In this work, a novel mathematical model for the description of the osmotic behavior during the cryopreservation of human Mesenchymal Stem Cells (hMSCs) from Umbilical Cord Blood (UCB) is proposed. In cryopreservation, the two-parameter formalism of perfect osmometer behavior is typically adopted and preferred due to its simplicity: cell volume osmotic excursions are described as due only to the passive trans-membrane transport of water and permeant solutes such as cryoprotectant agents (CPAs); intracellular solutes, responsible of the isotonic osmolality, are assumed to be impermeant. The application of the two-parameter model fails to capture the osmotic response of hMSCs whenever a swelling phase is involved, as demonstrated by the autho...
In tissue engineering, storing of biological material represents a fundamental step to bring cell-ba...
Stem cells have an enormous therapeutic potential for regeneration and replacement of degenerated ti...
Stem cells have an enormous therapeutic potential for regeneration and replacement of degenerated ti...
In this work, a novel mathematical model for the description of the osmotic behavior during the cryo...
In this work, a novel mathematical model for the description of the osmotic behavior during the cryo...
In this work, a novel mathematical model for the description of the osmotic behavior during the cryo...
In this work, a novel mathematical model for the description of the osmotic behavior during the cryo...
<div><p>Aimed at providing a contribution to the optimization of cryopreservation processes, the pre...
Aimed at providing a contribution to the optimization of cryopreservation processes, the present wor...
In this work, the osmotic behavior for optimal cryopreservation of the human Mesenchymal Stem Cells ...
In this work, the osmotic behavior for optimal cryopreservation of the human Mesenchymal Stem Cells ...
Aimed at providing a contribution to the optimization of cryopreservation processes, the present wor...
Aimed at providing a contribution to the optimization of cryopreservation processes, the present wor...
Recently, a mathematical model able to describe the non-perfect osmotic behavior of cells during cry...
Recently, a mathematical model able to describe the non-perfect osmotic behavior of cells during cry...
In tissue engineering, storing of biological material represents a fundamental step to bring cell-ba...
Stem cells have an enormous therapeutic potential for regeneration and replacement of degenerated ti...
Stem cells have an enormous therapeutic potential for regeneration and replacement of degenerated ti...
In this work, a novel mathematical model for the description of the osmotic behavior during the cryo...
In this work, a novel mathematical model for the description of the osmotic behavior during the cryo...
In this work, a novel mathematical model for the description of the osmotic behavior during the cryo...
In this work, a novel mathematical model for the description of the osmotic behavior during the cryo...
<div><p>Aimed at providing a contribution to the optimization of cryopreservation processes, the pre...
Aimed at providing a contribution to the optimization of cryopreservation processes, the present wor...
In this work, the osmotic behavior for optimal cryopreservation of the human Mesenchymal Stem Cells ...
In this work, the osmotic behavior for optimal cryopreservation of the human Mesenchymal Stem Cells ...
Aimed at providing a contribution to the optimization of cryopreservation processes, the present wor...
Aimed at providing a contribution to the optimization of cryopreservation processes, the present wor...
Recently, a mathematical model able to describe the non-perfect osmotic behavior of cells during cry...
Recently, a mathematical model able to describe the non-perfect osmotic behavior of cells during cry...
In tissue engineering, storing of biological material represents a fundamental step to bring cell-ba...
Stem cells have an enormous therapeutic potential for regeneration and replacement of degenerated ti...
Stem cells have an enormous therapeutic potential for regeneration and replacement of degenerated ti...