[Hematopoietic stroma and the regulation of hematopoiesis in extramedullary bone marrow transplants in mice].
V I Starostin, Satdykova Gp, Derevianko Vp
Abstract
V I Starostin, Satdykova Gp, Derevianko Vp
Abstract
The bone marrow fragments were transplanted under the renal capsule and "stromal function" of the transplants during up to 1.5 years was estimated by the numbers of CFU-S, myelokaryocytes and the weight of newly formed bone tissue. On the basis of the published and authors' data, a conclusion was drawn that the ability of the stromal precursor cells of bone marrow to provide for the growth of hemopoietic territories is limited by the size of medullary cavity; outside its limits this ability is not only realized, but may be additionally stimulated by some distant factors (preirradiation of the recipients in the given case). The self-maintenance ability of the stromal mechanocytes from the old mice during 43 months was shown by means of retransplantation. On the basis of electron microscopy and published data, a suggestion was put forward that fibroblastic reticular cells might be ancestral elements of osteogenic differentiation.
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The bone marrow fragments were transplanted under the renal capsule and "stromal function" of the transplants during up to 1.5 years was estimated by the numbers of CFU-S, myelokaryocytes and the weight of newly formed bone tissue. On the basis of the published and authors' data, a conclusion was drawn that the ability of the stromal precursor cells of bone marrow to provide for the growth of hemopoietic territories is limited by the size of medullary cavity; outside its limits this ability is not only realized, but may be additionally stimulated by some distant factors (preirradiation of the recipients in the given case). The self-maintenance ability of the stromal mechanocytes from the old mice during 43 months was shown by means of retransplantation. On the basis of electron microscopy and published data, a suggestion was put forward that fibroblastic reticular cells might be ancestral elements of osteogenic differentiation.
Key concepts: Stromal cell, Medullary cavity, Bone marrow, Haematopoiesis, Renal capsule, Reticular cell, Stroma, Reticular connective tissue