Linked from
The 28 pages that link to Drug delivery, each with the reason it gives.
ChitinRelated: Chitin derivatives can be formulated as carriers for drugs and other bioactive compounds.
ProdrugRelated: A prodrug can change where and how much active drug becomes available.
Fick's laws of diffusionRelated: Diffusion equations model release and transport from many drug-delivery systems.
MicelleRelated: Polymeric micelles can carry poorly water-soluble drugs through aqueous environments.
NanotechnologyRelated: Nanoscale carriers can protect drugs, alter their distribution, or release them under selected conditions.
AmphiphileRelated: Amphiphilic carriers can package poorly water-soluble drugs for transport.
FullereneRelated: Functionalized fullerene cages have been studied as molecular carriers, though clinical use remains limited.
Pharmaceutical excipientRelated: Some excipients control where, when, or how quickly an active ingredient is released.
HydrogelRelated: Hydrogel networks can encapsulate drugs and release them as the network changes or degrades.
Pharmaceutical formulationNarrower topic: Formulation translates the goal of delivering a drug into a usable product.
AlginateRelated: Alginate gels can encapsulate drugs and release them as the material breaks down or swells.
Critical micelle concentrationRelated: Micelles can carry poorly water-soluble drugs when surfactant concentrations exceed the CMC.
Dosage formNarrower topic: Dosage form is one design choice within the broader task of delivering drugs.
BiomaterialsRelated: Biomaterials can protect drugs and regulate their release at a target site.
BuckminsterfullereneRelated: Modified C₆₀ molecules have been investigated as carriers, though clinical use remains limited.
NanoparticleRelated: Nanoparticles can encapsulate drugs, protect them, and influence their distribution and release.
Bioorthogonal chemistryRelated: Selective reactions can assemble or activate therapeutic compounds at biological sites.
Supramolecular chemistryRelated: Supramolecular carriers can bind drugs and release them under selected conditions.
Host–guest chemistryRelated: Host cavities can solubilize, protect, or release drug molecules.
Polylactic acidRelated: PLA-based particles and implants can release drugs as polymer chains degrade.
Route of administrationNarrower topic: Administration route is one part of the broader problem of delivering a drug effectively.
Gel (colloid)Related: Gel networks can release drugs gradually as they swell, degrade, or diffuse solutes.
Endohedral fullereneRelated: Fullerene cages have been explored as carriers, though practical delivery requires addressing solubility and safety.
PharmaceuticsRelated: Drug delivery overlaps with pharmaceutics but emphasizes transport to target sites.
Applications of soft matterRelated: Soft particles and gels can protect drugs and tune where or when they are released.
HinokitiolRelated: Metal transport by hinokitiol has prompted research into delivering ions to cells.
Medicine (drug or remedy)Related: Delivery methods influence where, when, and how a medicine acts.
Molecular engineeringRelated: Engineered molecules can protect drugs, target tissues, and control release.