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1.
Sci Transl Med ; 11(504)2019 08 07.
Article in English | MEDLINE | ID: mdl-31391319

ABSTRACT

Cystic fibrosis (CF) is a genetic disease caused by mutations in the CF transmembrane conductance regulator (CFTR) gene. Although impairment of mucociliary clearance contributes to severe morbidity and mortality in people with CF, a clear understanding of the pathophysiology is lacking. This is, in part, due to the absence of clinical imaging techniques capable of capturing CFTR-dependent functional metrics at the cellular level. Here, we report the clinical translation of a 1-µm resolution micro-optical coherence tomography (µOCT) technology to quantitatively characterize the functional microanatomy of human upper airways. Using a minimally invasive intranasal imaging approach, we performed a clinical study on age- and sex-matched CF and control groups. We observed delayed mucociliary transport rate at the cellular level, depletion of periciliary liquid layer, and prevalent loss of ciliation in subjects with CF. Distinctive morphological differences in mucus and various forms of epithelial injury were also revealed by µOCT imaging and had prominent effects on the mucociliary transport apparatus. Elevated mucus reflectance intensity in CF, a proxy for viscosity in situ, had a dominant effect. These results demonstrate the utility of µOCT to determine epithelial function and monitor disease status of CF airways on a per-patient basis, with applicability for other diseases of mucus clearance.


Subject(s)
Cystic Fibrosis/diagnostic imaging , Imaging, Three-Dimensional , Nose/diagnostic imaging , Tomography, Optical Coherence , Case-Control Studies , Cilia/metabolism , Granulocytes/metabolism , Humans , Inflammation/pathology , Mucociliary Clearance , Mucus/metabolism
2.
Opt Lett ; 42(4): 867-870, 2017 Feb 15.
Article in English | MEDLINE | ID: mdl-28198885

ABSTRACT

We report the design and fabrication of a flexible, longitudinally scanning high-resolution micro-optical coherence tomography (µOCT) endobronchial probe, optimized for micro-anatomical imaging in airways. The 2.4 mm diameter and flexibility of the probe allows it to be inserted into the instrument channel of a standard bronchoscope, enabling real-time video guidance of probe placement. To generate a depth-of-focus enhancing annular beam, we utilized a new fabrication method, whereby a hollow glass ferrule was angle-polished and gold-coated to produce an elongated annular reflector. We present validation data that verifies the preservation of linear scanning, despite the use of flexible materials. When utilized on excised, cultured mouse trachea, the probe acquired images of comparable quality to those obtained by a benchtop µOCT system.


Subject(s)
Bronchi/cytology , Bronchi/diagnostic imaging , Mechanical Phenomena , Signal-To-Noise Ratio , Tomography, Optical Coherence/instrumentation , Animals , Cilia/metabolism , Equipment Design , Mice , Trachea/cytology , Trachea/diagnostic imaging
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