In vivo administration of granulocyte colony-stimulating factor restores long-term depression in hippocampal slices prepared from transgenic APP/PS1 mice

2014 ◽  
Vol 92 (8) ◽  
pp. 975-980 ◽  
Author(s):  
Shijie Song ◽  
Xinming Wang ◽  
Vasyl Sava ◽  
Edwin J. Weeber ◽  
Juan Sanchez-Ramos
Blood ◽  
1991 ◽  
Vol 77 (11) ◽  
pp. 2364-2371 ◽  
Author(s):  
KG Waddick ◽  
CW Song ◽  
L Souza ◽  
FM Uckun

The purpose of the present study was to evaluate and compare the in vivo radioprotective effects of pre-total body irradiation (TBI) conditioning with recombinant granulocyte colony-stimulating factor (rG- CSF) and recombinant granulocyte-macrophage CSF (rGM-CSF) in a large series of lethally and supralethally irradiated mice. Also analyzed were the radioprotective effects of simultaneous as well as sequential combinations of rG-CSF and rGM-CSF. Our findings in 1,180 mice provide direct evidence that in vivo administration of rG-CSF or rGM-CSF before TBI protects a significant fraction of mice from the lethal effects of LD100/30 TBI. At equivalent doses, rG-CSF displayed a more potent radioprotective activity than rGM-CSF. Not only was rG-CSF radioprotective at much smaller doses than rGM-CSF, the survival rate after lethal TBI was also significantly higher in mice receiving optimally radioprotective doses of rG-CSF as compared with mice receiving optimally radioprotective doses of rGM-CSF. Pretreatment of mice with rGM-CSF markedly attenuated the radioprotective affects of rG- CSF in lethally as well as supralethally irradiated mice. Pretreatment with rG-CSF followed by rGM-CSF was slightly more effective than rG-CSF alone in supralethally irradiated mice but not in lethally irradiated mice. Notably, marked differences among different strains of mice were noted regarding the optimally radioprotective doses of rG-CSF or rGM- CSF as well as probability of survival and median survival time after lethal or supralethal TBI. This report confirms and extends previous studies concerning the potential of cytokines in prevention or therapy of lethal radiation injury.


2009 ◽  
Vol 53 (3) ◽  
pp. 129-134 ◽  
Author(s):  
Souichi Adachi ◽  
Masaru Kubota ◽  
Ying Wei Lin ◽  
Akiro Okuda ◽  
Kousaku Matsubara ◽  
...  

Blood ◽  
1991 ◽  
Vol 77 (11) ◽  
pp. 2364-2371 ◽  
Author(s):  
KG Waddick ◽  
CW Song ◽  
L Souza ◽  
FM Uckun

Abstract The purpose of the present study was to evaluate and compare the in vivo radioprotective effects of pre-total body irradiation (TBI) conditioning with recombinant granulocyte colony-stimulating factor (rG- CSF) and recombinant granulocyte-macrophage CSF (rGM-CSF) in a large series of lethally and supralethally irradiated mice. Also analyzed were the radioprotective effects of simultaneous as well as sequential combinations of rG-CSF and rGM-CSF. Our findings in 1,180 mice provide direct evidence that in vivo administration of rG-CSF or rGM-CSF before TBI protects a significant fraction of mice from the lethal effects of LD100/30 TBI. At equivalent doses, rG-CSF displayed a more potent radioprotective activity than rGM-CSF. Not only was rG-CSF radioprotective at much smaller doses than rGM-CSF, the survival rate after lethal TBI was also significantly higher in mice receiving optimally radioprotective doses of rG-CSF as compared with mice receiving optimally radioprotective doses of rGM-CSF. Pretreatment of mice with rGM-CSF markedly attenuated the radioprotective affects of rG- CSF in lethally as well as supralethally irradiated mice. Pretreatment with rG-CSF followed by rGM-CSF was slightly more effective than rG-CSF alone in supralethally irradiated mice but not in lethally irradiated mice. Notably, marked differences among different strains of mice were noted regarding the optimally radioprotective doses of rG-CSF or rGM- CSF as well as probability of survival and median survival time after lethal or supralethal TBI. This report confirms and extends previous studies concerning the potential of cytokines in prevention or therapy of lethal radiation injury.


Blood ◽  
1989 ◽  
Vol 74 (6) ◽  
pp. 2264-2269 ◽  
Author(s):  
BR Blazar ◽  
MB Widmer ◽  
D Cosman ◽  
HM Sassenfeld ◽  
DA Vallera

Abstract In vivo administration of human recombinant granulocyte colony- stimulating factor (rG-CSF) was evaluated for effects on survival, hematologic recovery, and engraftment in an allogeneic murine bone marrow transplantation (BMT) model involving T-cell depletion. Post-BMT recipients of continuous subcutaneous infusions of rG-CSF (n = 62) for 14 days had a significant survival advantage compared with post-BMT controls (n = 60) that received phosphate-buffered saline (PBS) infusions. Moreover, recipients of rG-CSF had significantly increased numbers of circulating leukocytes on days 7 and 14 post-BMT. Engraftment was not adversely affected. Administration of rG-CSF after transplantation of T-cell-depleted histoincompatible bone marrow benefits survival and leukocyte recovery without compromising engraftment.


Blood ◽  
1989 ◽  
Vol 74 (6) ◽  
pp. 2264-2269
Author(s):  
BR Blazar ◽  
MB Widmer ◽  
D Cosman ◽  
HM Sassenfeld ◽  
DA Vallera

In vivo administration of human recombinant granulocyte colony- stimulating factor (rG-CSF) was evaluated for effects on survival, hematologic recovery, and engraftment in an allogeneic murine bone marrow transplantation (BMT) model involving T-cell depletion. Post-BMT recipients of continuous subcutaneous infusions of rG-CSF (n = 62) for 14 days had a significant survival advantage compared with post-BMT controls (n = 60) that received phosphate-buffered saline (PBS) infusions. Moreover, recipients of rG-CSF had significantly increased numbers of circulating leukocytes on days 7 and 14 post-BMT. Engraftment was not adversely affected. Administration of rG-CSF after transplantation of T-cell-depleted histoincompatible bone marrow benefits survival and leukocyte recovery without compromising engraftment.


Blood ◽  
1997 ◽  
Vol 90 (8) ◽  
pp. 3037-3049 ◽  
Author(s):  
John F. Seymour ◽  
Graham J. Lieschke ◽  
Dianne Grail ◽  
Cathy Quilici ◽  
George Hodgson ◽  
...  

Abstract Mice lacking granulocyte colony-stimulating factor (G-CSF) are neutropenic with reduced hematopoietic progenitors in the bone marrow and spleen, whereas those lacking granulocyte-macrophage colony-stimulating factor (GM-CSF) have impaired pulmonary homeostasis and increased splenic hematopoietic progenitors, but unimpaired steady-state hematopoiesis. These contrasting phenotypes establish unique roles for these factors in vivo, but do not exclude the existence of additional redundant functions. To investigate this issue, we generated animals lacking both G-CSF and GM-CSF. In the process of characterizing the phenotype of these animals, we further analyzed G-CSF– and GM-CSF–deficient mice, expanding the recognized spectrum of defects in both. G-CSF–deficient animals have a marked predisposition to spontaneous infections, a reduced long-term survival, and a high incidence of reactive type AA amyloidosis. GM-CSF–deficient mice have a modest impairment of reproductive capacity, a propensity to develop lung and soft-tissue infections, and a similarly reduced survival as in G-CSF–deficient animals. The phenotype of mice lacking both G-CSF and GM-CSF was additive to the features of the constituent genotypes, with three novel additional features: a greater degree of neutropenia among newborn mice than in those lacking G-CSF alone, an increased neonatal mortality rate, and a dominant influence of the lack of G-CSF on splenic hematopoiesis resulting in significantly reduced numbers of splenic progenitors. In contrast to newborn animals, adult mice lacking both G-CSF and GM-CSF exhibited similar neutrophil levels as G-CSF–deficient animals. These findings demonstrate that the additional lack of GM-CSF in G-CSF–deficient animals further impairs steady-state granulopoiesis in vivo selectively during the early postnatal period, expand the recognized roles of both G-CSF and GM-CSF in vivo, and emphasize the utility of studying multiply deficient mouse strains in the investigation of functional redundancy.


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