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Biomedical subjects

K Motoyoshi

Publications and source records attributed to K Motoyoshi.

At least 217 records · Page 12Linked to original sources

Clonal growth of human acute myeloid leukemia cells (ML-1 and HL-60) in serum-free agar medium.

Human acute myeloid leukemia (ML-1 and HL-60) cells grew continuously in the serum-free liquid medium supplemented with human transferrin and bovine insulin. Both ML-1 and HL-60 cells formed clusters and colonies in the serum-free agar medium supplemented with bovine serum albumin, human transferrin, cholesterol, and L-alpha-phosphatidylcholine. Medium conditioned by phytohemagglutinin-stimulated leukocytes prepared in the absence of serum had three types of colony-stimulating factors on normal human bone marrow cells. When fetal calf serum was present, medium conditioned by phytohemagglutinin-stimulated leukocytes stimulated the clonal growth of HL-60 cells at the lower concentration. However, it inhibited that of ML-1 cells. In contrast, under serum-free conditions, medium conditioned by phytohemagglutinin-stimulated leukocytes promoted the clonal growth of both ML-1 and HL-60 cells at the lower concentrations. The study using a Sephadex G-200 column revealed that, in the serum-supplemented cultures, HL-60 cells responded to one of the three colony-stimulating factors and an activity with molecular weight of around 12,000, while ML-1 cells responded only to an activity with molecular weight of around 12,000. In the serum-free cultures, both ML-1 and HL-60 cells were stimulated by activities with molecular weights of 62,000 and 54,000, respectively. These studies demonstrate that the determination of growth factors for cell lines is dependent on culture conditions, particularly on serum component; that there is a heterogeneity of ML-1 and HL-60 cells in response to the growth factors; and that there is potential importance of demonstration of heterogeneity among different cell lines in establishing requirements for different stages of differentiation.

Agar↗

Inhibitory activity on murine granulocytic colony formation of bone marrow cell-conditioned medium obtained from colony-stimulating factor-producing tumor-bearing nude mice.

The effects of bone marrow-conditioned medium obtained from colony-stimulating factor-producing tumor-bearing nude mice (G-BM-CM) on mouse and human granulocyte-macrophage colony formation and mouse erythroid colony and burst formation were studied. Addition of G-BM-CM into the mouse granulocyte-macrophage colony-forming system containing colony-stimulating activity more strongly inhibited granulocyte colony formation than did mixed granulocyte-macrophage and macrophage colony formation, while it did not change the number of granulocyte colonies formed by human bone marrow cells stimulated by human granulocyte colony-stimulating activity. Addition of G-BM-CM slightly increased mouse erythroid colony and burst numbers when it was added into an erythroid colony-forming system stimulated by erythropoietin (1 unit/ml), and into the erythroid burst-forming system stimulated by erythropoietin (1 unit/ml) and 7% spleen cell-conditioned medium. These results might indicate that G-BM-CM mainly blocked commitment of mouse granulocyte-macrophage colony-forming cells to granulocytic progeny.

Animals↗

Effects of prostaglandin E on the proliferation and differentiation of leukemic progenitor cells in acute nonlymphocytic leukemia.

The effects of prostaglandin E1 (PGE1) on leukemia colony formation were investigated in seven cases of acute nonlymphocytic leukemia. In contrast to the almost constant results observed for normal myeloid colony formation, in patients there were apparent individual variations. Strong inhibition of colony formation by PGE1 was observed in three cases. In one case, enhancement rather than inhibition was observed. These in vitro inhibitory or stimulatory effects of PGE1 were not related to the degree of the in vivo proliferation of leukemia cells. Morphologic analysis of colonies revealed that preferential inhibition of monocytic colony formation by PGE1, characteristic of normal bone marrow cultures, was not always observed in leukemia cell cultures. These abnormal responses to PGE1 suggest that the proliferation and differentiation of leukemic progenitor cells are regulated in a different way from normal hemopoiesis.

Alprostadil↗

The correlation between surface microscopy and dermal histology in tetradecane-induced comedones in rabbit ear skin.

Three concentrations of tetradecane and liquid paraffin were applied daily for 4 weeks to the external ear skin of rabbits, and the average diameter of the follicular lesions was measured under the Leitz MZ surface microscope. These observations showed that the increase in the size of follicular lesions with tetradecane was dose-dependent and the maximum diameter was reached on the 14th day. Serial biopsies were also taken for routine histology, and undiluted tetradecane was shown to produce follicular hyperkeratosis, microcomedones, closed comedones and open comedones. A good correlation was obtained between the surface observations and the histological findings. The surface microscope provides a simple and convenient in vivo method for evaluating comedo formation.

Acne Vulgaris↗

Enhanced comedo formation in rabbit ear skin by squalene and oleic acid peroxides.

The comedogenicity of UVA-irradiated and non-irradiated substances (squalene, oleic acid, tetradecane, isopropyl myristate, squalane and liquid paraffin) was evaluated by surface microscopy and histological examination after treating the ventral skin of rabbit ears with these substances. The lipid peroxide levels of these substances were also measured. Squalene itself was scarcely comedogenic but squalene peroxides were highly comedogenic. Both oleic acid and its peroxides were able to induce fairly large comedones and there was a good correlation between the lipid peroxide levels and the size of the comedones. The specimens biopsied from these comedones showed marked hyperplasia and hyperkeratosis of the epithelium in the follicular infundibulum and marked proliferation of the sebaceous glands. Although free fatty acids might play a role in the pathogenesis of acne, it is proposed that squalene and free fatty acids in sebum may be less comedogenic than their peroxides.

Acne Vulgaris↗

In vitro differentiation of leukemic progenitor cells in various types of acute nonlymphocytic leukemia.

The effects of colony-stimulating factors on differentiation of leukemic progenitor cells were investigated in various types of acute nonlymphocytic leukemia. Two different sources of colony-stimulating factors were used in this study: human placental conditioned medium; and phytohemagglutin-stimulated leukocyte-conditioned medium. At the end of culture, colony types were determined by dual esterase staining in permanent preparations. The majority of the colonies formed in acute myeloblastic and acute promyelocytic leukemias were neutrophilic even when stimulated by phytohemagglutinin-stimulated leukocyte-conditioned medium, which contains a potent stimulator of macrophage colony growth from normal marrow cells. On the other hand, both neutrophilic and monocytic colonies were formed in acute myelomonocytic leukemia (AMMoL). The proportions of these two types of colonies were variable, depending on the nature of added colony-stimulating factor and its concentration. These findings suggest that the leukemic progenitors in acute myeloblastic and acute promyelocytic leukemias have a tendency to differentiate mainly into a neutrophilic lineage in vitro and that the leukemic progenitors in AMMoL differentiate into both neutrophilic and monocytic lineages in vitro, in two cases of esterase-negative AMMoL, both neutrophilic and monocytic colonies were detected as in the other well-defined cases of AMMoL. This study seems to be of value in understanding the nature of leukemic progenitor cells and also shows that morphological analysis of leukemic colonies may be helpful in the classification of acute nonlymphocytic leukemia.

Cell Differentiation↗

Regulatory mechanism of granulopoiesis in the bone marrow of CSF-producing tumor-bearing nude mice.

The regulatory mechanism of differentiation of granulocyte and macrophage precursor cells (G/M CFU-C) in bone marrow and spleen obtained from nude mice bearing colony-stimulating factor (CSF) producing tumor (G-mice), which developed marked granulocytosis, was studied. In these mice, granulopoiesis is enhanced in the spleen, but suppressed in bone marrow. Coculture of G-mouse bone marrow cells with splenic cells of control nude mice (C-mice) and of G-mice resulted in 68% and 62%, respectively, more colonies than expected, while coculture of C-mouse bone marrow cells with these two sources of cell fractions resulted in only 2% and 11% more colonies. In the double-layer agar culture system, bone marrow and splenic cells of C- and G-mice produced a maximal number of colonies containing adequate amounts of human urinary CSF in the upper layer when C-mouse bone marrow cells were added to the lower layer, while these four sources of cells produced a moderate or minimal number of colonies when splenic cells of C- and G-mice or G-mouse bone marrow cells were added to the lower layer. Morphological examination of colonies formed in the upper layer revealed that addition of C-mouse bone marrow cells or irradiated G-mouse bone marrow cells to the lower layer resulted in a massive increment in the number of colonies with pure granulocytes and granulocyte and macrophage mixed (G + G/M) colonies formed by G-mouse bone marrow cells in the upper layer. However, the addition of irradiated C-mouse bone marrow cells or G-mouse bone marrow cells before irradiation to the lower layer did not change G + G/M colony formation by G-mouse bone marrow cells in the upper layer. We could reproduce these findings with conditioned media obtained from 3-day liquid cultures of these cell fractions. This suggests that a diffusible factor may be necessary for inhibition of G + G/M colony formation in G-mouse bone marrow cells. The fine mechanism of such inhibition remains to be clarified.

Animals↗

Radiation sensitivity of leukemic progenitor cells in acute nonlymphocytic leukemia.

The radiation sensitivity of leukemic progenitor cells in 12 cases of acute nonlymphocytic leukemia was compared with that of normal myeloid progenitor cells (colony-forming units in culture), using in vitro cloning techniques. The D0 value for normal colony-forming units in culture was almost constant (130 +/- 14 rads). On the other hand, marked patient-to-patient variations were observed in the radiosensitivity of leukemic progenitor cells; namely, the D0 values in the present cases ranged from 30 to 210 rads. These variations seemed to be partly due to different cell cycle status and partly due to the intrinsic nature of leukemic progenitor cells. Moreover, in six of seven clinically drug-sensitive cases, the leukemic progenitor cells were proved to be relatively radiosensitive. Similar to in vitro drug sensitivity tests, this test may serve to predict the clinical response to chemoradiotherapy.

Antineoplastic Agents↗

High serum colony-stimulating activity of leukocytopenic patients after intravenous infusions of human urinary colony-stimulating factor.

Eight adult patients suffering from leukocytopenia have been injected by droplet intravenous infusions with partially purified human urinary colony-stimulating factor (CSFHU), which stimulated human monocytes to produce colony-stimulating activity (CSA) in vitro. Three of eight patients were injected with low-dose CSFHU and five with high-dose CSFHU. The infusion of high-dose CSFHU led to a slightly earlier rise in absolute neutrophil counts and a higher CSA level in the serum, as compared to noninjected leukocytopenic patients. There was little toxicity associated with it. Human urinary colony-stimulating factor used in the clinical studies did not have any CSA in vitro in the presence or absence of the patients' sera. These data may suggest that the intravenous infusion of CSFHU increased the serum CSA level, probably through the stimulation of CSA-producing cells in vivo.

Clinical Trials as Topic↗

The effect of hydrocortisone on human granulopoiesis in vitro with cytochemical analysis of colonies.

In order to clarify the regulation of granulopoiesis by hydrocortisone in humans, we investigated the effect of glucocorticoids on the formation of granulocyte and/ or macrophage colonies. By means of the dual esterase staining techniques applied to whole mount preparations of agar culture dishes, we examined the granulocyte-macrophage colony type. It was revealed that hydrocortisone stimulated the formation of neutrophil-containing colonies and inhibited macrophage colony formation. There was a significant increase in neutrophil colonies when the cells were preincubated with hydrocortisone for only 24 h. Delayed addition of hydrocortisone to the cultures was less effective in increasing the proportion of neutrophil colonies than addition at the beginning of culture. Moreover, addition of hydrocortisone to T-lymphocyte- and phagocyte-depleted bone marrow cells also increased the number of neutrophil colonies and decreased macrophage colonies in the presence of CSF. These results suggest that hydrocortisone may affect granulocyte-macrophage precursors (CFUGM) in an early period of their differentiation.

Bone Marrow Cells↗

Morphological examinations of murine granulocyte/macrophage colonies grown in serum-free cultures.

Murine bone marrow granulocyte/macrophage progenitor cells proliferated to form colonies consisting of their progeny in serum-free agar cultures in the presence of colony-stimulating activity. The cloning efficiency for the serum-free cultures was 80% of that for control cultures containing 20% fetal calf serum. Examinations of the cellular compositions of individual colonies revealed that the number of pure macrophage colonies was indistinguishable in the two culture systems while that of pure granulocyte and granulocyte/macrophage mixed colonies was smaller in the serum-free cultures.

Animals↗

Binding of the human urinary colony-stimulating factor to sterile filtration membranes.

Marked loss of colony stimulating activity was noted when the highly purified human urinary colony stimulating factor (CSFHU-5) dissolved in 0.1 M Tris-HCl buffer (pH 7) was passed through ethylene oxide sterilized Millipore filters. The addition of 0.5 mg/ml polyethylene glycol (PEG) or 10 mg/ml bovine serum albumin (BSA) to the CSFHU solutions resulted in almost complete protection against the CSF loss. A less pure fraction (CSFHU-2) did not lose activity upon filtration. More than 90% of the 125I-CSFHU dissolved in 0.1 M Tris-HCl buffer (pH 7) bound to the ethylene oxide sterilized Millipore filters. The addition of PEG or BSA to the 125I-CSFHU solutions resulted in almost complete prevention of 125I-CSFHU binding to the membranes. These findings indicate that Millipore membranes can bind significant quantities of the highly purified CSFHU, and the addition of PEG to all buffer systems is a useful way to prevent the CSF loss throughout the purification.

Colony-Stimulating Factors↗

The granulopoietic effect of human urinary colony stimulating factor on normal and cyclophosphamide treated mice.

A practically endotoxin-free colony stimulating factor from human urine (CSFHU) was prepared and its granulopoietic effect on normal and cyclophosphamide treated mice was examined. When normal C57BL/6N mice were injected intraperitoneally with 2.5 X 10(6) units/kg of the CSFHU daily for a 5-day period, the numbers of progenitor cells (CFUC) in the femur and spleen were significantly increased. The CFUC in the femur and spleen reached a maximum at day 3 (270%) and day 5 (250%) after the initial injection, respectively. The increase in number of CFUC in the femur exhibited a dose-dependency with respect to the CSFHU and a significant increase was observed even at 4 X 10(5) U/kg (P less than 0.05). However, neither granulocytosis nor monocytosis occurred in normal C57BL/6N mice injected with the CSFHU. In cyclophosphamide induced leukopenic C3H/HeN mice, daily injections of the CSFHU at 2.5 X 10(6) U/kg for 5 days stimulated the restorative granulocyte production (P less than 0.05) as well as the CFUC recovery in both the femur and spleen. These findings suggested that the CSFHU might be involved in granulocyte production in vivo.

Animals↗

Phase I and early phase II studies on human urinary colony stimulating factor.

This report demonstrates the first trial for the clinical application of human urinary colony stimulating factor (CSFHU) which was highly purified and well characterized in our laboratory. In the Phase I study, 6 healthy volunteers were administered with 2.5 x 10(5) to 10(6) units of CSFHU intravenously. CSFHU did not show any severe side effects, although slight depression of maximum blood pressure was observed in the group injected with 10(6) units CSFHU and one volunteer who received 5 x 10(5) units CSFHU complained sweating and itching during the infusion. In the Phase II study, six cases suffering from leukocytopenia induced by anticancer drugs or irradiation were treated with 7 day intravenous CSFHU injections. Although recovery of leukocyte number was not observed in the group injected with 7 x 10(6) units CSFHU, complete or partial recovery of leukocyte and granulocyte number was observed in the group injected with 1.3 to 1.4 x 10(7) units CSFHU. Phase II study in a large scale is under way to evaluate further the effectiveness of CSFHU on leukocytopenic patients.

Adolescent↗

A new method for permanent preparations of hemopoietic cells cultured in methylcellulose medium.

To obtain permanent preparations for morphologic examination of hemopoietic cells cultured in methylcellulose medium, a new method designated as "the membrane filtration technique" has been devised. Permanent preparations of erythroid colonies, bursts and leukemic colonies, which have been grown mainly in methylcellulose medium, are illustrated in this paper. The stages of differentiation of cells within these colonies can be easily recognized by means of Wright-Giemsa staining.

Bone Marrow Cells↗

Restriction endonuclease sensitivity of DNA containing globin genes in different murine erythroleukemia cell lines.

The arrangement of the globin structural genes has been examined in murine erythroleukemia cells, strain DS19, and several related inducer-resistant variant cell lines. One fragment larger than 20 kilobases and six globin gene-containing fragments between 10 and 1.9 kilobases in size are detected in EcoRI-cleaved purified DNA prepared from strain DS19. By comparison, when isolated nuclei are digested with EcoRI, only two globin gene-containing fragments are detected, one greater than 20 kilobases and the other 1.9 kilobases. Of seven cell lines derived from DS19 and resistant to inducers, six had similar patterns to DS19 of globin gene-containing EcoRI-generated DNA fragments from nuclei and from purified DNA. One cell line, DR10, a DMSo-resistant cell line, lacks the 1.9 kilobase fragment after digestion of either nuclei or purified DNA. The 1.9 kilobase fragment hybridizes with alpha-globin cDNA but not with the beta-globin cDNA, suggesting either rearrangement or deletion of an alpha-globin gene-like fragment in DR10 DNA.

Animals↗