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Parenteral Drug Delivery Systems: Injectables, Implants, and Infusion Devices01:28

Parenteral Drug Delivery Systems: Injectables, Implants, and Infusion Devices

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Parenteral drug delivery systems play a crucial role in modern therapeutics by enabling the direct administration of drugs into the systemic circulation, bypassing the gastrointestinal tract. These systems are particularly valuable for poorly absorbed oral medications that are unstable in the digestive environment or require rapid onset or sustained therapeutic levels. Delivery is achieved through intravenous, intramuscular, or subcutaneous routes, each selected based on the drug's properties...
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Controlled-release systems for intravaginal and intrauterine drug delivery have been developed primarily for the administration of contraceptive steroid hormones. These delivery routes circumvent first-pass hepatic metabolism, thereby enhancing bioavailability and allowing for reduced systemic dosages compared to oral administration. Such approaches contribute to improved therapeutic efficacy and patient compliance, particularly in long-term contraceptive regimens.Intravaginal Drug Delivery...
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Cleaning, disinfection, and sterilization are the methods that help to break the infection chain and prevent disease.
Cleaning
The cleaning process usually involves using water with detergents or enzymatic cleaner and removing foreign material from objects and surfaces, including organic material such as body fluids or inorganic material like soil. Cleaning is performed before high-level disinfection and sterilization because foreign materials on the cover of the devices interfere with process...
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Modified-Release Drug Delivery Systems: Classification01:23

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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...
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Modified-Release Drug Delivery Systems: Overview01:19

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Modified-release dosage forms are designed to address the limitations of drugs with short biological half-lives. These forms maintain stable therapeutic drug concentrations over extended periods, reducing the need for frequent dosing. A consistent drug level helps minimize peak-trough fluctuations, which can reduce adverse effects, lower the risk of drug resistance, and improve overall treatment effectiveness.One common type of modified-release form is the extended-release (ER) formulation. ER...
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In healthcare, the chemical method of sterilization uses chemical sterilants to treat surgical instruments and medical supplies to help prevent the transmission of infectious pathogens to patients. Due to heat sensitivity, most medical supplies and equipment should not be exposed to high temperatures. These parts include rubber, plastic, glass, and other similar elements.
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Sterile Product Packaging and Delivery Systems.

Michael J Akers

    International Journal of Pharmaceutical Compounding
    |February 20, 2016
    PubMed
    Summary

    This article reviews conventional and advanced product container and delivery systems. It covers six container systems, primary packaging innovations, and needle technology advancements.

    Area of Science:

    • Pharmaceutical Packaging
    • Drug Delivery Systems
    • Medical Device Technology

    Background:

    • Product container and delivery systems are crucial for pharmaceutical and medical applications.
    • Continuous innovation is needed to improve product stability, safety, and efficacy.

    Purpose of the Study:

    • To provide an overview of current product container and delivery systems.
    • To discuss advancements in primary packaging and needle technology.

    Main Methods:

    • Review of six different product container systems.
    • Discussion of innovations in primary packaging for specialized delivery.
    • Examination of advancements in needle technology.

    Main Results:

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  • Six distinct product container systems are detailed.
  • New developments in primary packaging for enhanced delivery are presented.
  • Progress in needle technology is highlighted.
  • Conclusions:

    • The article offers a comprehensive look at container and delivery system evolution.
    • Understanding these advancements is key for future product development.