Fibroblasts, the principal cell type of connective tissue, secrete extracellular matrix components during tissue development, homeostasis, repair and disease. Despite this crucial role, the identification and distinction of fibroblasts from other cell types are challenging and laden with caveats. Rapid progress in single-cell transcriptomics now yields detailed molecular portraits of fibroblasts and other cell types in our bodies, which complement and enrich classical histological and immunological descriptions, improve cell class definitions and guide further studies on the functional heterogeneity of cell subtypes and states, origins and fates in physiological and pathological processes. In this review, we summarize and discuss recent adv...
Fibroblasts are known for their ability to make and modify the extracellular matrix. However, there ...
Fibroblasts are diverse mesenchymal cells that participate in tissue homeostasis and disease by prod...
Fibroblasts have an important role in the maintenance of the extracellular matrix of connective tiss...
Fibroblasts, the principal cell type of connective tissue, secrete extracellular matrix components d...
Fibroblasts have long been recognized as important stromal cells, playing key roles in synthesizing ...
Fibroblasts synthesize the extracellular matrix of connective tissue and play an essential role in m...
Many important cell types in adult vertebrates have a mesenchymal origin, including fibroblasts and ...
Purpose of Review: Fibroblasts, the major cell population in all connective tissues, are best known ...
PURPOSE OF REVIEW: Fibroblasts, the major cell population in all connective tissues, are best known ...
<div><p>Background</p><p>Fibroblasts are the principal stromal cells that exist in whole organs and ...
Fibroblasts are the most abundant cell type of the stroma, producing extracellular matrix components...
Fibroblasts are biologically dynamic and morphologically heterogeneous and are the most abundant con...
Fibroblasts are the principal stromal cells that exist in whole organs and play vital roles in many ...
The evidence for fibroblast heterogeneity is continuously increasing, and recent work has shed some ...
AbstractAdvances in cell culture methods, multidisciplinary research, clinical need to replace lost ...
Fibroblasts are known for their ability to make and modify the extracellular matrix. However, there ...
Fibroblasts are diverse mesenchymal cells that participate in tissue homeostasis and disease by prod...
Fibroblasts have an important role in the maintenance of the extracellular matrix of connective tiss...
Fibroblasts, the principal cell type of connective tissue, secrete extracellular matrix components d...
Fibroblasts have long been recognized as important stromal cells, playing key roles in synthesizing ...
Fibroblasts synthesize the extracellular matrix of connective tissue and play an essential role in m...
Many important cell types in adult vertebrates have a mesenchymal origin, including fibroblasts and ...
Purpose of Review: Fibroblasts, the major cell population in all connective tissues, are best known ...
PURPOSE OF REVIEW: Fibroblasts, the major cell population in all connective tissues, are best known ...
<div><p>Background</p><p>Fibroblasts are the principal stromal cells that exist in whole organs and ...
Fibroblasts are the most abundant cell type of the stroma, producing extracellular matrix components...
Fibroblasts are biologically dynamic and morphologically heterogeneous and are the most abundant con...
Fibroblasts are the principal stromal cells that exist in whole organs and play vital roles in many ...
The evidence for fibroblast heterogeneity is continuously increasing, and recent work has shed some ...
AbstractAdvances in cell culture methods, multidisciplinary research, clinical need to replace lost ...
Fibroblasts are known for their ability to make and modify the extracellular matrix. However, there ...
Fibroblasts are diverse mesenchymal cells that participate in tissue homeostasis and disease by prod...
Fibroblasts have an important role in the maintenance of the extracellular matrix of connective tiss...