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Age-related epithelial defects limit thymic function and regeneration
by
Granadier, David
, Burgos da Silva, Marina
, Rogers, Kelly L.
, Pe’er, Dana
, Ghale, Romina
, Kousa, Anastasia I.
, Flores, Angel E.
, Argyropoulos, Kimon V.
, Andrlova, Hana
, Hale, Laura
, Lederer, Emma
, Setty, Manu
, Jahn, Lorenz
, Lemarquis, Andri L.
, Gray, Daniel H. D.
, van den Brink, Marcel R. M.
, Mazutis, Linas
, Lee, Nichole
, Acenas, Dante
, Wimmer, Verena C.
, Lazrak, Amina
, Cooper, Kirsten
, Youssef, Salma
, D’Andrea, Michael
, Sheridan, Julie M.
, Nichols, Katherine
, Zhao, Kelin
, Tsai, Jennifer
, Gipson, Brianna
, Gomes, Antonio L. C.
, Docampo, Melissa
, Manley, Nancy R.
, Velardi, Enrico
, Malard, Florent
, Sharma, Roshan
, DeWolf, Susan
, Sikkema, Lisa
, Dudakov, Jarrod A.
in
631/250/1620/1840
/ 631/250/1904
/ 631/250/232/2058
/ Adaptive immunity
/ Age
/ Aging
/ Aging - immunology
/ Animals
/ Biomedical and Life Sciences
/ Biomedicine
/ Epithelial cells
/ Epithelial Cells - immunology
/ Epithelial-Mesenchymal Transition - immunology
/ Female
/ Forkhead Transcription Factors - genetics
/ Forkhead Transcription Factors - metabolism
/ Growth factors
/ Immunology
/ Infectious Diseases
/ Male
/ Mice
/ Mice, Inbred C57BL
/ Regeneration - immunology
/ Single-Cell Analysis
/ Stromal cells
/ Thymic involution
/ Thymocytes
/ Thymocytes - immunology
/ Thymocytes - metabolism
/ Thymus
/ Thymus gland
/ Thymus Gland - immunology
/ Transcriptomics
2024
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Age-related epithelial defects limit thymic function and regeneration
by
Granadier, David
, Burgos da Silva, Marina
, Rogers, Kelly L.
, Pe’er, Dana
, Ghale, Romina
, Kousa, Anastasia I.
, Flores, Angel E.
, Argyropoulos, Kimon V.
, Andrlova, Hana
, Hale, Laura
, Lederer, Emma
, Setty, Manu
, Jahn, Lorenz
, Lemarquis, Andri L.
, Gray, Daniel H. D.
, van den Brink, Marcel R. M.
, Mazutis, Linas
, Lee, Nichole
, Acenas, Dante
, Wimmer, Verena C.
, Lazrak, Amina
, Cooper, Kirsten
, Youssef, Salma
, D’Andrea, Michael
, Sheridan, Julie M.
, Nichols, Katherine
, Zhao, Kelin
, Tsai, Jennifer
, Gipson, Brianna
, Gomes, Antonio L. C.
, Docampo, Melissa
, Manley, Nancy R.
, Velardi, Enrico
, Malard, Florent
, Sharma, Roshan
, DeWolf, Susan
, Sikkema, Lisa
, Dudakov, Jarrod A.
in
631/250/1620/1840
/ 631/250/1904
/ 631/250/232/2058
/ Adaptive immunity
/ Age
/ Aging
/ Aging - immunology
/ Animals
/ Biomedical and Life Sciences
/ Biomedicine
/ Epithelial cells
/ Epithelial Cells - immunology
/ Epithelial-Mesenchymal Transition - immunology
/ Female
/ Forkhead Transcription Factors - genetics
/ Forkhead Transcription Factors - metabolism
/ Growth factors
/ Immunology
/ Infectious Diseases
/ Male
/ Mice
/ Mice, Inbred C57BL
/ Regeneration - immunology
/ Single-Cell Analysis
/ Stromal cells
/ Thymic involution
/ Thymocytes
/ Thymocytes - immunology
/ Thymocytes - metabolism
/ Thymus
/ Thymus gland
/ Thymus Gland - immunology
/ Transcriptomics
2024
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Age-related epithelial defects limit thymic function and regeneration
by
Granadier, David
, Burgos da Silva, Marina
, Rogers, Kelly L.
, Pe’er, Dana
, Ghale, Romina
, Kousa, Anastasia I.
, Flores, Angel E.
, Argyropoulos, Kimon V.
, Andrlova, Hana
, Hale, Laura
, Lederer, Emma
, Setty, Manu
, Jahn, Lorenz
, Lemarquis, Andri L.
, Gray, Daniel H. D.
, van den Brink, Marcel R. M.
, Mazutis, Linas
, Lee, Nichole
, Acenas, Dante
, Wimmer, Verena C.
, Lazrak, Amina
, Cooper, Kirsten
, Youssef, Salma
, D’Andrea, Michael
, Sheridan, Julie M.
, Nichols, Katherine
, Zhao, Kelin
, Tsai, Jennifer
, Gipson, Brianna
, Gomes, Antonio L. C.
, Docampo, Melissa
, Manley, Nancy R.
, Velardi, Enrico
, Malard, Florent
, Sharma, Roshan
, DeWolf, Susan
, Sikkema, Lisa
, Dudakov, Jarrod A.
in
631/250/1620/1840
/ 631/250/1904
/ 631/250/232/2058
/ Adaptive immunity
/ Age
/ Aging
/ Aging - immunology
/ Animals
/ Biomedical and Life Sciences
/ Biomedicine
/ Epithelial cells
/ Epithelial Cells - immunology
/ Epithelial-Mesenchymal Transition - immunology
/ Female
/ Forkhead Transcription Factors - genetics
/ Forkhead Transcription Factors - metabolism
/ Growth factors
/ Immunology
/ Infectious Diseases
/ Male
/ Mice
/ Mice, Inbred C57BL
/ Regeneration - immunology
/ Single-Cell Analysis
/ Stromal cells
/ Thymic involution
/ Thymocytes
/ Thymocytes - immunology
/ Thymocytes - metabolism
/ Thymus
/ Thymus gland
/ Thymus Gland - immunology
/ Transcriptomics
2024
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Age-related epithelial defects limit thymic function and regeneration
Journal Article
Age-related epithelial defects limit thymic function and regeneration
2024
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Overview
The thymus is essential for establishing adaptive immunity yet undergoes age-related involution that leads to compromised immune responsiveness. The thymus is also extremely sensitive to acute insult and although capable of regeneration, this capacity declines with age for unknown reasons. We applied single-cell and spatial transcriptomics, lineage-tracing and advanced imaging to define age-related changes in nonhematopoietic stromal cells and discovered the emergence of two atypical thymic epithelial cell (TEC) states. These age-associated TECs (aaTECs) formed high-density peri-medullary epithelial clusters that were devoid of thymocytes; an accretion of nonproductive thymic tissue that worsened with age, exhibited features of epithelial-to-mesenchymal transition and was associated with downregulation of FOXN1. Interaction analysis revealed that the emergence of aaTECs drew tonic signals from other functional TEC populations at baseline acting as a sink for TEC growth factors. Following acute injury, aaTECs expanded substantially, further perturbing trophic regeneration pathways and correlating with defective repair of the involuted thymus. These findings therefore define a unique feature of thymic involution linked to immune aging and could have implications for developing immune-boosting therapies in older individuals.
Here the authors identify age-associated changes in the epithelial cell compartment of the thymus that form high-density nonproductive microenvironmental niches that contribute toward thymic involution and inhibit its repair following injury.
Publisher
Nature Publishing Group US,Nature Publishing Group
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