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  2. Drug delivery - Wikipedia

    en.wikipedia.org/wiki/Drug_delivery

    Drug delivery systems have been around for many years, but there are a few recent applications of drug delivery that warrant 1. Drug delivery to the brain: Many drugs can be harmful when administered systemically; the brain is very sensitive to medications and can easily cause damage if a drug is administered directly into the bloodstream.

  3. Drug carrier - Wikipedia

    en.wikipedia.org/wiki/Drug_carrier

    A drug carrier or drug vehicle is a substrate used in the process of drug delivery which serves to improve the selectivity, effectiveness, and/or safety of drug administration. [1] Drug carriers are primarily used to control the release of drugs into systemic circulation.

  4. 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 ...

  5. 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 ...

  6. Route of administration - Wikipedia

    en.wikipedia.org/wiki/Route_of_administration

    Neural drug delivery is the next step beyond the basic addition of growth factors to nerve guidance conduits. Drug delivery systems allow the rate of growth factor release to be regulated over time, which is critical for creating an environment more closely representative of in vivo development environments.

  7. 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.

  8. Intranasal drug delivery - Wikipedia

    en.wikipedia.org/wiki/Intranasal_drug_delivery

    The first drug delivery system is often dated to the 1950s, when Smith Kline & French Laboratories introduced the Spansule technology. [2] Between 1950s and 1980s, there were four drug release systems developed for oral and transdermal applications: dissolution, diffusion, osmosis, and ion-exchange controlled release. [3]

  9. Stretch-triggered drug delivery - Wikipedia

    en.wikipedia.org/.../Stretch-triggered_drug_delivery

    An application of stretch-triggered drug delivery systems is the delivery of chemotherapy triggered by esophageal stent expansion. [4] Also, the incorporation of several drugs into stretch-triggered autonomous drug release systems is a possibility, allowing drugs to be released by the same or different signals. [ 1 ]