a targeting peptide enables selective accumulation in specific cells, reducing toxicity to normal tissue.
Protein scaffolds chelate paramagnetic ions to boost relaxivity, resolving low sensitivity limits in cancer diagnostics.
A mucoadhesive oral thin film adheres to mammalian mucous membranes to release active agents via dissolution.
Scaffold protein contrast agents enhance MRI relaxivity through integrated metal ion chelating sites.
Parahydrogen-induced polarization generates hyperpolarized contrast agents to establish RASER activity, bypassing the need for specialized RF coils and cryogenic equipment.
Tetra-arylethylene vinylpyridinium salts accumulate in melanoma mitochondria to disrupt oxidative phosphorylation.
One-pot synthesis of dimeric macrocycles improves yields and cuts reaction times, avoiding intermediate isolation bottlenecks.
Optimized polysaccharides balance solubility at physiological pH with high metal binding capacity for detoxification and medical imaging.
A gadolinium chelate complex formulation process uses pH adjustment to form stable complexes with reduced toxic impurities.
Hydroporphyrin-doped polymer dots resolve the trade-off between water solubility and emission quantum yield, enabling multiplexed bioimaging.