Literature DB >> 26425903

The Effect of Radiation Dose and Variation in Neupogen® Initiation Schedule on the Mitigation of Myelosuppression during the Concomitant GI-ARS and H-ARS in a Nonhuman Primate Model of High-dose Exposure with Marrow Sparing.

Thomas J MacVittie1, Alexander W Bennett, Ann M Farese, Cheryl Taylor-Howell, Cassandra P Smith, Allison M Gibbs, Karl Prado, William Jackson.   

Abstract

A nonhuman primate (NHP) model of acute high-dose, partial-body irradiation with 5% bone marrow (PBI/BM5) sparing was used to assess the effect of Neupogen® [granulocyte colony stimulating factor (G-CSF)] to mitigate the associated myelosuppression when administered at an increasing interval between exposure and initiation of treatment. A secondary objective was to assess the effect of Neupogen® on the mortality or morbidity of the hematopoietic (H)- acute radiation syndrome (ARS) and concurrent acute gastrointestinal radiation syndrome (GI-ARS). NHP were exposed to 10.0 or 11.0 Gy with 6 MV LINAC-derived photons at approximately 0.80 Gy min. All NHP received medical management. NHP were dosed daily with control article (5% dextrose in water) initiated on day 1 post-exposure or Neupogen® (10 μg kg) initiated on day 1, day 3, or day 5 until recovery [absolute neutrophil count (ANC) ≥ 1,000 cells μL for three consecutive days]. Mortality in both the 10.0 Gy and 11.0 Gy cohorts suggested that early administration of Neupogen® at day 1 post exposure may affect acute GI-ARS mortality, while Neupogen® appeared to mitigate mortality due to the H-ARS. However, the study was not powered to detect statistically significant differences in survival. The ability of Neupogen® to stimulate granulopoiesis was assessed by evaluating key parameters for ANC recovery: the depth of nadir, duration of neutropenia (ANC < 500 cells μL) and recovery time to ANC ≥ 1,000 cells μL. Following 10.0 Gy PBI/BM5, the mean duration of neutropenia was 11.6 d in the control cohort vs. 3.5 d and 4.6 d in the day 1 and day 3 Neupogen® cohorts, respectively. The respective ANC nadirs were 94 cells μL, 220 cells μL, and 243 cells μL for the control and day 1 and day 3 Neupogen® cohorts. Following 11.0 Gy PBI/BM5, the duration of neutropenia was 10.9 d in the control cohort vs. 2.8 d, 3.8 d, and 4.5 d in the day 1, day 3, and day 5 Neupogen® cohorts, respectively. The respective ANC nadirs for the control and day 1, day 3, and day 5 Neupogen® cohorts were 131 cells μL, 292 cells μL, 236 cells μL, and 217 cells μL, respectively. Therefore, the acceleration of granulopoiesis by Neupogen® in this model is independent of the time interval between radiation exposure and treatment initiation up to 5 d post-exposure. The PBI/BM5 model can be used to assess medical countermeasure efficacy in the context of the concurrent GI- and H-ARS.

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Year:  2015        PMID: 26425903      PMCID: PMC9442798          DOI: 10.1097/HP.0000000000000350

Source DB:  PubMed          Journal:  Health Phys        ISSN: 0017-9078            Impact factor:   2.922


  50 in total

1.  Meta-analysis: antibiotic prophylaxis reduces mortality in neutropenic patients.

Authors:  Anat Gafter-Gvili; Abigail Fraser; Mical Paul; Leonard Leibovici
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2.  Partial shielding of dogs: effectiveness of small external epicondylar lead cuffs against lethal x-radiation.

Authors:  L J Cole; H M Haire; E L Alpen
Journal:  Radiat Res       Date:  1967-09       Impact factor: 2.841

3.  Severity of organ injury as a predictor of acute mortality for disparate patterns of absorbed dose distribution.

Authors:  V P Bond; A L Carsten; J Bullis; S P Roth
Journal:  Radiat Res       Date:  1991-10       Impact factor: 2.841

Review 4.  Radiation sensitivity of the hemopoietic stem cell.

Authors:  D W van Bekkum
Journal:  Radiat Res       Date:  1991-10       Impact factor: 2.841

5.  Therapeutic efficacy of recombinant human leukemia inhibitory factor in a primate model of radiation-induced marrow aplasia.

Authors:  A M Farese; L A Myers; T J MacVittie
Journal:  Blood       Date:  1994-12-01       Impact factor: 22.113

6.  Recovery from severe hematopoietic suppression using recombinant human granulocyte-macrophage colony-stimulating factor.

Authors:  R L Monroy; R R Skelly; P Taylor; A Dubois; R E Donahue; T J MacVittie
Journal:  Exp Hematol       Date:  1988-06       Impact factor: 3.084

7.  The acute gastrointestinal subsyndrome of the acute radiation syndrome: a rhesus macaque model.

Authors:  Thomas J MacVittie; Ann M Farese; Alexander Bennett; Daniel Gelfond; Terez Shea-Donohue; Gregory Tudor; Catherine Booth; Emylee McFarland; William Jackson
Journal:  Health Phys       Date:  2012-10       Impact factor: 1.316

Review 8.  Structure and function of bone marrow hemopoiesis: mechanisms of response to ionizing radiation exposure.

Authors:  T M Fliedner; D Graessle; C Paulsen; K Reimers
Journal:  Cancer Biother Radiopharm       Date:  2002-08       Impact factor: 3.099

9.  The influence of bone marrow depletion on intestinal radiation damage.

Authors:  N H Terry; E L Travis
Journal:  Int J Radiat Oncol Biol Phys       Date:  1989-09       Impact factor: 7.038

10.  Clinical report of three cases of acute radiation sickness from a (60)Co radiation accident in Henan Province in China.

Authors:  Qiang Liu; Bo Jiang; Li-Ping Jiang; Ying Wu; Xiao-Guang Wang; Feng-Ling Zhao; Bao-Hua Fu; Turai Istvan; Enhai Jiang
Journal:  J Radiat Res       Date:  2008-01-11       Impact factor: 2.724

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  16 in total

1.  AEOL 10150 Mitigates Radiation-Induced Lung Injury in the Nonhuman Primate: Morbidity and Mortality are Administration Schedule-Dependent.

Authors:  Thomas J MacVittie; Allison Gibbs; Ann M Farese; Kory Barrow; Alexander Bennett; Cheryl Taylor-Howell; Abdul Kazi; Karl Prado; George Parker; William Jackson
Journal:  Radiat Res       Date:  2017-02-16       Impact factor: 2.841

2.  Multi-omic Analysis of Non-human Primate Heart after Partial-body Radiation with Minimal Bone Marrow Sparing.

Authors:  Stephanie Zalesak-Kravec; Weiliang Huang; Pengcheng Wang; Jianshi Yu; Tian Liu; Amy E Defnet; Alexander R Moise; Ann M Farese; Thomas J MacVittie; Maureen A Kane
Journal:  Health Phys       Date:  2021-10-01       Impact factor: 2.922

3.  Rat Models of Partial-body Irradiation with Bone Marrow-sparing (Leg-out PBI) Designed for FDA Approval of Countermeasures for Mitigation of Acute and Delayed Injuries by Radiation.

Authors:  Brian L Fish; Thomas J MacVittie; Feng Gao; Jayashree Narayanan; Tracy Gasperetti; Dana Scholler; Yuri Sheinin; Heather A Himburg; Barry Hart; Meetha Medhora
Journal:  Health Phys       Date:  2021-10-01       Impact factor: 2.922

4.  The Natural History of Acute Radiation-induced H-ARS and Concomitant Multi-organ Injury in the Non-human Primate: The MCART Experience.

Authors:  Ann M Farese; Catherine Booth; Greg L Tudor; Wanchang Cui; Eric P Cohen; George A Parker; Kim G Hankey; Thomas J MacVittie
Journal:  Health Phys       Date:  2021-10-01       Impact factor: 2.922

5.  Radiation Nephropathy in a Nonhuman Primate Model of Partial-body Irradiation with Minimal Bone Marrow Sparing-Part 1: Acute and Chronic Kidney Injury and the Influence of Neupogen.

Authors:  Eric P Cohen; Kim G Hankey; Ann M Farese; George A Parker; Jace W Jones; Maureen A Kane; Alexander Bennett; Thomas J MacVittie
Journal:  Health Phys       Date:  2019-03       Impact factor: 1.316

6.  The Gastrointestinal Subsyndrome of the Acute Radiation Syndrome in Rhesus Macaques: A Systematic Review of the Lethal Dose-response Relationship With and Without Medical Management.

Authors:  Thomas J MacVittie; Ann M Farese; George A Parker; William Jackson; Catherine Booth; Gregory L Tudor; Kim G Hankey; Christopher S Potten
Journal:  Health Phys       Date:  2019-03       Impact factor: 2.922

7.  Proteomic Evaluation of the Natural History of the Acute Radiation Syndrome of the Gastrointestinal Tract in a Non-human Primate Model of Partial-body Irradiation with Minimal Bone Marrow Sparing Includes Dysregulation of the Retinoid Pathway.

Authors:  Weiliang Huang; Jianshi Yu; Tian Liu; Gregory Tudor; Amy E Defnet; Stephanie Zalesak; Praveen Kumar; Catherine Booth; Ann M Farese; Thomas J MacVittie; Maureen A Kane
Journal:  Health Phys       Date:  2020-11       Impact factor: 2.922

8.  Evaluation of Plasma Biomarker Utility for the Gastrointestinal Acute Radiation Syndrome in Non-human Primates after Partial Body Irradiation with Minimal Bone Marrow Sparing through Correlation with Tissue and Histological Analyses.

Authors:  Praveen Kumar; Pengcheng Wang; Gregory Tudor; Catherine Booth; Ann M Farese; Thomas J MacVittie; Maureen A Kane
Journal:  Health Phys       Date:  2020-11       Impact factor: 2.922

9.  A Systematic Review of the Hematopoietic Acute Radiation Syndrome (H-ARS) in Canines and Non-human Primates: Acute Mixed Neutron/Gamma vs. Reference Quality Radiations.

Authors:  Thomas J MacVittie; Ann M Farese; William E Jackson
Journal:  Health Phys       Date:  2020-11       Impact factor: 2.922

Review 10.  Acute Radiation-induced Lung Injury in the Non-human Primate: A Review and Comparison of Mortality and Co-morbidities Using Models of Partial-body Irradiation with Marginal Bone Marrow Sparing and Whole Thorax Lung Irradiation.

Authors:  Thomas J MacVittie; Ann M Farese; George A Parker; Alexander W Bennett; William E Jackson
Journal:  Health Phys       Date:  2020-11       Impact factor: 2.922

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