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Biomedical subjects

M Ingram

Publications and source records attributed to M Ingram.

At least 73 records · Page 4Linked to original sources

Antibody to purified human colony-stimulating factor: use in the identification and isolation of granulocyte macrophage progenitor cells.

Conditioned media prepared from human lung, placenta, peripheral leukocytes, cultured human pancreatic carcinoma cells, and cultured cervical carcinoma cells exhibit a common pattern of two distinct types of colony-stimulating factors (CSF) separable by isoelectrofocusing. Type I and type II CSF differ in MW, isoelectric point, CFU-C specificity, and the morphologic type of colonies they stimulate. Type I CSF exhibits higher activity in mouse than in human marrow while type II is more active in human marrow. Type I and II CSF from cultured human pancreatic carcinoma have been purified, type I to apparent homogeneity, and antibody has been prepared against them in rabbits. We have utilized purified CSF and anti-CSF antibodies to label CFU-C fluorescently for the purpose of cell sorting via flow photometry. Human bone marrow cells preincubated with CSF and then treated first with anti-CSF antibody then fluorescein-labeled goat antirabbit globulin retain their ability to grow and form aggregates in the presence of additional CSF. Colonies thus formed exhibit fluorescence, the intensity of which diminishes with increase in aggregate size. These observations provide new insight into the biology of CFU-C and suggest the following: (1) Incubation of marrow cells with CSF for 2 h results in binding of CSF or an antigenic component of CSF to membranes of CFU-C. (2) Bound CSF-anti CSF complex remains on CFU-C membranes through at least 5-6 cell divisions. (3) The approach described offers great potential for the preparation of highly purified CFU-C populations by fluorescence cell sorting.

Antibodies↗

Gynecologic specimen analysis by multiangle light scattering in a flow system.

A flow-system instrument is described in which the laser light scattered by a mammalian cell is sampled simultaneously at up to 32 angles between 0 degrees and 21 degrees from the laser beam axis as the cell passes through the beam. The scatter pattern for each cell is stored by a computer for later analysis. Various data-processing techniques are discussed. Results of preliminary application of the instrument to the analysis of normal and abnormal gynecologic specimens are presented.

Autoanalysis↗

Hematologic changes in mice during and after exposure to severe hypobaric hypoxia.

Exposing mice to an atmospheric pressure of 300 mm Hg for 16 d caused a variety of hematologic effects. Hematocrit increased rapidly in the first 8 d of exposure and slowly in the second 8 d. Reticulocyte counts rose above normal, peaked on Day 8, and then fell rapidly toward the control level. Macrocytic erythrocytes, formed during exposure, remained macrocytic after the termination of exposure and after the loss of their reticulum. The posthypoxic mice proved sensitive for erythropoietin bioassay. Mice injected with normal dog serum showed a significantly higher incorporation of 59Fe than control mice injected with physiologic saline. A reduction of the duration of exposure to 10 d resulted in only a slight decrease in the sensitivity of the mouse bioassay system. However, a 16-d exposure at a pressure of 360 mm Hg resulted in considerably less sensitive bioassay animals.

Animals↗