The secretome of human amniotic fluid stem cells (AFSCs) has great potential as a therapeutic agent in regenerative medicine. However, it must be produced in a clinically compliant manner before it can be used in humans. In this study, we developed a means of producing a biologically active secretome from AFSCs that is free of all exogenous molecules. We demonstrate that the full secretome is capable of promoting stem cell proliferation, migration, and protection of cells against senescence. Furthermore, it has significant anti-inflammatory properties. Most importantly, we show that it promotes tissue regeneration in a model of muscle damage. We then demonstrate that the secretome contains extracellular vesicles (EVs) that harbor much, but ...
The benefits of adult stem cells for repair of the heart have been attributed to the repertoire of s...
Amniotic fluid stem cells (AFSc) are a very heterogeneous subtype of stem cells with a broad multi p...
The benefits of adult stem cells for repair of the heart have been attributed to the repertoire of s...
The secretome of human amniotic fluid stem cells (AFSCs) has great potential as a therapeutic agent ...
Human amniotic fluid stem cells (hAFS) have shown a distinct secretory profile and significant regen...
Human amniotic fluid stem cells (hAFS) are immature fetal mesenchymal progenitors with promising par...
BackgroundL: The mechanisms underpinning the regenerative capabilities of mesenchymal stem cells (MS...
Human amniotic fluid stem cells (hAFS) have shown a distinct secretory profile and significant regen...
It is widely accepted that the therapeutic potential of stem cells can be largely mediated by paracr...
The benefits of adult stem cells for repair of the heart have been attributed to the repertoire of s...
Since the first evidence that stem cells can provide pro-resolving effects via paracrine secretion o...
Secretomes from various cell sources exert strong regenerative activities on numerous organs, includ...
Abstract Human amniotic membrane‐derived mesenchymal stromal cells (hAMSCs) are easily obtained in l...
Abstract Secretome derived from human amniotic fluid stem cells (AFSC-S) is rich in soluble bioactiv...
Secretomes from various cell sources exert strong regenerative activities on numerous organs, includ...
The benefits of adult stem cells for repair of the heart have been attributed to the repertoire of s...
Amniotic fluid stem cells (AFSc) are a very heterogeneous subtype of stem cells with a broad multi p...
The benefits of adult stem cells for repair of the heart have been attributed to the repertoire of s...
The secretome of human amniotic fluid stem cells (AFSCs) has great potential as a therapeutic agent ...
Human amniotic fluid stem cells (hAFS) have shown a distinct secretory profile and significant regen...
Human amniotic fluid stem cells (hAFS) are immature fetal mesenchymal progenitors with promising par...
BackgroundL: The mechanisms underpinning the regenerative capabilities of mesenchymal stem cells (MS...
Human amniotic fluid stem cells (hAFS) have shown a distinct secretory profile and significant regen...
It is widely accepted that the therapeutic potential of stem cells can be largely mediated by paracr...
The benefits of adult stem cells for repair of the heart have been attributed to the repertoire of s...
Since the first evidence that stem cells can provide pro-resolving effects via paracrine secretion o...
Secretomes from various cell sources exert strong regenerative activities on numerous organs, includ...
Abstract Human amniotic membrane‐derived mesenchymal stromal cells (hAMSCs) are easily obtained in l...
Abstract Secretome derived from human amniotic fluid stem cells (AFSC-S) is rich in soluble bioactiv...
Secretomes from various cell sources exert strong regenerative activities on numerous organs, includ...
The benefits of adult stem cells for repair of the heart have been attributed to the repertoire of s...
Amniotic fluid stem cells (AFSc) are a very heterogeneous subtype of stem cells with a broad multi p...
The benefits of adult stem cells for repair of the heart have been attributed to the repertoire of s...