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Tohoku Univ. Technology :Epo-deficient GFP anemic mice : T10-050

Anemia developed after birth without fetal lethality

 Although the development of erythropoietin (Epo) -related drugs requires the existence of animal models for disease states such as renal anemia, Epo knockout mice are not suitable as a model because of the embryonic lethality and the large inter-experiment/inter-individual differences in the anemia state in the models produced by surgery/drug treatment. The present invention relates to transgenic mice (I-SAM) that have overcome these problems.   In I-SAM, the endogenous Epo gene is homologically knocked out by insertion of the GFP gene, and a region from 3.3kbp upstream to 4.5kbp downstream of the Epo gene transcription start point (Transgene) is introduced. In I-SAM before birth, transgene-derived Epo is expressed in the liver, etc., and there is no embryonic lethality. After birth, transgene does not express Epo because it has no transcriptional activity in the major Epo-producing tissues, such as the kidney, and there is anemia.   I-SAM has the following characteristics. ・Epo knockout but not embryonic lethality ・Stably develop high levels of anemia after birth ・Have normal renal function ・Have tissue Epo-producing cells labeled with GFP ・Have a long lifespan and can reproduce by mating

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Transgenic mouse

Contributing greatly to the advancement of the medical field through in vitro gene function studies and disease models!

We offer "transgenic mice" at our company. With the completion of the human genome map, the functions of several genes have been clarified, but most genes remain unknown. Due to established experimental procedures and similarities to the human genome, TG mice are used for in vitro gene function research and as disease models, greatly contributing to advancements in the medical field. They are expected to become an important tool at the center of functional genomic research. [Production Process] ■ Construction of expression vector ■ Purification of expression vector ■ Microinjection ■ Identification of founder mice ■ Shipping *For more details, please refer to the related links or feel free to contact us.

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