Therapeutic Agent Delivery

Therapeutic agent delivery is the design of methods that transport a drug, biologic, or genetic payload to its intended site of action while preserving activity and limiting off-target exposure. In neuroscience, delivery must address barriers such as the blood-brain barrier, so researchers use approaches including local administration, carrier systems, or controlled release to regulate tissue access, concentration, and duration. These strategies support treatment studies for neurological disorders by improving drug distribution and enabling agents to reach specific brain or spinal cord regions. Effective delivery can increase therapeutic benefit, reduce toxicity, and clarify how targeted interventions influence neural circuits and disease mechanisms.

Therapeutic Agent Delivery - Related Videos

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JoVE EoE - Neurotherapeutics

Microinjection-Based Delivery of a Therapeutic Agent into an Awake Rodent Brain

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2025

Source: Poland, R. et al. Rodent Brain Microinjection to Study Molecular Substrates of Motivated Behavior. J. Vis. Exp. (2015)In this video, a water-filled microinjection setup consisting of a syringe and microinjector tubing is used for precise drug delivery. A rat with a pre-implanted guide cannula undergoes targeted brain microinjection, enabling accurate administration of therapeutic agents in awake animals with minimal tissue damage.

Delivery of Therapeutic Agents Through Intracerebroventricular (ICV) and Intravenous (IV) Injection in Mice

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Cited by 122 •

2011

This article demonstrates two very different methods of injection: 1) into the brain (intracerebroventricular) and 2) systemic (intravenous) to introduce the therapeutic agents into the central nervous system of neonatal mice.

Testing the Efficacy of Pharmacological Agents in a Pericardial Target Delivery Model in the Swine

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Cited by 4 •

2016

We have developed a swine model for the target delivery of pharmacological agents within the pericardial space/fluid. Using this approach, the relative benefits of administered agents on induced atrial fibrillation, relative refractory periods and/or ischemic protection can be investigated.

Delivery of Therapeutic siRNA to the CNS Using Cationic and Anionic Liposomes

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Cited by 18 •

2016

The goal of this protocol is to use cationic/anionic liposomes with a neuro-targeting peptide as a CNS delivery system to enable siRNA to cross the BBB. The optimization of a delivery system for treatments, like siRNA, would allow for more treatment options for prion and other neurodegenerative diseases.

Disposable Dosators for Pulmonary Insufflation of Therapeutic Agents to Small Animals

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Cited by 10 •

2017

During development of drugs for pulmonary delivery, it is necessary to evaluate pharmacokinetics and efficacy in an animal model. We present a method to build a disposable aerosol dispersion system from of-the-shelf components that can be used to administer intrapulmonary dry powder aerosol to rodents.

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