Initial Observations of Cell-Mediated Drug Delivery to the Deep Lung

Author:

Kumar Arun1,Glaum Mark1,El-Badri Nagwa2,Mohapatra Shyam1,Haller Edward3,Park Seungjoo3,Patrick Leslie3,Nattkemper Leigh1,Vo Dawn1,Cameron Don F.3

Affiliation:

1. Department of Internal Medicine, University of South Florida College of Medicine, Tampa, FL, USA

2. Department of Obstetrics & Gynecology, University of South Florida College of Medicine, Tampa, FL, USA

3. Department of Pathology & Cell Biology, University of South Florida College of Medicine, Tampa, FL, USA

Abstract

Using current methodologies, drug delivery to small airways, terminal bronchioles, and alveoli (deep lung) is inefficient, especially to the lower lungs. Urgent lung pathologies such as acute respiratory distress syndrome (ARDS) and post-lung transplantation complications are difficult to treat, in part due to the methodological limitations in targeting the deep lung with high efficiency drug distribution to the site of pathology. To overcome drug delivery limitations inhibiting the optimization of deep lung therapy, isolated rat Sertoli cells preloaded with chitosan nanoparticles were use to obtain a high-density distribution and concentration (92%) of the nanoparticles in the lungs of mice by way of the peripheral venous vasculature rather than the more commonly used pulmonary route. Additionally, Sertoli cells were preloaded with chitosan nanoparticles coupled with the anti-inflammatory compound curcumin and then injected intravenously into control or experimental mice with deep lung inflammation. By 24 h postinjection, most of the curcumin load (~90%) delivered in the injected Sertoli cells was present and distributed throughout the lungs, including the perialveloar sac area in the lower lungs. This was based on the high-density, positive quantification of both nanoparticles and curcumin in the lungs. There was a marked positive therapeutic effect achieved 24 h following curcumin treatment delivered by this Sertoli cell nanoparticle protocol (SNAP). Results identify a novel and efficient protocol for targeted delivery of drugs to the deep lung mediated by extratesticular Sertoli cells. Utilization of SNAP delivery may optimize drug therapy for conditions such as ARDS, status asthmaticus, pulmonary hypertension, lung cancer, and complications following lung transplantation where the use of high concentrations of anti-inflammatory drugs is desirable, but often limited by risks of systemic drug toxicity.

Publisher

SAGE Publications

Subject

Transplantation,Cell Biology,Biomedical Engineering

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1. Recent Advances in Nanomaterials for Asthma Treatment;International Journal of Molecular Sciences;2022-11-20

2. Sertoli Cell Immune Regulation: A Double-Edged Sword;Frontiers in Immunology;2022-06-09

3. Nanotechnology-Driven Cell-Based Therapies in Regenerative Medicine;The AAPS Journal;2022-03-15

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