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21 results on '"NAKAMURA, Yukio"'

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1. Irradiation is not sufficient to eradicate residual immortalized erythroid cells in in vitro-generated red blood cell products.

2. Identification of potential chemical compounds enhancing generation of enucleated cells from immortalized human erythroid cell lines.

3. Identification of characteristic proteins at late-stage erythroid differentiation in vitro.

4. Application of immortalized human erythroid progenitor cell line in serologic tests to detect red blood cell alloantibodies.

5. An erythroid-specific ATP2B4 enhancer mediates red blood cell hydration and malaria susceptibility.

6. Rh D blood group conversion using transcription activator-like effector nucleases.

7. Establishment of immortalized human erythroid progenitor cell lines able to produce enucleated red blood cells.

8. In vitro production of enucleated red blood cells from hematopoietic stem and progenitor cells.

9. Red blood cell production from immortalized progenitor cell line.

10. Establishment of mouse embryonic stem cell-derived erythroid progenitor cell lines able to produce functional red blood cells.

11. In vitro production of transfusable red blood cells.

12. Refinement of cytokine use in the in vitro expansion of erythroid cells.

13. Lipocalin 2 functions as a negative regulator of red blood cell production in an autocrine fashion.

14. Genome-wide association study of red blood cell traits in Hispanics/Latinos: The Hispanic Community Health Study/Study of Latinos.

15. An immortalized adult human erythroid line facilitates sustainable and scalable generation of functional red cells

16. Corrigendum: Rh D blood group conversion using transcription activator-like effector nucleases

17. Identification of a novel putative mitochondrial protein FAM210B associated with erythroid differentiation.

18. Direct Generation of Immortalized Erythroid Progenitor Cell Lines from Peripheral Blood Mononuclear Cells.

19. Efficient enucleation of erythroblasts differentiated in vitro from hematopoietic stem and progenitor cells.

21. Human erythroblasts with c-Kit activating mutations have reduced cell culture costs and remain capable of terminal maturation.

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