• Title/Summary/Keyword: Erythropoiesis

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Isolation and Functional Examination of the Long Non-Coding RNA Redrum

  • Lee, Yerim;Park, Charny;Lee, Sanghyuk;Lee, Daekee;Kim, Jaesang
    • Molecules and Cells
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    • v.41 no.2
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    • pp.134-139
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    • 2018
  • Here, we report isolation of multiple long non-coding RNAs (lncRNAs) expressed tissue-specifically during murine embryogenesis. One of these, subsequently came to be known as Redrum, is expressed in erythropoietic cells in fetal liver and adult bone marrow. Redrum transcription is also detected during pregnancy in the spleen where extramedullary hematopoiesis takes place. In order to examine the function of Redrum in vivo, we generated a gene-targeted murine model and analyzed its embryonic and adult erythropoiesis. The homozygous mutant embryo showed no apparent deficiency or defect in erythropoiesis. Adult erythropoiesis in bone marrow and in the spleen during pregnancy likewise showed no detectable phenotype as red blood cells matured in normal fashion. The phenotype is in contrast to the reported function of Redrum in vitro, and our observation implies that Redrum plays in vivo an accessory or supplementary role whose loss is compatible with normal erythropoiesis.

Expression of Sara2 Human Gene in Erythroid Progenitors

  • Jardim, Denis Leonardo Fontes;Cunha, Anderson Ferreira Da;Duarte, Adriana Da Silva Santos;Santos, Camila Oresco Dos;Saad, Sara Terezinha Olalla;Costa, Fernando Ferreira
    • BMB Reports
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    • v.38 no.3
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    • pp.328-333
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    • 2005
  • A human homologue of Sar1, named Sara2, was shown to be preferentially expressed during erythropoiesis in a culture stimulated by EPO. Previous studies, in yeast, have shown that secretion-associated and Ras-related protein (Sar1p) plays an essential role in protein transport from the endoplasmic reticulum to the Golgi apparatus. Here, we report the molecular analysis of Sara2 in erythroid cell culture. A 1250 bp long cDNA, encoding a 198 amino-acid protein very similar to Sar1 proteins from other organisms, was obtained. Furthermore, we also report a functional study of Sara2 with Real-time quantitative PCR analysis, demonstrating that expression of Sara2 mRNA increases during the initial stages of erythroid differentiation with EPO and that a two-fold increase in expression occurs following the addition of hydroxyurea (HU). In K562 cells, Sara2 mRNA was observed to have a constant expression and the addition of HU also up-regulated the expression in these cells. Our results suggest that Sara2 is an important gene in processes involving proliferation and differentiation and could be valuable for understanding the vesicular transport system during erythropoiesis.

Rotations between Erythroblasts and Kupffer Cells in Human Fetal Hepatic Erythropoiesis - Trasmission and Scanning Electron Microscopic Observation (태아 간 적혈구형성에서 별큰포식세포의 적혈구모세포섬형성 - 투과 및 주사전자현미경적 관찰)

  • Lee, Won-Bok;Shin, Do-Shik;Kim, Kyung-Yong
    • Applied Microscopy
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    • v.29 no.1
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    • pp.43-56
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    • 1999
  • The relationship between intravascular erythroblasts and Kupffer cells in the human fetal liver from 11 to 20 week gestation was studied ultrastructurally. The walls of the developing sinusoids consisted of two cell types devoid of basal lamina, the nonfenestrasted endothelial cells and Kupffer cells. Kupffer cells examined were easily identified by their content of phagosmes and their morphological features, and partially proliferated by mitotic division which was different way of proliferation from adult. Some extruded nuclei of acidophilic erythroblasts were trapped within Kupffer cells which exhibited various stages of intracellular digestion of the nuclei. During high activity of human fetal hepatic erythropoiesis, Kupffer cells were found in association with developing erythrob-lasts, which was similar with erythroblastic islands. The developing erythroblasts were partially surrounded by multilaminated membrane system of the Kupffer cell consisting erythroblastic island, or in contact with Kupffer cell via cytoptasmic processes in the sinu-soidal lumen. The presence of these islands was confirmed by transmission and scanning electron microscopic study. The results demonstrate that Kupffer cells in fetal heaptic erythropoiesis phagocytized expelled nuclei and contributed to erythropoiesis mechanically and physiologically by the hypertrophy and the formation of erythroblastic islands.

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AN ELECTRON MICROSCOPIC, RADIOAUTOGRAPHIC STUDY OF ERYTHROPOIESIS IN VITRO

  • MYUNG No Chul
    • Journal of Korean Academy of Oral and Maxillofacial Radiology
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    • v.17 no.1
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    • pp.27-49
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    • 1987
  • Using ³H-proline as a radioactive tracer, the relationship between the ultrastructural differentiation and the site of protein synthesis has been investigated in developing red blood corpuscles. The general ultra-structure of erythropoietic cells in differentiation after 60 minutes of in vitro labeling has confirmed the results from previous investigations by Bessis, M., Thiery, J. and others. In dividing nuclei more than two-thirds of the labeling were present at the interface between heterochromatin and euchromatin. In less differentiated cells most of the grains in interphase cells was localized over the nucleus. As the cells continued to develope beyond a stage where cytoplasmic density was clearly increased over other cell lines in bone marrow, the majority of grains localized over the cytoplasmic area was decreased in more mature cells, as judged by the density of cytoplasm, and the structural changes in mitochondria, Golgi complex and polysomal configurations. These results show; 1) that the cytoplasm of erythroblast series does not change under in vitro conditions employed in the study; 2) that protein synthesis in the nucleus occurs largely at the interface between euchromatin and heterochromatin in active nuclei; and 3) that cytoplasmic synthesis of proteins continues to take place well into the normoblast stage solong as the physically visible polysomes are present in maturing red blood corpuscles.

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Hematopoietic Efficacy of Recombinant Human Erythropoietin (DWP413) (Recombinant Human Erythropoietin (DWP413)의 적혈구 생성 효과)

  • 최현주;김점용;임승욱;연제덕;고여욱
    • Biomolecules & Therapeutics
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    • v.11 no.2
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    • pp.126-132
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    • 2003
  • Efficacy and in vivo bioassay of recombinant human erythropoietin (rh-EPO, DWP413) was investigated. Efficacy studies on erythropoiesis were conducted in normal, cisplatin-induced anemic rats and acute hemorrhage - induced anemic rats. Animals were treated intravenously with DWP413 for 5 days, the changes in the number of red blood cells (RBC), hematocrit value (Hct), hemoglobin concentration (Hb) and reticulocyte were examined. In normal rats, at the doses of 50, 250, and 1250 IU/kg/day, in cisplatin-induced anemic rats, at the doses of 50, 100 and 200 IU/kg/day, RBC, Hb, Hct and reticulocyte were increased dose-depen-dently. And in acute hemorrhage-induced anemic rats, DWP413 (150, 450 and 1350 IU/kg/day) significantly increased RBC, Hb, Hct and reticulocytes. In histopathological findings of kidney, cisplatin alone treated rats expressed severe glomerulus and tubular damage. But in the DWP413 treated rats after cisplatin treatment, these were not remarkable compared to cisplatin alone treated rats. In vivo bioassay, DWP413 had 102.43% of bioactivity compared to erythropoietin BRP(Biological Reference Product, European Directorate for the Quality of Medicines). These results suggest that DWP413 might be useful for the therapy of anemia induce by renal failure and acute blood loss.

Blood Analysis for Indirect Doping Control of Erythropoietin in Sports (운동선수들의 혈액분석을 통한 Etrythropoietin 간접도핑검사)

  • 이정란;김소영;홍지연;김명수;최명자
    • YAKHAK HOEJI
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    • v.47 no.6
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    • pp.422-431
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    • 2003
  • The use of recombinant human erythropoietin (rhEPO), a stimulator of erythropoiesis, banned in sports because of the medical risk associated with thrombosis. Due to analytical difficulties to differentiate between natural human EPO (hEPO) and rhEPO, blood parameters of erythropoiesis such as contents of hemoglobin (cut-off value <17.5 g/d l for man, and < 16.0 g/dl for women), hematocrit and reticulocytes (cut-off value <2.0%) were measured to focus the misuse of rhEPO. We conducted anti-doping test for 122 blood samples of the World Cup athletes. The mean values of key parameters are as follows; 14.5$\pm$1.0 g/dl for hemoglobin, 41.7$\pm$2.8% for hematocrit, and 1.3$\pm$0.4% for reticulocyte. Blood sample was found to be stable up to 8 hours for the reticulocyte measurement. In addition, the soluble transferrin receptor and ferritin levels were measured by immunoassay methods using plasma samples (n=28) in which the mean value was 0.8$\pm$0.5 $\mu\textrm{g}$/$m\ell$ and 54.6$\pm$33.7 ng/$m\ell$, respectively. The results indicate that all samples tested were negative for the blood parameters of indirect anti-doping test for hEPO misuse. The statistical evaluation suggest that several other parameters such as red blood cell, mean corpuscular hemoglobin concentration, mean corpuscular volume, mean corpuscular hemoglobin and white blood cell could be considered as factors influencing hEPO function in addition to five parameters mentioned.

Ultrastructural Study on the Morphogenesis of Rat Spleen (흰쥐 비장의 형태형성에 관한 미세구조적 연구)

  • Kim, W.J.;Deung, Y.K.
    • Applied Microscopy
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    • v.15 no.2
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    • pp.19-30
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    • 1985
  • Morphogenesis of rat spleen was studied by light and electron microscope from the fetal stage till the newborn or adult stages. The results indicate as follows: at the 14th day of gestation rat spleen, as an early form, consists of intercellular spaces and mesenchymal cells. And at this stage the spleen is in a premature state, then it appears its adult condition in structures after the 7th postnatal day. Erythropoiesis is shown to be an active process in rat spleen beginning about the 18th day of gestation, and once established the process continues at least till the 7th postnatal day. At the 20th day of gestation, there are splenic nodules, trabeculae, venous sinus, and granular leucocytes such as neutrophils and basophils in rat spleen. Lymphocytes appeared to be well differentiated at the 7th postnatal day and were present till the adult stage. While degenerating erythrocytes are phagocytosed by macrophages. In conclusion, rat spleen started to be appeared from the 14th day of gestation and erythropoiesis in rat spleen was carried out for about 10 days between prenatal and postnatal stage. Erythrophagocytosis was accomplished by macrophages and it is suggested that the proper functions of rat spleen set off from the 7 th postnatal day when its structures are similar to the adult's.

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Monoclone 항체를 이용한 사람 EPO 형질전환돼지의 유즙내 발현단백질 분석

  • 이연근;정희경;이현기;이풍연;박진기;민관식;김진회;장원경
    • Proceedings of the KSAR Conference
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    • 2002.06a
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    • pp.88-88
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    • 2002
  • Erythropoietin (EPO)는 조혈작용 (erythropoiesis)을 나타내는 호르몬으로서 사람의 빈혈치료제로 사용되며, 포유통물 중 사람, 생쥐 등의 유즙 내에 혈청 EPO 와 동일한 크기로 다량으로 존재한다고 보고된 바 있다. 생쥐의 WAP promoter를 이용하여 사람의 조혈촉진제인 EPO를 유즙으로 생산하는 형질전환돼지 (새롬이)의 유즙을 분석하기 위해 SDS-PAGE와 Western blotting 을 수행하였다. 먼저, 형질전환돼지의 유즙으로부터 원심분리에 의해 지방층을 제거한 후, 16.5% polyacrylamide gel 에서 PAGE를 수행하였다. (중략)

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A Simple Embryonic Stem Cell-Based in vitro Differentiation System That Recapitulates Early Erythropoietic Events in the Mouse Embryo (생쥐 배아에서의 초기 적혈구 분화를 재현 할 수 있는 배아주 세포에 기초한 간단한 시험관내 분화체계)

  • 김철근
    • The Korean Journal of Zoology
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    • v.39 no.3
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    • pp.239-247
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    • 1996
  • An embryonic stem (ES) cell-based in vitro model system was examined to determine whether a simple differentiation of embryoid bodies (EB) in the suspension medium is useful to dissect early erythropoiesis. Characteristics of the differentiating EBs were monitored for their differentiation potential to generate hematopoietic cell types by general morphology, benzidine staining and two-step colony assays, and expressivity of several erythroid marker genes by the RT-PCR analysis for total cellular RNA prepared from the differentiating EBs. Every ematopoietic lineage cells were generated from the differentiating EBs with reproducible frequencies, similar to the other sophisticated differentiation protocols. Furthermore, the globin gene switching in differentiating ES cells paralleled the sequence of events found in the mouse embryo, and such that their expression was activated by at least 12 hrs later than those of erythroid-specific transcription factors, GATA-1 and Tal-1 The erythropoietic differentiation program initiated reproducibly and efficiently in this simple differentiation system in a suspension culture, such that this system may be useful for dissection of the molecular events of early erythropoiesis.

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