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  2. Targeted drug delivery - Wikipedia

    en.wikipedia.org/wiki/Targeted_drug_delivery

    The conventional drug delivery system is the absorption of the drug across a biological membrane, whereas the targeted release system releases the drug in a dosage form. The advantages to the targeted release system is the reduction in the frequency of the dosages taken by the patient, having a more uniform effect of the drug, reduction of drug ...

  3. Nanoparticle drug delivery - Wikipedia

    en.wikipedia.org/wiki/Nanoparticle_drug_delivery

    Nanoparticle drug delivery systems are engineered technologies that use nanoparticles for the targeted delivery and controlled release of therapeutic agents. The modern form of a drug delivery system should minimize side-effects and reduce both dosage and dosage frequency. Recently, nanoparticles have aroused attention due to their potential ...

  4. Nanoparticles for drug delivery to the brain - Wikipedia

    en.wikipedia.org/wiki/Nanoparticles_for_drug...

    This was a huge breakthrough in the nanoparticle drug delivery field, and it helped advance research and development toward clinical trials of nanoparticle delivery systems. Nanoparticles range in size from 10 - 1000 nm (or 1 μm) and they can be made from natural or artificial polymers, lipids, dendrimers, and micelles. [1] [5] Most polymers ...

  5. Nanocarrier - Wikipedia

    en.wikipedia.org/wiki/Nanocarrier

    Nanocarriers are useful in the drug delivery process because they can deliver drugs to site-specific targets, allowing drugs to be delivered in certain organs or cells but not in others. Site-specificity is a major therapeutic benefit as it prevents drugs from being delivered to the wrong places.

  6. Lipid-based nanoparticle - Wikipedia

    en.wikipedia.org/wiki/Lipid-based_nanoparticle

    Solid lipid nanoparticles can function as the basis for oral and parenteral drug delivery systems. SLNs combine the advantages of lipid emulsion and polymeric nanoparticle systems while overcoming the temporal and in vivo stability issues that troubles the conventional as well as polymeric nanoparticles drug delivery approaches. [10]

  7. PH-responsive tumor-targeted drug delivery - Wikipedia

    en.wikipedia.org/wiki/PH-responsive_tumor...

    These drug delivery systems have been created to react to the pH environment of diseased or cancerous tissues, triggering structural and chemical changes within the drug delivery system. [3] This form of targeted drug delivery is to localize drug delivery, prolongs the drug's effect, and protect the drug from being broken down or eliminated by ...

  8. Stimuli-responsive drug delivery systems - Wikipedia

    en.wikipedia.org/wiki/Stimuli-responsive_drug...

    Systems used with pH-responsive polymers include implantable hydrogels and micro- and nanoparticles. pH-responsive drug delivery systems are particularly suitable for the design of chemotherapeutic delivery systems due to the naturally low pH found in tumor microenvironments, but can be applied in other disease settings where the pH of the ...

  9. Drug delivery - Wikipedia

    en.wikipedia.org/wiki/Drug_delivery

    Interest in targeted drug delivery has grown drastically due to its potential implications in the treatment of cancers and other chronic diseases. [23] [24] [25] In order to achieve efficient targeted delivery, the designed system must avoid the host's defense mechanisms and circulate to its intended site of action. [26]