Drug Aerosol Delivery

Drug aerosol delivery is the administration of therapeutic compounds as airborne droplets or dry particles that can be inhaled into the respiratory tract, enabling targeted treatment of pulmonary disease. Aerosol generators create particles within a suitable aerodynamic size range, while airflow and airway structure determine their transport, deposition, and clearance in the nose, bronchi, or alveoli. In immunology and infection research, this approach supports localized delivery of antimicrobials, vaccines, anti-inflammatory agents, and experimental therapeutics while potentially reducing systemic exposure. It also provides a controlled method for studying host-pathogen interactions, respiratory immune responses, and treatment effectiveness in relevant lung tissues.

Drug Aerosol Delivery - Related Videos

Research

JoVE EoE - Immunotherapy

A Technique to Generate and Deliver Drug Aerosols Directly to Mouse Lungs

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2025

This video demonstrates the generation of drug aerosols and the targeted nose-only delivery of these aerosols to mice using an inhalation unit equipped with an aerosol generator. The mouse is restrained in a nose-only restrainer and connected to the inhalation unit, which delivers the drug directly into the mouse's nasal cavity. Subsequently, the drug passes through the trachea and enters the lungs.

Modeling and Simulations of Olfactory Drug Delivery with Passive and Active Controls of Nasally Inhaled Pharmaceutical Aerosols

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Cited by 18 •

2016

This manuscript reviews the modeling and simulations of different protocols to deliver medications to the olfactory region in image-based nasal airway models. Multiple software modules are used to develop the anatomically accurate nose model, generate computational mesh, simulate nasal airflows, and predict particle deposition at the olfactory region.

A Refined Aerosol-Based Intratracheal Bleomycin Delivery Method for Reproducible and Minimally Invasive Mouse Models of Pulmonary Fibrosis

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2026

Here, we present a protocol to model pulmonary fibrosis in mice using aerosolized bleomycin delivered via the trachea. This optimized method enables uniform, quantitative, and precise delivery without surgical incision, enhancing the reproducibility and reliability of bleomycin-induced fibrosis.

Aerosol Delivery of Mycobacterium tuberculosis for Pulmonary Infection in a Mouse Model

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2026

Source: Mueller, A., et al. An Experimental Model to Study Tuberculosis-Malaria Coinfection upon Natural Transmission of Mycobacterium tuberculosis and Plasmodium berghei. J. Vis. Exp. (2014)This video demonstrates the aerosol delivery of Mycobacterium tuberculosis (Mtb) to mice using a nebulizer-based chamber system to induce pulmonary infection, providing a controlled and reproducible model for studying airborne tuberculosis transmission and host-pathogen interactions in vivo.

Intranasal Delivery of mRNA Polyplexes via Rayleigh Breakup Aerosols: An In Vitro Method for Nasal Deposition and Functional Testing

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2026

This protocol presents Rayleigh breakup as a mild process for aerosolizing non-viral mRNA vectors. Regional deposition for aerosolized mRNA vectors is evaluated by the Alberta Idealized Nasal Inlet (AINI) model. Green fluorescence protein (GFP) expression in human lung cells represents maintenance of physicochemical and biological functions of post-aerosolized mRNA vectors.

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