Drug Delivery Systems

Drug delivery systems are engineered approaches that transport therapeutic agents to specific tissues or cells while controlling when and how much drug becomes available. They may use carriers such as nanoparticles, liposomes, polymers, or hydrogels that protect cargo, improve solubility, and release it through diffusion, degradation, or responses to local conditions. In bioengineering, these systems help address barriers including poor drug stability, limited tissue penetration, and unwanted side effects. Their design supports targeted therapy, sustained dosing, and delivery of biologics or nucleic acids, advancing treatments for cancer, infection, genetic disease, and tissue repair.

Drug Delivery Systems - Related Videos

Education

JoVE Core - Pharmacokinetics and Pharmacodynamics

Transdermal Drug Delivery Systems

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2026

Transdermal drug delivery systems (TDDS) enable the controlled release of drugs across the skin into systemic circulation. They are particularly advantageous for drugs with short half-lives or narrow therapeutic indices, as they maintain consistent plasma concentrations and reduce the risk of subtherapeutic or toxic levels.TDDS are categorized into monolithic, reservoir, and mixed systems. Monolithic systems embed the drug in a polymer matrix, where diffusion governs release. Reservoir systems...

Ophthalmic Drug Delivery Systems

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2026

Ophthalmic drug delivery faces major limitations due to poor absorption across the corneal membrane. This process is primarily driven by diffusion and is influenced by two main factors: the physicochemical properties of the drug and tear drainage. Most ophthalmic drugs, such as pilocarpine, epinephrine, atropine, and local anesthetics, are weak bases. They are typically formulated at an acidic pH to enhance chemical stability. However, this leads to high ionization, reducing their ability to...

Drug Delivery Systems: Different Types

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2026

Conventional oral drug products, termed immediate-release (IR) formulations, are engineered to promptly release their active pharmaceutical ingredient (API) upon ingestion, typically in tablets or capsules. This rapid release often results in swift drug absorption and consequent pharmacodynamic effects, although the timing and intensity can vary depending on the drug's properties. Prodrugs within these formulations require metabolic conversion to activate their pharmacodynamic effects,...

Intrauterine Drug Delivery Systems

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2026

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...

Research

JoVE Journal - Bioengineering

Models and Methods to Evaluate Transport of Drug Delivery Systems Across Cellular Barriers

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Cited by 58 •

2013

Many therapeutic applications require safe and efficient transport of drug carriers and their cargoes across cellular barriers in the body. This article describes an adaptation of established methods to evaluate the rate and mechanism of transport of drug nanocarriers (NCs) across cellular barriers, such as the gastrointestinal (GI) epithelium.

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