Search results for "alveolar duct"

showing 4 items of 4 documents

Structural Remodeling of the Post‐pneumonectomy Lung is Characterized by Septal Retraction and Alveolar Duct Dilation

2015

Murine pneumonectomy (PNX) is an established model of adult compensatory lung growth, involving structural remodeling of the peripheral parenchyma. Following left PNX, positron emission tomography and computerized tomography have demonstrated heterogeneous growth patterns within the remaining right lung. To characterize the structural changes associated with these observations, we analyzed histological sections of the right lung between 3 and 22 days after PNX. Within 3 days of PNX, alveolar septae were significantly shorter (p<0.05) in a majority of alveolar ducts, while septal angle remained unchanged. Septal retraction resulted in an apparent dilation of the alveolar duct with a signific…

Lungmedicine.diagnostic_testbusiness.industrymedicine.medical_treatmentAnatomyrespiratory systemStructural remodelingBiochemistryPeripheralPneumonectomymedicine.anatomical_structureAlveolar ductPositron emission tomographyParenchymaGeneticsmedicineDilation (morphology)businessMolecular BiologyBiotechnologyThe FASEB Journal
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Elastin Cables Define the Axial Connective Tissue System in the Murine Lung

2015

The axial connective tissue system is a fiber continuum of the lung that maintains alveolar surface area during changes in lung volume. Although the molecular anatomy of the axial system remains undefined, the fiber continuum of the lung is central to contemporary models of lung micromechanics and alveolar regeneration. To provide a detailed molecular structure of the axial connective tissue system, we examined the extracellular matrix of murine lungs. The lungs were decellularized using a 24 hr detergent treatment protocol. Systematic evaluation of the decellularized lungs demonstrated no residual cellular debris; morphometry demonstrated a mean 39 ± 7% reduction in lung dimensions. Scanni…

Basement membranePathologymedicine.medical_specialtyHistologyDecellularizationLungbiologyChemistryConnective tissueAnatomyrespiratory systemrespiratory tract diseasesExtracellular matrixAlveolar ductmedicine.anatomical_structuremedicinebiology.proteinLung volumesAnatomyElastinEcology Evolution Behavior and SystematicsBiotechnologyThe Anatomical Record
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Single-Cell Transcriptional Profiling of Cells Derived From Regenerating Alveolar Ducts

2020

Lung regeneration occurs in a variety of adult mammals after surgical removal of one lung (pneumonectomy). Previous studies of murine post-pneumonectomy lung growth have identified regenerative “hotspots” in subpleural alveolar ducts; however, the cell-types participating in this process remain unclear. To identify the single cells participating in post-pneumonectomy lung growth, we used laser microdissection, enzymatic digestion and microfluidic isolation. Single-cell transcriptional analysis of the murine alveolar duct cells was performed using the C1 integrated fluidic circuit (Fluidigm) and a custom PCR panel designed for lung growth and repair genes. The multi-dimensional data set was …

0301 basic medicinewarburg effectAngiogenesisglucose metabolismmedicine.medical_treatmentPopulationCellBiology03 medical and health sciencesPneumonectomy0302 clinical medicineAlveolar ductSingle-cell analysismedicinemetabolic reprogrammingeducationaerobic glycolysisOriginal ResearchLaser capture microdissectionlcsh:R5-920education.field_of_studyLungGeneral MedicineCell biology030104 developmental biologymedicine.anatomical_structure030228 respiratory systemMedicinecholangiocarcinomalcsh:Medicine (General)Frontiers in Medicine
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Laser Microdissection of the Alveolar Duct Enables Single-Cell Genomic Analysis

2014

Complex tissues such as the lung are composed of structural hierarchies such as alveoli, alveolar ducts, and lobules. Some structural units, such as the alveolar duct, appear to participate in tissue repair as well as the development of bronchioalveolar carcinoma. Here, we demonstrate an approach to conduct laser microdissection of the lung alveolar duct for single-cell PCR analysis. Our approach involved three steps. The initial preparation used mechanical sectioning of the lung tissue with sufficient thickness to encompass the structure of interest. In the case of the alveolar duct, the precision-cut lung slices were 200µm thick; the slices were processed using near-physiologic conditions…

Pathologymedicine.medical_specialtyCancer ResearchCellmicrofluidicsregenerative medicinealveolar ductlcsh:RC254-282Regenerative medicineAlveolar ductSingle-cell analysisMicroscopymedicinesingle-cell analysisOriginal ResearchLaser capture microdissectionLungChemistryrespiratory systemlcsh:Neoplasms. Tumors. Oncology. Including cancer and carcinogensmedicine.anatomical_structuremurine lung gene expressionOncologysignaling networklaser microdissectionLung tissueFrontiers in Oncology
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