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Biomedical subjects

T Suda

Publications and source records attributed to T Suda.

At least 685 records · Page 38Linked to original sources

Characterization of corticotropin-releasing hormone binding protein in human plasma by chemical cross-linking and its binding during pregnancy.

A human plasma CRH-binding protein (CRH-BP) was identified and characterized by chemical cross-linking of 125I-Tyr-hCRH to human plasma using disuccinimidyl suberate. The apparent mol wt of the cross-linked complex determined by sodium dodecyl sulfate-polyacrylamide gel electrophoresis followed by autoradiography was approximately 43,000. The mol wt was slightly lower in the nonreduced state, suggesting the presence of intramolecular disulfide bonds. Subtracting the mol wt of 125I-Tyr-CRH, the BP appeared to have a mol wt of approximately 38,000. Binding was specific since the appearance of the 43,000 dalton band was not affected by unlabeled ACTH, vasopressin, serum albumin, or gamma-globulin, but was inhibited by unlabeled hCRH dose dependently. Pretreatment of plasma with 0.1 mol/L HCl, 0.01 mol/L NaOH, 10 mmol/L dithiothreitol, or trypsin before cross-linking abolished its ability to bind 125I-Tyr-hCRH. Rat, rabbit, or goat plasma or human cerebrospinal fluid did not bind 125I-Tyr-CRH. It is unlikely that CRH-BP is a CRH receptor, because the estimated mol wt of the CRH-BP is smaller than the reported size of CRH receptors, and the CRH-BP did not bind to ovine CRH. The binding of 125I-Tyr-CRH to CRH-BP decreased in the third trimester of pregnancy, when plasma CRH levels were markedly elevated. However, after dissociating endogenous CRH from the CRH-BP, the binding was almost the same as in nonpregnant subjects. In addition, CRH-BP inhibited CRH-induced ACTH secretion from cultured rat anterior pituitary cells. We conclude that most of the increased plasma CRH found in pregnant women is bound to CRH-BP, and so is inactive, therefore plasma ACTH levels do not increase to above the normal range.

Adrenocorticotropic Hormone↗

Studies on pituitary-gonadal function in patients with Cushing's syndrome.

Basal levels of sex steroids, and the responses of LH and FSH to LH-RH were studied in twenty-five female patients with Cushing's syndrome (17 Cushing's disease and 8 adrenocortical adenoma). Only two patients had a regular menstrual cycle. Amenorrhea or oligomenorrhea had been of long duration in the other cases except for three postmenopausal patients. In patients with Cushing's disease, basal estradiol was low or below normal in 86%. Progesterone was normal in 83%, but testosterone was high in half of the cases. The response of LH to LH-RH in patients with Cushing's disease was normal in 35%, low in 35% and high in 29% of the cases. FSH response to LH-RH was normal in 23.5%, low in 23.5% and high in 53%. In patients with adrenocortical adenoma, basal of estradiol was low or below normal, but progesterone and testosterone were normal in all cases. The response of LH and FSH to LH-RH in all patients with adrenocortical adenoma was higher than normal. In three postmenopausal women, a higher response of LH and FSH to LH-RH was seen in two cases and suppressed in one case. These data suggest that the main site of suppression of the gonadal axis in patients with adrenocortical adenoma is the gonad rather than the pituitary gland or hypothalamus, though the mechanism of hypogonadism in patients with Cushing's disease is heterogeneous.

Adolescent↗

The changes in plasma cortisol and urinary free cortisol by an overnight dexamethasone suppression test in patients with Cushing's disease.

We studied the suppressibility of cortisol secretion in 15 patients with Cushing's disease by measuring morning plasma cortisol level as well as the 24-hour urinary free corisol (UFC) excretion following single doses of increasing amounts of dexamethasone (ranging from 0.5 to 32 mg) given at 11 p.m. The mean plasma cortisol level in patients with Cushing's disease was twice as high as in normal subjects, whereas the mean UFC in these patients was 6 times as high. Plasma cortisol in seven patients were suppressed by less than 4 mg of dexamethasone (in 2 cases, less than 0.5 mg; in 3 cases, less than 2 mg; and in 2 cases less than 4 mg). In these cases, basal plasma cortisol and UFC were less than 25 micrograms/dl and 350 micrograms/day, respectively. Among the other eight patients, plasma cortisol was partially suppressed in 5 cases and not suppressed in 3 cases by high doses of dexamethasone (16-32 mg). In these cases the basal plasma cortisol and UFC were more than 25 micrograms/dl and 350 micrograms/day, respectively. There was a significant correlation between the basal plasma cortisol and UFC (r = 0.687, p less than 0.01). These data suggest that the suppression by increasing amounts of dexamethasone in most cases with Cushing's disease was related to the severity of hypercortisolism.

Cushing Syndrome↗

Radiation injury in a patient with unusually high sensitivity to radiation.

Radiation therapy is usually given with the assumption that interindividual variations in radiosensitivity are small, except for some patients with hereditary diseases associated with increased sensitivity. Recently, we observed radiation induced pericarditis in a breast carcinoma patient, in whom clinical signs, blood counts and chromosome analysis after in vitro irradiation of blood suggested a state of unusually high radiosensitivity. No evidence of constitutional chromosome abnormality was found in karyotypic analysis with the G-banding technique.

Breast Neoplasms↗

Bipotential murine hemopoietic cell line (NFS-60) that is responsive to IL-3, GM-CSF, G-CSF, and erythropoietin.

NFS-60 cells were previously obtained from leukemia cells that were infected with the Cas-Br-M murine leukemia virus in vivo. We examined the proliferation and differentiation capacity of NFS-60 cells in the presence of native and recombinant (r) interleukin 3 (IL-3), recombinant granulocyte colony-stimulating factor (rG-CSF), recombinant granulocyte-macrophage colony-stimulating factor (rGM-CSF), and r-erythropoietin (Ep) using methylcellulose culture methods. This cell line was able to form colonies in response to each hemopoietic factor, but colony formation was rarely seen in their absence. Some populations of NFS-60 cells could differentiate into neutrophils and macrophages in the presence of IL-3 and GM-CSF. Moreover, in the presence of Ep, this cell line formed well-hemoglobinized colonies as well as nonerythroid colonies. In the presence of G-CSF, NFS-60 cells remained in the promyelocytic state. Electron microscopic studies confirmed these morphologies. A single-cell transfer experiment demonstrated that neutrophils, macrophages, and erythroblasts were derived from a single cell. It is concluded that the NFS-60 cell line is a factor-dependent, bipotential hemopoietic cell line.

Animals↗

Realization of spontaneous healing function by carnosine.

Granulation is a tissue response with high potential of immunity and tissue repair. Carnosine was found to be a physiological stimulator that promotes granulation, and as carnosine and beta-alanine were shown to not only stimulate granulation but also accelerate wound healing, modulate immunoresponse, and non-specifically increase immunocompetence, therapeutic and prophylactic enhancement of spontaneous healing function of the body was suggested to be possible. In this report, revision of conventional medical concepts necessitated by recognition of homeostasis as a concrete manipulable entity, resolution of side effects of anti-tumor agents by homeostasis-stimulators, the possibility of direct treatment of cancer with homeostasis-stimulators, experimental reproduction of spontaneous regression, and a tripartite theory of carcinogenesis, including homeostasis as a key factor in the carcinogenic mechanism, are discussed as related to carnosine as a drug of the future.

Animals↗

Karyotype evolution and multilineage involvement of Philadelphia chromosome-positive clones in blastic transformation of two patients with chronic myelocytic leukemia.

Simultaneous analysis of the cell morphology and karyotypes on single colonies was carried out in two patients with Philadelphia chromosome (Ph1)-positive chronic myelocytic leukemia in blastic transformation in order to clarify the origin of leukemic cells involved. Patient no. 1 was in a typical myeloblastic transformation and patient no. 2 in "basophilic transformation." Both patients exhibited karyotype evolution in blastic phase (BP), so that we could differentiate BP clones with additional chromosomal abnormalities from chronic phase (CP) clones with only Ph1 among single colonies. The number of single colonies yielding two or more analyzable metaphases was 18 in patient no. 1, and 19 in patient no. 2. Among these colonies, only three in patient no. 1 and none in patient no. 2 were from CP clones and 15 in patient no. 1 and 19 in patient no. 2 were from BP clones. Morphological examination revealed that not only blasts but also mature neutrophils, eosinophils, basophils, macrophages, and erythroblasts were derived from BP clones. These results suggested that (1) BP clones developed at the pluripotent stem cell level, (2) additional chromosomal abnormalities were not restricted to occur in a specific cell line representative in BP; and (3) BP clones, if not all, may retain capacity for maturation and differentiation.

Blast Crisis↗

Effect of interleukin 6 (IL-6) on the differentiation and proliferation of murine and human hemopoietic progenitors.

We examined the effect of human recombinant (r) interleukin 6 (IL-6) on the differentiation of murine and human hemopoietic progenitors. Human IL-6 supported colony formation by murine bone marrow cells. These colonies consisted of neutrophils and macrophages. Recombinant IL-6 was able to support multilineage colony formation by spleen cells from 5-fluorouracil (5-FU)-treated mice. These colonies consisted of greater than 1 x 10(4) cells. Differential counts revealed large colonies exhibiting different combinations of cell lineages: neutrophils, macrophages, eosinophils, mast cells, and megakaryocytes. However, when blast cell colonies supported by interleukin 3 were replated into secondary dishes containing IL-6, they could differentiate into only neutrophils and macrophages. Single cells transferred from blast cell colonies formed only neutrophil/macrophage colonies. These results indicate that IL-6 had a direct effect on the growth and development of murine granulocyte-macrophage progenitors at a late stage and a significant effect on multipotential hemopoietic precursors that might be indirect through other cells. By contrast, human rIL-6 did not support colony formation by human bone marrow mononuclear cells. IL-6 may not show an independent activity for human hemopoiesis of myeloid lineage. However, the synergistic activity of IL-6 remains to be clarified.

Animals↗

Induction of tumor-specific in vivo protective immunity by immunization with tumor antigen-pulsed antigen-presenting cells.

The present study investigates the role of antigen-presenting cells (APC) in inducing tumor-specific in vivo protective immunity. Thy-1+ cell-depleted, Mac-1+ cell-enriched fraction of normal BALB/c spleen cells were used as a source of APC. These APC were cultured in vitro with the membrane fraction isolated from Rous sarcoma virus-induced CSA1M fibrosarcoma derived from BALB/c strain. The administration of such APC into naive BALB/c mice generated the capacity of these animals to reject the subsequently challenged viable CSA1M tumor cells. The induction of anti-CSA1M in vivo protective immunity required three consecutive immunizations with more than 10(5) APC which had been pulsed in vitro with 200 micrograms protein component of CSA1M membrane fraction. This immunity was tumor-specific, since the inoculation of CSA1M or Meth A fibrosarcoma membrane component-pulsed APC resulted in the selective immunity against the challenge with homologous types of tumor cells. The CSA1M-specific in vivo protective immunity was also induced by injecting APC pulsed with solubilized CSA1M membrane components. Moreover, it was demonstrated that the efficiency for inducing anti-CSA1M immunity was much higher in the utilization of tumor antigen-pulsed APC than in the immunization with tumor antigens emulsified in complete Freund's adjuvant. These results indicate the crucial role of APC in generating tumor rejection immunity in vivo, and this model presents a novel approach to induce tumor-specific immunity without utilizing tumor cells themselves.

Animals↗

Synthetic analogues of vitamin D3 with an oxygen atom in the side chain skeleton. A trial of the development of vitamin D compounds which exhibit potent differentiation-inducing activity without inducing hypercalcemia.

Four analogues of vitamin D3 with an oxygen atom in the side chain skeleton were synthesized to determine whether their differentiation-inducing activity could be separated structurally from their activity to induce hypercalcemia. The order of the in vitro potency to reduce nitroblue tetrazolium in human myeloid leukemia cells (HL-60) was 22-oxa-1 alpha, 25-(OH)2D3 greater than 1 alpha, 25-(OH)2D3 greater than 20-oxa-1 alpha, 25-(OH)2D3 not equal to 22-oxa-1 alpha-(OH)D3 greater than 1 alpha-(OH)D3 greater than 20-oxa-1 alpha-(OH)D3. 22-Oxa-1 alpha, 25-(OH)2D3 was also about 10-times more potent than 1 alpha, 25-(OH)2D3 in suppressing proliferation and inducing differentiation of mouse myelomonocytic leukemia cells (WEHI-3), but the former was much weaker than the latter in inducing the release of 45Ca from prelabeled fetal mouse calvaria. These results suggest that the differentiation-inducing activity of vitamin D compounds can be separated structurally from their activity to induce hypercalcemia.

Animals↗

Survival of highly proliferative colony forming cells after treatment of bone marrow cells with 4-hydroperoxycyclophosphamide.

We investigated the in vitro effects of 4-hydroperoxycyclophosphamide (4-HC) on human hemopoietic stem cells. Marrow cells were exposed to 4-HC and then assayed for mixed (CFU-GEMM), erythroid (BFU-E), megakaryocyte (CFU-M), and granulocyte-macrophage (CFU-GM) colony forming cells. We found that highly proliferative colony forming cells, especially CFU-GEMM and BFU-E, were relatively spared by 4-HC treatment. One third of the surviving progenitors formed large colonies, some of which contained more than 50,000 cells. By sequential examination of the formation of these large colonies, we found immature colonies consisting of blasts at the early stage of culture. The morphology of these "blast cell colonies" in situ was arbitrarily classified into four types. Among them were the blast cell colonies consisting of the individual cells that were dispersed and had a few granules within the cytoplasm (type A); these cells finally formed very large colonies on day 22 of culture. Approximately 70% of the single cells derived from type A blast cell colonies produced secondary colonies consisting of erythroblasts, macrophages, eosinophils, and/or basophils. These results show that the blast cells in type A colonies have a highly proliferative capacity. The availability of a highly enriched population of primitive hemopoietic progenitors will provide us with a unique opportunity to study the interaction between a single stem cell and purified hemopoietic factors.

Bone Marrow Cells↗