<div><p>Organ shortage leads to an increased utilization of marginal organs which are particularly sensitive to storage-associated damage. Cold incubation and rewarming-induced injury is iron-dependent in many cell types. In addition, a chloride-dependent component of injury has been described. This work examines the injury induced by cold incubation and rewarming in isolated rat renal proximal tubules. The tissue storage solution TiProtec<sup>®</sup> and a chloride-poor modification, each with and without iron chelators, were used for cold incubation. Incubation was performed 4°C for up to 168 h, followed by rewarming in an extracellular buffer (3 h at 37°C). After 48, 120 and 168 h of cold incubation LDH release was lower in solutions con...
Contains fulltext : 34571.pdf (publisher's version ) (Closed access)It has now bee...
chelators do not reduce cold-induced cell injury in the isolated perfused rat kidney mode
In this study we evaluated whether gradual rewarming after the period of cold ischemia would improve...
Organ shortage leads to an increased utilization of marginal organs which are particularly sensitive...
BACKGROUND: In vitro, cold-induced injury is an important contributor to renal tubular cell damage. ...
Contains fulltext : 48607.pdf (publisher's version ) (Open Access)BACKGROUND: In v...
Contains fulltext : 178493.pdf (publisher's version ) (Closed access)Cold preserva...
Contains fulltext : 57371.pdf (publisher's version ) (Closed access)In cultured re...
In cultured renal tubular cells hypothermia results in cell damage caused by iron-dependent formatio...
<p>Isolated tubules were incubated at 4°C in the chloride-rich solution 1 or its chloride-poor count...
In this study we evaluated whether gradual rewarming after the period of cold ischemia would improve...
Cold storage induces time-dependent F2-isoprostane formation in renal tubular cells and rat kidneys....
It has now been firmly established that, not only ischemia/reperfusion, but also cold itself causes ...
A pathophysiologic study of the kidney tubule to optimize organ preservation solutions.BackgroundTis...
Background: Organ protection for transplantation is perfusion with ice-cold preservation solutions, ...
Contains fulltext : 34571.pdf (publisher's version ) (Closed access)It has now bee...
chelators do not reduce cold-induced cell injury in the isolated perfused rat kidney mode
In this study we evaluated whether gradual rewarming after the period of cold ischemia would improve...
Organ shortage leads to an increased utilization of marginal organs which are particularly sensitive...
BACKGROUND: In vitro, cold-induced injury is an important contributor to renal tubular cell damage. ...
Contains fulltext : 48607.pdf (publisher's version ) (Open Access)BACKGROUND: In v...
Contains fulltext : 178493.pdf (publisher's version ) (Closed access)Cold preserva...
Contains fulltext : 57371.pdf (publisher's version ) (Closed access)In cultured re...
In cultured renal tubular cells hypothermia results in cell damage caused by iron-dependent formatio...
<p>Isolated tubules were incubated at 4°C in the chloride-rich solution 1 or its chloride-poor count...
In this study we evaluated whether gradual rewarming after the period of cold ischemia would improve...
Cold storage induces time-dependent F2-isoprostane formation in renal tubular cells and rat kidneys....
It has now been firmly established that, not only ischemia/reperfusion, but also cold itself causes ...
A pathophysiologic study of the kidney tubule to optimize organ preservation solutions.BackgroundTis...
Background: Organ protection for transplantation is perfusion with ice-cold preservation solutions, ...
Contains fulltext : 34571.pdf (publisher's version ) (Closed access)It has now bee...
chelators do not reduce cold-induced cell injury in the isolated perfused rat kidney mode
In this study we evaluated whether gradual rewarming after the period of cold ischemia would improve...