Human postnatal sorted lung bulk RNA-Seq across postnatal development

Updated March 14, 2025

Postnatal lung development results in an increasingly functional organ prepared for gas exchange and pathogenic challenges. It is achieved through cellular differentiation and migration. Changes in the tissue architecture during this development process are well-documented and increasing cellular diversity associated with it are reported in recent years. Despite recent progress, transcriptomic and molecular pathways associated with human postnatal lung development are yet to be fully understood. In this study, we investigated gene expression patterns associated with healthy pediatric lung development in four major enriched cell populations (epithelial, endothelial, and nonendothelial mesenchymal cells, along with lung leukocytes) from 1-day-old to 8-yr-old organ donors with no known lung disease. For analysis, we considered the donors in four age groups [less than 30 days old neonates, 30 days to < 1 yr old infants, toddlers (1 to < 2 yr), and children 2 yr and older] and assessed differentially expressed genes (DEG). We found increasing age-associated transcriptional changes in all four major cell types in pediatric lung. Transition from neonate to infant stage showed highest number of DEG compared with the number of DEG found during infant to toddler- or toddler to older children-transitions. Profiles of differential gene expression and further pathway enrichment analyses indicate functional epithelial cell maturation and increased capability of antigen presentation and chemokine-mediated communication. Our study provides a comprehensive reference of gene expression patterns during healthy pediatric lung development that will be useful in identifying and understanding aberrant gene expression patterns associated with early life respiratory diseases. This study presents postnatal transcriptomic changes in major cell populations in human lung, namely endothelial, epithelial, mesenchymal cells, and leukocytes. Although human postnatal lung development continues through early adulthood, our results demonstrate that greatest transcriptional changes occur in first few months of life during neonate to infant transition. These early transcriptional changes in lung parenchyma are particularly notable for functional maturation and activation of alveolar type II cell genes.

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Bulk RNA sequencing of human pediatric lung cell populations reveals unique transcriptomic signature associated with postnatal pulmonary development

Gloria Pryhuber (Principal Investigator)1
Thomas J Mariani (Principal Investigator)1
1University of Rochester
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To reference this project, please use the following link:

https://data-browser.lungmap.net/projects/e68d2111-316f-4ded-bf49-0ab332488665
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Analysis Portals

LungMAP Apps
LungMAP Apps

Project Label

Bulk RNA-Seq Dissociated Cells from Normal Lung

Species

Homo sapiens

Sample Type

specimens

Anatomical Entity

right lung

Organ Part

middle lobe of right lung

Selected Cell Types

4 cell types

Disease Status (Specimen)

Unspecified

Disease Status (Donor)

normal

Development Stage

18 development stages

Library Construction Method

Smart-seq

Nucleic Acid Source

bulk cell

Paired End

false

Analysis Protocol

83ef78c5-a955-47e1-b26b-e5ead0e5a560

File Format

3 file formats

Cell Count Estimate

Unspecified

Donor Count

26
fastq.gz151 file(s)txt.zip4 file(s)xlsx1 file(s)
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