<div><p>Although intraerythrocytic ATP and 2,3-bisphophoglycerate (2,3-BPG) are known as direct indicators of the viability of preserved red blood cells and the efficiency of post-transfusion oxygen delivery, no current blood storage method in practical use has succeeded in maintaining both these metabolites at high levels for long periods. In this study, we constructed a mathematical kinetic model of comprehensive metabolism in red blood cells stored in a recently developed blood storage solution containing adenine and guanosine, which can maintain both ATP and 2,3-BPG. The predicted dynamics of metabolic intermediates in glycolysis, the pentose phosphate pathway, and purine salvage pathway were consistent with time-series metabolome data ...
Erythrocytes in human blood stored for 120 days were collected by centrifugation after dispersion in...
Background: Donated blood is typically stored before transfusions. During storage, the metabolism of...
Blood storage promotes the rapid depletion of red blood cell (RBC) high-energy adenosine triphosphat...
Although intraerythrocytic ATP and 2,3-bisphophoglycerate (2,3-BPG) are known as direct indicators o...
To access publisher's full text version of this article click on the hyperlink belowBACKGROUND: Red...
BACKGROUND: Over a century of advancements in the field of additive solutions for red blood cell (RB...
Red blood cells (RBCs) are routinely stored for 35 to 42 days in most countries. During storage, RBC...
<p><i>Panel A</i>: Time-related changes of metabolic intermediates with or without adenine (ADE) and...
The addition of adenosine to stored blood results in a chemical restoration of deteriorated erythro-...
BACKGROUND: Human RBC metabolism is modulated by the cell oxygenation state. Among other mechanisms,...
The human red blood cell (RBC) is a logical starting point for the development and application of sy...
<p><i>Panel A</i>: Time courses of intracellular pH at 37°C (measured values; ▪) and at 4°C (estimat...
Efst á síðunni er hægt að nálgast greinina í heild sinni með því að smella á hlekkinn ...
Oxidative phenomena are considered to lie at the root of the accelerated senescence observed in red ...
The purpose of this study is to assess the utility of biochemical systems theory by carrying out det...
Erythrocytes in human blood stored for 120 days were collected by centrifugation after dispersion in...
Background: Donated blood is typically stored before transfusions. During storage, the metabolism of...
Blood storage promotes the rapid depletion of red blood cell (RBC) high-energy adenosine triphosphat...
Although intraerythrocytic ATP and 2,3-bisphophoglycerate (2,3-BPG) are known as direct indicators o...
To access publisher's full text version of this article click on the hyperlink belowBACKGROUND: Red...
BACKGROUND: Over a century of advancements in the field of additive solutions for red blood cell (RB...
Red blood cells (RBCs) are routinely stored for 35 to 42 days in most countries. During storage, RBC...
<p><i>Panel A</i>: Time-related changes of metabolic intermediates with or without adenine (ADE) and...
The addition of adenosine to stored blood results in a chemical restoration of deteriorated erythro-...
BACKGROUND: Human RBC metabolism is modulated by the cell oxygenation state. Among other mechanisms,...
The human red blood cell (RBC) is a logical starting point for the development and application of sy...
<p><i>Panel A</i>: Time courses of intracellular pH at 37°C (measured values; ▪) and at 4°C (estimat...
Efst á síðunni er hægt að nálgast greinina í heild sinni með því að smella á hlekkinn ...
Oxidative phenomena are considered to lie at the root of the accelerated senescence observed in red ...
The purpose of this study is to assess the utility of biochemical systems theory by carrying out det...
Erythrocytes in human blood stored for 120 days were collected by centrifugation after dispersion in...
Background: Donated blood is typically stored before transfusions. During storage, the metabolism of...
Blood storage promotes the rapid depletion of red blood cell (RBC) high-energy adenosine triphosphat...