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Biomedical subjects

I Hayata

Publications and source records attributed to I Hayata.

At least 55 records · Page 3Linked to original sources

Progression and selection in heterogeneous tumor composed of androgen-responsive Shionogi carcinoma 115 and its autonomous subline (Chiba subline 2).

Shionogi Carcinoma 115 (SC 115) is an androgen-dependent mouse tumor, and Chiba subline 2 (CS 2) is its androgen-independent subline which differs from SC 115 in cell size, amount of androgen receptors, and karyotype. To shed light on the mechanism of clonal selection of androgen-independent tumors, mixed tumors with SC 115 and CS 2 were prepared, and growth of these tumors was examined in vivo and in vitro. When the mixed tumor was transplanted in mice, CS 2 showed a predominant growth over SC 115. In a culture of mixed tumor cells, however, CS 2 showed no selective growth advantage. The suppressive interaction which occurred in vivo was due neither to transferable substances, nor to some immunological factor(s). It may be, at least partially, attributable to necrosis formation in SC 115, which developed with an increase in the size of the tumor.

Androgens↗

Predominant use of a particular alpha-chain in suppressor T cell hybridomas specific for keyhole limpet hemocyanin.

We isolated and sequenced the rearranged genomic variable (V) and joining (J) gene segments of T cell receptor alpha-chain gene from two independent keyhole limpet hemocyanin (KLH)-specific suppressor T cell (Ts) hybridomas (BW5147 x C57BL/6 KLH-Ts). These nucleotide sequences were compared with those of germline DNA from kidney and also with cDNA of alpha-chain (VJ alpha 281) previously isolated from Ts hybridoma (34S-281) with KLH/H-2b Ts activity. The entire V alpha and J alpha sequences of all three Ts hybridomas were exactly identical and were encoded by the germline V alpha and J alpha gene segments without any mutations, except for 2-nucleotide deletions from both the 3' end of V alpha and 5' end of J alpha gene segments, respectively, and a 1-nucleotide (guanine) insertion in the junctional (N) region which was not encoded by the germline gene. Six additional KLH-Ts hybridomas, further analyzed, also possessed the same alpha-chain, indicating the preferential usage of the particular alpha-chain in these hybridomas. As chromosome analysis demonstrated a different pattern in each clone, these hybridomas appear to be independent. More surprisingly, 0.5-1.5% of the total functional T cell alpha-chain mRNA in the thymus and spleen of unprimed C57BL/6 mice was found to be of this particular alpha-chain. These results suggest that the repertoire of KLH-Ts is strictly limited.

Amino Acid Sequence↗

Effects of recombinant human granulocyte colony stimulating factor (rG-CSF) on murine myeloid leukemia: stimulation of proliferation of leukemic cells in vitro and inhibition of development of leukemia in vivo.

We have established an experimental murine myeloid leukemia model and investigated the effects of recombinant granulocyte colony stimulating factor (rG-CSF) on myeloid leukemia in vitro and in vivo. rG-CSF stimulated colony formation by the leukemic cells in semisolid agar medium, and exponential growth of the clonogenic cells in suspension medium. Thus, rG-CSF was able to stimulate both the differentiation and self-renewal processes of the leukemic stem cells in vitro. However, 14 consecutive daily injections of rG-CSF prolonged the mean survival time of the mice implanted with the leukemic cells. This effect of rG-CSF was accompanied by a delay in the emergence of the blast cells in peripheral blood and by a decreased blast population in the spleen, suggesting that development of leukemia was suppressed in the rG-CSF-treated-mice. The prolongation of the survival time by rG-CSF was more evident when rG-CSF was administered in therapeutic combination with cyclophosphamide. These results indicate that the effect of rG-CSF on the development of leukemia is not exactly predicted from in vitro experiments.

Animals↗

Radiosensitivity of late recurrences following radiotherapy of murine fibrosarcomas.

Radiosensitivity of late recurrent tumors which emerged after radiotherapy was investigated. Tumors observed were fibrosarcomas. Recurrences emerged in the irradiated area approximately 200 days after a 50% tumor control dose of radiation of 60Co gamma rays or mixed irradiation with fast neutrons and gamma rays. The recurrent and radiation-induced tumors were differentiated by karyotype analysis. Once transplanted into fresh mice, the recurrent tumors grew more slowly than the original tumor. Tumorigenicity of the late recurrences was lower than that of the original tumor. Radiosensitivity of the late recurrences, which was examined using methods to assess control, tumor growth delay, and colony forming assays, was significantly higher than that of the original tumor. D0 values of hypoxic tumor cells were significantly smaller in two of the three recurrences compared to the original tumor. Oxic cells, when irradiated in vitro, also showed smaller D0 values for the recurrent tumors than the original tumor. Hypoxic cell fractions were between 0 and 14% in the late recurrences and 10% in the original tumor. These results are consistent with the hypothesis that radiotherapy causes mutation of tumor cells which results in increased radiosensitivity of surviving tumor cells.

Animals↗

Myeloproliferative disorder due to abnormal production of hematopoietic stimulators.

A new kind of myeloproliferative disorder (L-8313) has been discovered. It was transplantable into syngeneic mice with spleen cells. The mice showed hepato-splenomegaly with a marked leukocytosis and anemia 3 weeks after transplantation of L-8313 cells. The number of GM-CFU and CFU-S per spleen increased to more than 40 times normal. The results of chromosomal and PGK analysis demonstrated that these increased stem cells were of host origin. Both the culture medium of the spleen cells and the serum from L-8313 bearing mice showed high levels of IL-3, BPA and CSF. Consequently, hematopoietic cells of the host mice underwent remarkable proliferation in response to these stimulating factors when L-8313 cells were transplanted. We also have been successful in establishing an in-vitro cell line and have maintained it for over one year. The phenotype of L-8313 cells was Thy 1.2 positive. Some L-8313 cells showed a positive acid phosphatase reaction but the cytochemical character of myeloid lineage was not observed. Therefore, L-8313 is considered to be a T-cell derived hematopoietic regulatory cell neoplasm with the ability to produce several hematopoietic stimulating factors.

Anemia↗

Androgen receptor, testosterone uptake and karyotype in androgen-dependent mouse tumor (SC 115) and its androgen-independent subline (CS 2).

Content of androgen receptor, retention of injected testosterone and karyotype of SC 115, androgen-dependent tumor, were compared with those of CS 2, an androgen-independent subline derived from SC 115. Although Bmax was less than that of SC 115, androgen receptor was present in the cytosol and the nuclear extract from CS 2. To examine the ability for androgen retention, a large amount of testosterone was injected into tumor-bearing mice, and the amount of androgen in the crude nuclear and postnuclear fractions of tumors was compared. In both fractions, retention of injected androgen was higher in the SC 115 than in the CS 2. Since most of the injected testosterone was not metabolized in the tissues and the injection of testosterone 5 alpha-reductase inhibitor showed no significant influence on the growth rate of the SC 115, intracellular active androgen was assumed to be testosterone in these tumor cells. As the CS 2 was tetraploid, the androgen independency of the CS 2 seems to be related to chromosomal changes.

Animals↗

Nature of leukemic stem cells in murine myelogenous leukemia.

We investigated the nature of myelogenous leukemic stem cells in mice. L-8057, a megakaryoblastic leukemia cell line used in this study, produces in vivo and in vitro colonies. By means of typical chromosomal aberrations in L-8057, one can conveniently detect the origin of the cells in each colony derived from a leukemic stem cell. Direct evidence of whether cells from each colony had leukemogenicity in recipient mice was successfully obtained by the colony transplantation assay. Both leukemic colony-forming unit-spleen (L-CFU-s) and leukemic colony-forming unit-culture (L-CFU-c) in L-8057 may have belonged to the same differentiating stage in the stem cells because of their similar radiosensitivity, although some parts of the L-CFU of L-8057 seemed to have lost their capability to regenerate L-CFU-s when the cells were plated in dishes. This leukemic stem cell preserves high self-renewal ability in vitro after 10 passages. In addition, in vitro colony formation by this leukemic cell during the above course of serial passages did not require any additional exogenous stimulators. The same sort of trials have been made on other types of leukemias. Leukemic stem cells showed remarkable variety in their response to stimulating factors and in their self-renewal activity, which suggests that they may have consisted of heterogeneous populations.

Animals↗

Increased radiosensitivity of a recurrent murine fibrosarcoma following radiotherapy.

The radiosensitivity of a recurrent tumor following local radiotherapy was investigated in order to determine whether or not the cell(s) surviving radiotherapy are radioresistant. A tumor which recurred in a C3Hf/HeMsNrs male mouse 200 days after local irradiation of a transplanted syngeneic fibrosarcoma was examined. The recurrent tumor showed the same biological properties, such as karyotype, histological features, and ability to produce colony stimulation factor, as the original tumor. On the other hand, the tumor control dose and the D0 value of the recurrent tumor were much smaller than those of the original tumor. Moreover, the recurrent tumor grew more slowly than the original tumor. It was concluded that initial radiotherapy might have changed the intrinsic radiosensitivity of the original tumor cells.

Animals↗

Acid phosphatase-producing androgen-independent subline of rat prostatic adenocarcinoma (Dunning R3327 tumor) in cell culture.

Establishment of a cell line derived from the androgen-independent subline of rat prostatic adenocarcinoma (Dunning R3327 tumor) is reported. Cells of this line produced acid phosphatase. When the cultured cells were transplanted to Copenhagen rats, solid tumors were formed. Histologically, the tumor consisted of spindle-shaped, large and bizarre polygonal cells; this feature was almost identical to that of the original tumor. Chromosomes were in the triploid range with seven frequently appearing marker chromosomes.

Acid Phosphatase↗

Isolation of mouse mammary tumor cells showing spontaneous regression.

The tumor cells, TMT-3, was isolated from TMT-2 tumor cells by way of repeated selections of large colonies in soft agar. The cells can grow either in mice or in suspension culture. TD50 of the ascites tumor cells was 1.5 +/- 1.0. Plating efficiencies in soft agar were 40-70% for cells of ascites tumors and 25-30% for cells of solid tumors. The cells showed 4 marker chromosomes common to the parent cells and 6 new marker chromosomes. They also shared MM-antigen, but its quantity was about half of the parent cells. The growth curves of the solid tumors were characterized by temporary decrease in tumor volume followed by regrowth or regression.

Animals↗

Reconfirmation of indirect induction of radiogenic lymphomas using thymectomized, irradiated B10 mice grafted with neonatal thymuses from Thy 1 congenic donors.

An experiment was conducted to reexamine earlier observations that lymphomas could develop from lymphocytes present in nonirradiated thymuses grafted into thymectomized, fractionally (170 R, 4 doses) irradiated mice by using B10. Thy 1 congenic donor-host combinations. The results indicated that: (a) 37 of 91 thymectomized, fractionally irradiated B10. Thy 1.2 mice which were grafted s.c. with 7-day-old thymuses from B10. Thy 1.1 donor mice had developed frank lymphomas between 90 and 270 days after thymus grafting; (b) 28 of 37 lymphomas developed in this group were typed individually with respect to Thy 1 alloantigens by the cytotoxicity assay using monoclonal anti-Thy 1.1 (T-11-D7) and anti-Thy 1.2 (F7D5) antibodies plus complement. It was shown that 21 thymic lymphomas (75%) had originated from lymphocytes of the nonirradiated thymus grafts and 5 tumors (17.9%) from cells of the irradiated hosts; 2 thymic lymphomas (7.1%) manifested no Thy 1 antigens; (c) lymphoma cells originated from both nonirradiated thymus grafts and irradiated hosts possessed chromosome abnormalities, which were mainly numerical changes of some chromosomes or polyploidizations.

Animals↗

Chromosomal aberrations observed in 52 mouse myeloid leukemias.

Chromosomes of 52 cases of mouse myeloid leukemia were examined. There were 5 myeloblastic leukemias, 22 granulocytic leukemias, 17 myelomonocytic leukemias, and 8 monocytic leukemias. Fifty cases were radiation induced and the other 2 were nonirradiated. Each case had leukemic cells with 1 to 10 marker chromosomes. Partially deleted No. 2 chromosomes appeared in 49 cases, including 2 nonirradiated cases. These deleted No. 2 chromosomes were varied in size, and they were classified into 7 types according to morphological features. There was no type-dependent difference in histological or cytological features among the 7 types. It was found that the chromosomal segment lying between Regions 2C and 2D was commonly missing from all of the deleted No. 2 chromosomes. In addition to such No. 2 chromosomes, an anomaly in chromosome 6 was observed in 16 cases, of which 12 cases were granulocytic leukemia. The abnormalities of chromosomes 3 and 9 were next most frequent, appearing in 14 cases each. Besides such structural anomalies, numerical changes involving the Y chromosome (33 cases), chromosome 6(6 cases), and chromosome 15 (4 cases) were also found. Characteristics of the karyotypes of the mouse myeloid leukemia in comparison with other leukemias were noted. The significance of the specific segments of the chromosomes which were commonly missing or trisomic in the karyotypes of neoplasias in mice, rats and humans was discussed. It was suggested that the genesis of myeloid leukemia was greatly influenced by the genetic information on chromosome 2 in mice.

Animals↗

Two new C3H mouse ascites tumor cell lines capable of proliferation in vivo and in suspension culture: morphological, karyological, kinetic and immunological properties.

The establishment of mouse tumor cell lines capable of proliferating in vivo and in suspension culture was undertaken. The MM-46 tumor line, initiated from primary mammary carcinoma arising in a C3H/He mouse, was maintained for over 100 generations in the peritoneal cavities of syngenic mice. At the 50th generation of the tumor suspension, cultures were initiated. The established cell lines, designated TMT-1 and TMT-2, were characterized in vitro and in vivo. The morphological finding indicated that THT-1 and TMT-2 cells from mice closely resembled the MM-46 tumor cells. The oncogenic potential of the cultured cells was comparable to that of the original ascites tumor. The population doubling time of TMT-1 and TMT-2 cell lines was about 12 hr in mice, whereas the population doubling time of both cell lines lengthened to 20 hr in suspension culture. The increase in doubling time in culture was due to the prolongation of the G1 period. The cell lines, TMT-1 and TMT-2, whether fropm culture or mice, possessed colony forming ability in in soft agar medium. The colony forming ability of the cells decreased gradually through in vivo passages but it recovered upon recultivation of the cells from mouse to culture. Chromosome analysis and cytotoxicity test by anti-MM antiserum indicated that TMT-1 and TMT-2 cell lines closely resembled and had been derived from MM-46 tumor line. Therefore, it is possible to assay cell survival in vitro after in vivo experiments on these cells.

Animals↗

Effect of serial passage in female nude athymic mice on androgen dependency of Shionogi carcinoma 115.

When Shionogi carcinoma 115 (SC115, an undifferentiated medullary carcinoma showing a compact cell pattern and containing androgen receptor) was transplanted into male and female DS mice, it grew only in males. In contrast with this strict androgen dependency in DS hosts, SC115 tumors grew in male and female nude athymic (BALB/c-nu/nu) mice. Although most of the tumors developing in female nude mice were composed of spindle-shaped cells and did not contain androgen receptor, about 5% of tumors in female nude mice retained morphological and biochemical characteristics of the original SC115 tumor. Such a tumor was serially transplanted in female nude mice. Although no significant changes were detectable in histological and chromosomal features and in androgen receptor values, the growth speed in female nude mice accelerated and became comparable to the growth speed of the original SC115 tumor in intact male DS mice. However, this subline of SC115 tumor showed a marked androgen dependency when reinoculated into male and female DS mice after 14 passages in female mice nude mice in spite of its relative androgen independency in nude hosts. Therefore, the present results seem to suggest that the immunological status of the hosts may affect the hormone dependency of tumors.

Androgens↗

Partial deletion of chromosome No. 2 in myelocytic leukemias of irradiated C3H/He and RFM mice.

Chromosomes of mouse myelocytic leukemias that developed in 7 irradiated mice, 3 C3H/He males, 1 RFM female, and 3 RFM males were analyzed with chromosome-banding techniques. Chromosomes No. 2 were partially deleted in 6 of the 7 mice. Although the deleted No. 2 chromosomes varied in size in the 6 mice, one common characteristic was noted in all these deletions: A segment lying between a certain band in the region 2C and a band in the region 2E, including the whole region 2D, was missing. Another consistent abnormality was an addition or a loss of the Y-chromosomes in the fraction of cells in all 6 males. In addition to these consistent abnormalities, various chromosomes had structural abnormalities. The RFM female, which did not have the abnormal No. 2 chromosome, had abnormalities in chromosomes No. 3, 4, 11, 12 and 15 and in the X-chromosome. Of the 20 chromosome pairs, only such chromosomes as No. 1, 5, 8, 14, 17, and 19 and the Y-chromosome did not have the structural abnormalities. The possible role of the partial deletion of the No. 2 chromosome was considered in relation to the development of mouse myeloid leukemias.

Animals↗