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Imaging drug delivery to the lungs: Methods and applications in oncology
Francis Man1, Jie Tang2, Magda Swedrowska1
1School of Cancer & Pharmaceutical Sciences, King's College London, London, SE1 9NH, United Kingdom.
Abstract:
Direct delivery to the lung via inhalation is arguably one of the most logical approaches to treat lung cancer using drugs. However, despite significant efforts and investment in this area, this strategy has not progressed in clinical trials. Imaging drug delivery is a powerful tool to understand and develop novel drug delivery strategies. In this review we focus on imaging studies of drug delivery by the inhalation route, to provide a broad overview of the field to date and attempt to better understand the complexities of this route of administration and the significant barriers that it faces, as well as its advantages. We start with a discussion of the specific challenges for drug delivery to the lung via inhalation. We focus on the barriers that have prevented progress of this approach in oncology, as well as the most recent developments in this area. This is followed by a comprehensive overview of the different imaging modalities that are relevant to lung drug delivery, including nuclear imaging, X-ray imaging, magnetic resonance imaging, optical imaging and mass spectrometry imaging. For each of these modalities, examples from the literature where these techniques have been explored are provided. Finally the different applications of these technologies in oncology are discussed, focusing separately on small molecules and nanomedicines. We hope that this comprehensive review will be informative to the field and will guide the future preclinical and clinical development of this promising drug delivery strategy to maximise its therapeutic potential.
Insights
Directly delivering lung cancer drugs via inhalation is logical but faces challenges. Imaging techniques are crucial for understanding and overcoming these barriers to improve inhaled drug delivery for better cancer treatment.
Area of Science:
- Pharmacology and Drug Delivery
- Oncology
- Medical Imaging
Background:
- Direct lung delivery via inhalation offers a logical route for lung cancer treatment.
- Despite significant research, inhaled drug delivery strategies have faced clinical trial limitations.
- Imaging is essential for understanding and advancing inhaled drug delivery.
Purpose of the Study:
- To provide a comprehensive overview of imaging studies for inhaled drug delivery to the lung.
- To elucidate the complexities, barriers, and advantages of this administration route.
- To guide future preclinical and clinical development of inhaled lung cancer therapies.
Main Methods:
- Review of imaging studies focusing on inhalation drug delivery to the lung.
- Discussion of challenges and barriers specific to inhaled lung drug delivery.
- Overview of relevant imaging modalities: nuclear, X-ray, MRI, optical, and mass spectrometry imaging.
Main Results:
- Inhalation drug delivery faces significant barriers in oncology, hindering clinical progress.
- Various imaging modalities have been explored in the literature to study inhaled drug delivery.
- Applications of imaging technologies for both small molecules and nanomedicines in oncology are discussed.
Conclusions:
- Imaging plays a vital role in understanding and optimizing inhaled drug delivery to the lung.
- Addressing the identified barriers through advanced imaging can enhance therapeutic potential.
- This review aims to inform and guide the development of effective inhaled lung cancer treatments.
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