Antiapoptotic cytokines in combination with pegfilgrastim soon after irradiation mitigates myelosuppression in nonhuman primates exposed to high irradiation dose. 2007

Francis Hérodin, and Laurence Roy, and Nancy Grenier, and Christophe Delaunay, and Stéphane Baugé, and Aurélie Vaurijoux, and Eric Grégoire, and Cécile Martin, and Antonia Alonso, and Jean-François Mayol, and Michel Drouet
Centre de Recherches du Service de Santé des Armées, la Tronche, France. Francis.Herodin@wanadoo.fr

OBJECTIVE Preservation of hematopoietic stem and progenitor cells from early radiation-induced apoptosis is the rationale for emergency antiapoptotic cytokine therapy (EACK) after radiation accidents. This strategy is based on the combination of stem cell factor + Flt3-ligand + thrombopoietin + interleukin 3 (SFT3). The long-term safety and efficacy of EACK in managing severe radiation exposure were evaluated. METHODS Early administration of SFT3 + pegfilgrastim was assessed in 7-Gy gamma total body-irradiated (TBI) monkeys. Efficiency of delayed administration was also addressed after 5-Gy TBI. RESULTS Here we showed that a single, intravenous injection of SFT3 2 hours after 7-Gy TBI reduced the period of thrombocytopenia (platelet count <20 x 10(9)/L: 0.8 +/- 1.5 day vs 23.8 +/- 15.9 days in controls; p < 0.05) and blood transfusion needs. Moreover, addition of pegfilgrastim to SFT3 treatment shortened the period of neutropenia compared with SFT3 and control groups (neutrophil count <0.5 x 10(9)/L: 7 +/- 1.4 days vs 13 +/- 3.2 days and 15.2 +/- 1.5 days; p < 0.05). In both SFT3 groups, bone marrow activity recovered earlier and, in contrast with controls, platelet count returned to baseline values from 250 days after irradiation. Furthermore, delayed (48 hours) single SFT3 administration in 5-Gy irradiated monkeys significantly reduced thrombocytopenia compared to controls. Finally, SFT3 did not increase frequency of total chromosome translocations observed in the blood lymphocytes of controls 1 year after 5 Gy TBI. CONCLUSIONS These results suggest the safety and efficacy of EACK in managing severe radiation exposure.

UI MeSH Term Description Entries
D007249 Inflammation A pathological process characterized by injury or destruction of tissues caused by a variety of cytologic and chemical reactions. It is usually manifested by typical signs of pain, heat, redness, swelling, and loss of function. Innate Inflammatory Response,Inflammations,Inflammatory Response, Innate,Innate Inflammatory Responses
D007962 Leukocytes White blood cells. These include granular leukocytes (BASOPHILS; EOSINOPHILS; and NEUTROPHILS) as well as non-granular leukocytes (LYMPHOCYTES and MONOCYTES). Blood Cells, White,Blood Corpuscles, White,White Blood Cells,White Blood Corpuscles,Blood Cell, White,Blood Corpuscle, White,Corpuscle, White Blood,Corpuscles, White Blood,Leukocyte,White Blood Cell,White Blood Corpuscle
D008214 Lymphocytes White blood cells formed in the body's lymphoid tissue. The nucleus is round or ovoid with coarse, irregularly clumped chromatin while the cytoplasm is typically pale blue with azurophilic (if any) granules. Most lymphocytes can be classified as either T or B (with subpopulations of each), or NATURAL KILLER CELLS. Lymphoid Cells,Cell, Lymphoid,Cells, Lymphoid,Lymphocyte,Lymphoid Cell
D008252 Macaca fascicularis A species of the genus MACACA which typically lives near the coast in tidal creeks and mangrove swamps primarily on the islands of the Malay peninsula. Burmese Long-Tailed Macaque,Crab-Eating Monkey,Cynomolgus Monkey,M. f. aurea,M. fascicularis,Macaca fascicularis aurea,Monkey, Crab-Eating,Monkey, Cynomolgus,Crab-Eating Macaque,Burmese Long Tailed Macaque,Crab Eating Macaque,Crab Eating Monkey,Crab-Eating Macaques,Crab-Eating Monkeys,Cynomolgus Monkeys,Long-Tailed Macaque, Burmese,Macaque, Burmese Long-Tailed,Macaque, Crab-Eating,Monkey, Crab Eating
D008297 Male Males
D011092 Polyethylene Glycols Polymers of ETHYLENE OXIDE and water, and their ethers. They vary in consistency from liquid to solid depending on the molecular weight indicated by a number following the name. They are used as SURFACTANTS, dispersing agents, solvents, ointment and suppository bases, vehicles, and tablet excipients. Some specific groups are NONOXYNOLS, OCTOXYNOLS, and POLOXAMERS. Macrogols,Polyoxyethylenes,Carbowax,Macrogol,Polyethylene Glycol,Polyethylene Oxide,Polyethyleneoxide,Polyglycol,Glycol, Polyethylene,Glycols, Polyethylene,Oxide, Polyethylene,Oxides, Polyethylene,Polyethylene Oxides,Polyethyleneoxides,Polyglycols,Polyoxyethylene
D011994 Recombinant Proteins Proteins prepared by recombinant DNA technology. Biosynthetic Protein,Biosynthetic Proteins,DNA Recombinant Proteins,Recombinant Protein,Proteins, Biosynthetic,Proteins, Recombinant DNA,DNA Proteins, Recombinant,Protein, Biosynthetic,Protein, Recombinant,Proteins, DNA Recombinant,Proteins, Recombinant,Recombinant DNA Proteins,Recombinant Proteins, DNA
D001792 Blood Platelets Non-nucleated disk-shaped cells formed in the megakaryocyte and found in the blood of all mammals. They are mainly involved in blood coagulation. Platelets,Thrombocytes,Blood Platelet,Platelet,Platelet, Blood,Platelets, Blood,Thrombocyte
D001853 Bone Marrow The soft tissue filling the cavities of bones. Bone marrow exists in two types, yellow and red. Yellow marrow is found in the large cavities of large bones and consists mostly of fat cells and a few primitive blood cells. Red marrow is a hematopoietic tissue and is the site of production of erythrocytes and granular leukocytes. Bone marrow is made up of a framework of connective tissue containing branching fibers with the frame being filled with marrow cells. Marrow,Red Marrow,Yellow Marrow,Marrow, Bone,Marrow, Red,Marrow, Yellow
D002869 Chromosome Aberrations Abnormal number or structure of chromosomes. Chromosome aberrations may result in CHROMOSOME DISORDERS. Autosome Abnormalities,Cytogenetic Aberrations,Abnormalities, Autosome,Abnormalities, Chromosomal,Abnormalities, Chromosome,Chromosomal Aberrations,Chromosome Abnormalities,Cytogenetic Abnormalities,Aberration, Chromosomal,Aberration, Chromosome,Aberration, Cytogenetic,Aberrations, Chromosomal,Aberrations, Chromosome,Aberrations, Cytogenetic,Abnormalities, Cytogenetic,Abnormality, Autosome,Abnormality, Chromosomal,Abnormality, Chromosome,Abnormality, Cytogenetic,Autosome Abnormality,Chromosomal Aberration,Chromosomal Abnormalities,Chromosomal Abnormality,Chromosome Aberration,Chromosome Abnormality,Cytogenetic Aberration,Cytogenetic Abnormality

Related Publications

Francis Hérodin, and Laurence Roy, and Nancy Grenier, and Christophe Delaunay, and Stéphane Baugé, and Aurélie Vaurijoux, and Eric Grégoire, and Cécile Martin, and Antonia Alonso, and Jean-François Mayol, and Michel Drouet
February 2004, Blood,
Francis Hérodin, and Laurence Roy, and Nancy Grenier, and Christophe Delaunay, and Stéphane Baugé, and Aurélie Vaurijoux, and Eric Grégoire, and Cécile Martin, and Antonia Alonso, and Jean-François Mayol, and Michel Drouet
September 2022, Molecular therapy. Nucleic acids,
Francis Hérodin, and Laurence Roy, and Nancy Grenier, and Christophe Delaunay, and Stéphane Baugé, and Aurélie Vaurijoux, and Eric Grégoire, and Cécile Martin, and Antonia Alonso, and Jean-François Mayol, and Michel Drouet
December 2020, International journal of radiation oncology, biology, physics,
Francis Hérodin, and Laurence Roy, and Nancy Grenier, and Christophe Delaunay, and Stéphane Baugé, and Aurélie Vaurijoux, and Eric Grégoire, and Cécile Martin, and Antonia Alonso, and Jean-François Mayol, and Michel Drouet
November 2012, Radiation research,
Francis Hérodin, and Laurence Roy, and Nancy Grenier, and Christophe Delaunay, and Stéphane Baugé, and Aurélie Vaurijoux, and Eric Grégoire, and Cécile Martin, and Antonia Alonso, and Jean-François Mayol, and Michel Drouet
June 2010, PloS one,
Francis Hérodin, and Laurence Roy, and Nancy Grenier, and Christophe Delaunay, and Stéphane Baugé, and Aurélie Vaurijoux, and Eric Grégoire, and Cécile Martin, and Antonia Alonso, and Jean-François Mayol, and Michel Drouet
April 2003, Blood,
Francis Hérodin, and Laurence Roy, and Nancy Grenier, and Christophe Delaunay, and Stéphane Baugé, and Aurélie Vaurijoux, and Eric Grégoire, and Cécile Martin, and Antonia Alonso, and Jean-François Mayol, and Michel Drouet
January 2004, Human gene therapy,
Francis Hérodin, and Laurence Roy, and Nancy Grenier, and Christophe Delaunay, and Stéphane Baugé, and Aurélie Vaurijoux, and Eric Grégoire, and Cécile Martin, and Antonia Alonso, and Jean-François Mayol, and Michel Drouet
August 2015, Radiation research,
Francis Hérodin, and Laurence Roy, and Nancy Grenier, and Christophe Delaunay, and Stéphane Baugé, and Aurélie Vaurijoux, and Eric Grégoire, and Cécile Martin, and Antonia Alonso, and Jean-François Mayol, and Michel Drouet
December 2023, Metabolites,
Francis Hérodin, and Laurence Roy, and Nancy Grenier, and Christophe Delaunay, and Stéphane Baugé, and Aurélie Vaurijoux, and Eric Grégoire, and Cécile Martin, and Antonia Alonso, and Jean-François Mayol, and Michel Drouet
May 1992, Blood,
Copied contents to your clipboard!