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Nanoparticle delivery in infant lungs
by
Butler, James P
, Kreyling, Wolfgang G
, Takenaka, Shinji
, Schulz, Holger
, Henry, Frank S
, Semmler-Behnke, Manuela
, Tsuda, Akira
in
administration & dosage
/ Administration, Inhalation
/ Adults
/ Aerosols
/ Age
/ Age groups
/ anatomy & histology
/ Animals
/ Animals, Newborn
/ Babies
/ Biological Sciences
/ blood flow
/ Body Weight
/ Body Weight - physiology
/ Breathing
/ children
/ Children & youth
/ Computer Simulation
/ Dosage
/ Drug Delivery Systems
/ drugs
/ growth & development
/ Humans
/ Infant
/ Infants
/ Inhalation
/ Lung
/ Lung - anatomy & histology
/ Lung - growth & development
/ Lung - metabolism
/ Lungs
/ metabolism
/ Nanoparticles
/ Nanoparticles - administration & dosage
/ Particle mass
/ Particle Size
/ Physical Sciences
/ physiology
/ Pulmonary alveoli
/ Rats
/ Rats, Wistar
/ Respiration
/ Systems analysis
/ therapeutics
/ Tidal Volume
/ Tidal Volume - physiology
/ Ventilation systems
2012
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Nanoparticle delivery in infant lungs
by
Butler, James P
, Kreyling, Wolfgang G
, Takenaka, Shinji
, Schulz, Holger
, Henry, Frank S
, Semmler-Behnke, Manuela
, Tsuda, Akira
in
administration & dosage
/ Administration, Inhalation
/ Adults
/ Aerosols
/ Age
/ Age groups
/ anatomy & histology
/ Animals
/ Animals, Newborn
/ Babies
/ Biological Sciences
/ blood flow
/ Body Weight
/ Body Weight - physiology
/ Breathing
/ children
/ Children & youth
/ Computer Simulation
/ Dosage
/ Drug Delivery Systems
/ drugs
/ growth & development
/ Humans
/ Infant
/ Infants
/ Inhalation
/ Lung
/ Lung - anatomy & histology
/ Lung - growth & development
/ Lung - metabolism
/ Lungs
/ metabolism
/ Nanoparticles
/ Nanoparticles - administration & dosage
/ Particle mass
/ Particle Size
/ Physical Sciences
/ physiology
/ Pulmonary alveoli
/ Rats
/ Rats, Wistar
/ Respiration
/ Systems analysis
/ therapeutics
/ Tidal Volume
/ Tidal Volume - physiology
/ Ventilation systems
2012
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Nanoparticle delivery in infant lungs
by
Butler, James P
, Kreyling, Wolfgang G
, Takenaka, Shinji
, Schulz, Holger
, Henry, Frank S
, Semmler-Behnke, Manuela
, Tsuda, Akira
in
administration & dosage
/ Administration, Inhalation
/ Adults
/ Aerosols
/ Age
/ Age groups
/ anatomy & histology
/ Animals
/ Animals, Newborn
/ Babies
/ Biological Sciences
/ blood flow
/ Body Weight
/ Body Weight - physiology
/ Breathing
/ children
/ Children & youth
/ Computer Simulation
/ Dosage
/ Drug Delivery Systems
/ drugs
/ growth & development
/ Humans
/ Infant
/ Infants
/ Inhalation
/ Lung
/ Lung - anatomy & histology
/ Lung - growth & development
/ Lung - metabolism
/ Lungs
/ metabolism
/ Nanoparticles
/ Nanoparticles - administration & dosage
/ Particle mass
/ Particle Size
/ Physical Sciences
/ physiology
/ Pulmonary alveoli
/ Rats
/ Rats, Wistar
/ Respiration
/ Systems analysis
/ therapeutics
/ Tidal Volume
/ Tidal Volume - physiology
/ Ventilation systems
2012
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Journal Article
Nanoparticle delivery in infant lungs
2012
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Overview
The lung surface is an ideal pathway to the bloodstream for nanoparticle-based drug delivery. Thus far, research has focused on the lungs of adults, and little is known about nanoparticle behavior in the immature lungs of infants. Here, using nonlinear dynamical systems analysis and in vivo experimentation in developing animals, we show that nanoparticle deposition in postnatally developing lungs peaks at the end of bulk alveolation. This finding suggests a unique paradigm, consistent with the emerging theory that as alveoli form through secondary septation, alveolar flow becomes chaotic and chaotic mixing kicks in, significantly enhancing particle deposition. This finding has significant implications for the application of nanoparticle-based inhalation therapeutics in young children with immature lungs from birth to 2 y of age.
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