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1.
J Exp Biol ; 216(Pt 5): 901-8, 2013 Mar 01.
Article in English | MEDLINE | ID: mdl-23155089

ABSTRACT

Hematopoietic responses to environmental factors are not fully characterized. Polycythemia has been reported during exposure to low temperatures in ectothermic animals. The relationship between the causes of polycythemia and erythropoiesis during low temperature exposure is not fully understood. In this study, we exposed C57BL/6 mice to 5°C and monitored the blood cell counts and erythropoiesis. The hematocrit level increased from 45.6 to 52.2% after 14 days. Likewise, the hemoglobin concentration, initially 15.1 g dl(-1), rose to 16.0 g dl(-1). The reticulocyte production index significantly increased from 4 to 8% after 7 days. We examined the anatomy and cell composition of the spleens of the mice. On day 5, the spleens were ∼6 mg g(-1) of body mass, which was twofold greater than the spleens on day 0. Flow cytometry showed fourfold more proerythroblasts on day 5, compared with day 0. Additionally, the number of late-stage mature erythroblasts increased on day 14. Erythropoietin mRNA levels increased in the kidneys, and hypoxia-inducible genes were enhanced in the kidney. Our findings indicated that low ambient temperature is a novel erythropoietic stress, which induces polycythemia by enhanced erythropoiesis.


Subject(s)
Environmental Exposure , Erythropoiesis , Erythropoietin/metabolism , Spleen/cytology , Animals , Cold Temperature/adverse effects , Erythroblasts/cytology , Flow Cytometry , Hematologic Tests , Male , Mice , Mice, Inbred C57BL , Polymerase Chain Reaction , RNA, Messenger/metabolism , Stress, Physiological
2.
J Exp Biol ; 215(Pt 17): 3087-95, 2012 Sep 01.
Article in English | MEDLINE | ID: mdl-22875773

ABSTRACT

Diminished erythrocyte count and erythropoiesis have been reported during hypothermia in some ectothermic animals. In this study, the African clawed frog, Xenopus laevis, was used to investigate the cause of hypothermia-induced anemia. We developed a new model of hypothermia at 5°C and monitored blood cell count and erythropoiesis on several days. Erythrocyte count declined by 30% on the first day following cold exposure (5°C) and mRNA expression of hemeoxygenase-1 was enhanced 10-fold; accumulation of iron as a result of heme degradation was observed in the liver. One day after low-temperature exposure, erythropoietin mRNA expression was elevated in the liver and lung compared with that at normal temperature (22°C) by qRT-PCR analysis. Examination of liver sections (i.e. the erythropoietic organ) showed an increase in o-dianisidine-positive erythrocytes in the hepatic sinusoid 5 days after the onset of low-temperature exposure compared with normal liver. Peripheral erythrocyte count remained low, indicating that newly produced erythrocytes did not migrate from the liver to the circulation during hypothermia. In conclusion, this study reveals hypothermic anemia as being associated with hepatic erythrocyte destruction; prolonged anemia during low-temperature exposure is concomitant with newly produced erythrocytes being confined to the liver and may lead to new insights into vertebrate hematopoiesis.


Subject(s)
Cold Temperature , Environmental Exposure , Erythrocytes/metabolism , Liver/metabolism , Liver/pathology , Xenopus laevis/physiology , Anemia/blood , Anemia/pathology , Animals , Bromodeoxyuridine/metabolism , Cell Proliferation , Erythrocyte Count , Erythrocytes/pathology , Erythropoiesis , Male , Models, Biological , Real-Time Polymerase Chain Reaction
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