Assessment of Hematopoietic Response to Total Body Irradiation in a Rat Experimental Model

Author:

Cyran Małgorzata,Stawarz Katarzyna1,Chambily Lucile1,Kusza Krzysztof2,Siemionow Maria

Affiliation:

1. Department of Orthopaedics, University of Illinois Chicago, Chicago, IL

2. Anesthesiology, Intensive Therapy and Pain Management, and

Abstract

Background Exposure to high doses of total body irradiation (TBI) may lead to the development of acute radiation syndrome (ARS). This study was conducted to establish an experimental rat model of TBI to assess the impact of different doses of TBI on survival and the kinetics of changes within the hematopoietic system in ARS. Materials and Methods In this study, 132 Lewis rats irradiated with a 5Gy or 7Gy dose served as experimental models to induce ARS and to evaluate the hematopoietic response of the bone marrow (BM) compartment. Animals were divided into 22 experimental groups (n = 6/group): groups 1–11 irradiated with 5Gy dose and groups 12–22 irradiated with 7Gy dose. The effects of TBI on the hematopoietic response were assessed at 2, 4, 6, 8 hours and 5, 10, 20, 30, 40, 60 and 90 days following TBI. Signs of ARS were evaluated by analyzing blood samples through complete blood count in addition to the clinical assessment. Results Groups irradiated with 5Gy TBI showed 100% survival, whereas after 7Gy dose, 1.6% mortality rate was observed. Assessment of the complete blood count revealed that lymphocytes were the first to be affected, regardless of the dose used, whereas an “abortive rise” of granulocytes was noted for both TBI doses. None of the animals exhibited signs of severe anemia or thrombocytopenia. All animals irradiated with 5Gy dose regained initial values for all blood cell subpopulations by the end of observation period. Body weight loss was reported to be dose-dependent and was more pronounced in the 7Gy groups. However, at the study end point at 90 days, all animals regained or exceeded the initial weight values. Conclusions We have successfully established a rat experimental model of TBI. This study revealed a comparable hematopoietic response to the sublethal or potentially lethal doses of ionizing radiation. The experimental rat model of TBI may be used to assess different therapeutic approaches including BM-based cell therapies for long-term reconstitution of the hematopoietic and BM compartments allowing for comprehensive analysis of both the hematological and clinical symptoms associated with ARS.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Reference35 articles.

1. Health effects in those with acute radiation sickness from the Chernobyl accident;Health Phys,2007

2. The hematological effects in those exposed to radiation in the accident at the Chernobyl Atomic Electric Power Station [in Russian];Med Radiol (Mosk),1991

3. Medical management of the acute radiation syndrome: recommendations of the Strategic National Stockpile Radiation Working Group;Ann Intern Med,2004

4. Potential for a pluripotent adult stem cell treatment for acute radiation sickness;World J Exp Med,2012

5. Acute radiation syndrome: assessment and management;South Med J,2010

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