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Modified-Release Drug Delivery Systems: Rate-Programmed II01:19

Modified-Release Drug Delivery Systems: Rate-Programmed II

Rate-programmed drug delivery systems release drugs in a controlled manner to maintain therapeutic levels. Three main designs include reservoir, matrix, and hybrid systems.Reservoir systems consist of a drug core enclosed within a membrane that controls drug release. In non-swelling reservoir systems, polymers like ethyl cellulose or polymethacrylates are used. These do not hydrate in aqueous media and control release through membrane thickness, porosity, or insolubility. This type includes...
Modified-Release Drug Delivery Systems: Rate-Programmed I01:22

Modified-Release Drug Delivery Systems: Rate-Programmed I

Rate-programmed drug delivery systems (DDS) are designed to release drugs at specific, controlled rates to maintain consistent therapeutic levels. These systems are categorized based on their release mechanisms, including dissolution-controlled DDS, diffusion-controlled DDS, and combined dissolution-diffusion-controlled DDS.In dissolution-controlled DDS, the release rate depends on the slow dissolution of the drug itself or the surrounding matrix. Drugs with inherently slow dissolution rates,...
Site-Targeted Drug Delivery Systems: Polymeric Carriers01:24

Site-Targeted Drug Delivery Systems: Polymeric Carriers

Polymeric carriers enhance targeted drug delivery by increasing efficacy while minimizing off-target effects. These carriers comprise a biodegradable polymeric backbone integrated with functional elements that enable targeting, improve physicochemical properties, and regulate drug release.Targeting MechanismsThe targeting ability of polymeric carriers is mediated by a homing device, which is a molecular recognition component designed to selectively bind to specific tissues or cells. Monoclonal...
Modified-Release Drug Delivery Systems: Classification01:23

Modified-Release Drug Delivery Systems: Classification

Modified-release drug delivery systems improve drug efficacy and minimize side effects by controlling the rate and location of drug release. These systems fall into three categories: rate-programmed, stimuli-activated, and site-targeted.Rate-programmed systems release drugs at a predetermined rate, maintaining consistent therapeutic levels and reducing fluctuations that could lead to toxicity or subtherapeutic effects. These systems use polymeric matrices, reservoir-based designs, or osmotic...
Modified-Release Drug Delivery Systems: Stimuli-Activated01:30

Modified-Release Drug Delivery Systems: Stimuli-Activated

Stimuli-activated drug delivery systems are designed to release drugs in response to specific physical, chemical, or biological stimuli. These systems often utilize hydrogels—three-dimensional, hydrophilic polymer networks capable of swelling in aqueous environments and retaining significant fluid volumes. Upon exposure to particular stimuli, these hydrogels undergo structural transitions that allow the embedded drug to be released. Due to this adaptive behavior, such systems are also called...
Bioplastics01:27

Bioplastics

Bioplastics derived from microbial processes present a sustainable alternative to conventional petroleum-based plastics. Among these, polyhydroxyalkanoates (PHAs), particularly polyhydroxybutyrates (PHBs), have emerged as prominent candidates due to their biodegradability and biocompatibility. These polymers are synthesized by a variety of bacteria, such as Cupriavidus necator and Pseudomonas putida, which naturally accumulate PHAs as intracellular carbon and energy reserves, especially under...

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Related Experiment Video

Updated: May 7, 2026

Production of Near-Infrared Sensitive, Core-Shell Vaccine Delivery Platform
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Production of Near-Infrared Sensitive, Core-Shell Vaccine Delivery Platform

Published on: October 20, 2020

Highest Efficiency Two-Photon Degradable Copolymer for Remote Controlled Release.

Jason Olejniczak1, Jagadis Sankaranarayanan, Mathieu L Viger

  • 1Department of Chemistry and Biochemistry, University of California at San Diego, La Jolla, California 92093.

ACS Macro Letters
|September 18, 2013
PubMed
Summary

Researchers developed a novel polymer that degrades when exposed to near-infrared (NIR) light. This NIR-triggered photocleavage enables on-demand release and photopatterning applications.

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Facile Synthesis of Worm-like Micelles by Visible Light Mediated Dispersion Polymerization Using Photoredox Catalyst
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Facile Synthesis of Worm-like Micelles by Visible Light Mediated Dispersion Polymerization Using Photoredox Catalyst

Published on: June 8, 2016

Area of Science:

  • Polymer Chemistry
  • Materials Science
  • Photochemistry

Background:

  • Limited availability of polymers responsive to near-infrared (NIR) light for degradation.
  • Need for advanced materials enabling controlled release and photopatterning.

Purpose of the Study:

  • Introduce a new polymer with efficient NIR-triggered photocleavage capabilities.
  • Investigate the polymer's degradation mechanism upon light absorption.
  • Demonstrate the potential for controlled cargo release.

Main Methods:

  • Synthesis of a novel polymer incorporating photocleavable moieties.
  • Gel permeation chromatography to analyze backbone scission.
  • Proton Nuclear Magnetic Resonance (1H NMR) spectroscopy to confirm cleavage.
  • Formulation of polymer particles encapsulating a model dye.

Main Results:

  • The polymer demonstrated rapid backbone scission upon exposure to both UV-Vis and NIR light via two-photon absorption.
  • 1H NMR confirmed the cleavage of photosensitive groups.
  • Encapsulated dye release was successfully triggered by UV-Vis and NIR irradiation, evidenced by fluorescence changes.

Conclusions:

  • The novel polymer exhibits efficient photocleavage in response to UV-Vis and NIR light.
  • This material holds significant potential for applications in photopatterning and on-demand release systems.