Single-cell origin of human mixed hemopoietic colonies expressing various combinations of cell lineages.
نویسندگان
چکیده
We have established single-cell culture for human mixed hemopoietic colonies using a micromanipulator. Mononuclear cells from human umbilical cord blood were cultured at a concentration of 1 X 10(4) cells per milliliter in methylcellulose medium containing medium conditioned by phytohemagglutinin-stimulated leukocytes and erythropoietin. It was possible to identify the single hemopoietic progenitors in situ in methylcellulose culture on the basis of unique morphology and migratory ability after 36 to 60 hours of incubation. Candidate single hemopoietic progenitors from methylcellulose medium were individually micromanipulated to secondary culture dishes and cultured for an additional ten to 14 days. The colonies derived from the single progenitors were individually picked and stained with May-Grünwald-Giemsa for analyses of the cellular composition. A total of 288 single cells were individually transferred to second dishes. Then 186 single cells produced secondary colonies consisting of cells in one to five different lineages. A total of 39 single cells produced mixed hemopoietic colonies consisting of cells in two, three, four, and five different lineages. There were eight types of colonies revealing two different lineages, ie, neutrophil (n)-erythrocyte (E), macrophage (m)-E, m-megakaryocyte (M), eosinophil (e)-basophil (b), eE, bE, bM, and EM lineages. Three types of colonies consisting of cells in three lineages were also seen, ie, nmM, nbE, and ebE. There were six types of colonies consisting of cells in four lineages, ie, nmbM, nmEM, nebE, mebM, and meEM. One type of colony consisted of cells in five different lineages (nmbEM). These results indicate the single-cell origin of human mixed hemopoietic colonies expressing various combinations of cell lineages. It also provides experimental data in support of stochastic mechanisms of stem cell differentiation.
منابع مشابه
Single-cell origin of mouse hemopoietic colonies expressing multiple lineages in variable combinations.
By using a micromanipulator, single cells from blast cell colonies were individually transferred to 35-mm culture dishes for secondary colony formation. When individual colonies appeared to be mature, they were examined for cellular composition by May-Grunwald-Giemsa staining and were replated for determination of unexpressed hemopoietic potentials. We describe here a total of 50 mixed hemopoie...
متن کاملClonal assay of mouse mast cell colonies in methylcellulose culture.
When mouse marrow and spleen cells were cultured for over 12 days in methylcellulose containing media conditioned by pokeweed-mitogen-stimulated spleen cells, colonies containing mast cells and blast cells were observed. The characteristic morphology of the colonies and the time course of their development allowed in situ identification of the mast cell colonies. Identification of the mast cell...
متن کاملIsolation and Characterization of Human Induced Pluripotent Stem Cells-Derived Mesenchymal Progenitors
Purpose: Isolating human induced pluripotent stem cells (hiPS)-derived mesenchymal progenitors as a new source of mesenchymal cells which can differentiate into different lineages like adipose and bone. Materials and Methods: After 7 days of hiPS1 culture on matrigle coated dishes, spindle like cells around colonies were removed by cell scraper. These cells that had mesenchymal like morphology ...
متن کاملDisparate differentiation in hemopoietic colonies derived from human paired progenitors.
We analyzed the differentiation of hemopoietic colonies derived from human paired daughter cells. Candidate progenitor cells were isolated by use of a micromanipulation technique from cultures of My-10 antigen-positive cord blood cells. Then nine to 36 hours later, the paired daughter cells were separated with a micromanipulator and allowed to form colonies in methylcellulose medium containing ...
متن کاملIdentification of T lymphocytes in human mixed hemopoietic colonies.
The addition of a T-cell growth-promoting medium (PHA-TCM) to culture conditions that support growth of multi-lineage hemopoietic colonies enhances the proliferation of cells with lymphoid morphology within these colonies. These cells were identified as T lymphocytes by their ability to form rosettes with SRBC and their reaction with monoclonal antibodies (OKT3, OKT4) directed against T-cell-sp...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
- Blood
دوره 65 4 شماره
صفحات -
تاریخ انتشار 1985