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Biomedical subjects

K Takatsuki

Publications and source records attributed to K Takatsuki.

At least 109 records · Page 6Linked to original sources

Soluble c-kit molecule in serum from healthy individuals and patients with haemopoietic disorders.

The proto-oncogene, c-kit, encodes a transmembrane tyrosine kinase receptor (KIT) and plays an important role in haemopoiesis. We have identified a 95 kD soluble form of KIT (S-KIT) in culture supernatant of human megakaryoblastic cell line, CMK. To study the physiological significance of S-KIT, we have established a sensitive sandwich ELISA system. Serum samples from healthy individuals contained detectable amounts of S-KIT. Next, we determined a total of 220 samples from 134 patients with haemopoietic disorders. A considerable number of patients with acute myeloid leukaemia (AML), especially those with more immature phenotypes (M0, M1 or M2) had elevated levels of serum S-KIT. Those levels decreased to the normal range after effective chemotherapy. In chronic myeloid leukaemia, patients with myeloid blastic crisis showed markedly elevated levels of serum S-KIT. In contrast, S-KIT levels decreased in cases with either acute or chronic lymphoid leukaemia. There was a tendency for patients with severe aplastic anaemia to show decreased levels, but it was not significant. In myelodysplastic syndrome, S-KIT levels appeared to vary by subsets, with higher concentration in more advanced forms of the disease. Although the functional role of S-KIT is not yet elucidated, these results suggest that the serum S-KIT levels may reflect the pathological states of various haematological disorders.

Acute Disease↗

Neutralizing monoclonal antibodies against human immunodeficiency virus type 2 gp120.

Monoclonal antibodies (MAbs) were obtained by immunizing mice with synthetic peptides corresponding to the third variable (V3) or the third conserved (C3) domain of the external envelope protein (gp120) of human immunodeficiency virus type 2 (HIV-2ROD). One MAb, designated B2C, which was raised against V3 peptide NKI26, bound to the surface of HIV-2-infected cells but not to their uninfected counterparts. B2C was capable of neutralizing cell-free and cell-associated virus infection in an isolate-specific fashion. The antibody-binding epitope was mapped to a 6-amino-acid peptide in the V3 variable domain which had the core sequence His-Tyr-Gln. Two MAbs, 2H1B and 2F19C, which were raised against the C3 peptide TND27 reacted with gp120 of HIV-2ROD in a Western immunoblot assay. The C3 epitopes recognized by these two MAbs appeared inaccessible because of their poor reactivity in a surface immunofluorescence assay. Although partial inhibition of syncytium formation was observed in the presence of the anti-C3 MAbs, their neutralizing activity appeared weak. Finally, the effects of these MAbs against CD4-gp120 binding were assessed. Partial inhibition of CD4-gp120 binding was observed in the presence of high concentrations of B2C. On the other hand, no inhibition of CD4-gp120 binding was observed in the presence of anti-C3 MAbs. Since complete neutralization could be achieved at a concentration corresponding to that of partial binding inhibition by B2C, some different mechanisms may be involved in the B2C-mediated neutralization. These results, taken together, indicated that analogous to the function of the V3 region of HIV-1, the V3 region of HIV-2ROD contained at least a type-specific fusion-inhibiting neutralizing epitope. In this respect, the V3 sequence of HIV-2 may be a useful target in an animal model for HIV vaccine development.

Amino Acid Sequence↗

Smoldering gamma delta T-cell granular lymphocytic leukemia associated with pure red cell aplasia.

We present a case of granular lymphocytic leukemia (GLL) associated with pure red cell aplasia (PRCA). Twenty-seven percent of the peripheral blood mononuclear cells (PBMC) were positive for TCR delta 1, but not for delta TCS1 (V delta 2), and a rearrangement of the TCR chain (J delta 1) gene was detected. The PBMC and serum from the patient slightly suppressed CFU-E but not BFU-E colony formation in vitro. These findings suggest that monoclonal proliferation of TCR gamma delta-positive granular lymphocytes (GL) can be associated with PRCA even in a patient having a small proportion of leukemia GL, which we propose to designate as 'smoldering GLL'.

Colony-Forming Units Assay↗

Expression of cryptantigen Th on paroxysmal nocturnal hemoglobinuria erythrocytes in association with a hemolytic exacerbation.

Paroxysmal nocturnal hemoglobinuria (PNH) erythrocytes lack complement regulatory membrane proteins and are susceptible to complement. Although the critical role of complement in intravascular hemolysis in PNH is accepted, the precise mechanism of complement activation in vivo is unknown. Accordingly, in a PNH patient who was suffering from a hemolytic precipitation soon after a common cold-like upper respiratory infection, we analyzed the erythrocytes with lectins and by flow cytometry to detect membrane alteration that lead to complement activation. The lectin reactivity of erythrocytes showed the expression of cryptantigen Th. The patient serum at the time of the hemolysis induced the expression of Th on erythrocytes from PNH patients and from healthy volunteers in vitro, whereas neither the patient serum after recovery from the hemolysis nor blood type-matched control serum from healthy donor showed this activity. Moreover, autologous serum selectively hemolyzed Th+ PNH erythrocytes, but not Th- PNH erythrocytes, or Th+ control erythrocytes. Hemolysis was not observed either in complement-inactivated serum or in blood type-matched cord blood serum, which lacks natural antibodies to cryptantigens. These findings indicate that the immunoreaction of infection-induced Th with natural antibody on PNH erythrocytes is a trigger of the complement activation, leading to intravascular hemolysis.

Adolescent↗

Adult T-cell leukemia.

Adult T-cell leukemia (ATL) was first reported in Japan, where it has a high incidence in the southwestern region. The retrovirus, human T-lymphotropic virus type I (HTLV-I), is the causative agent of ATL. In ATL-endemic areas, the rate of HTLV-I carriers is high. A definite diagnosis of ATL is based on the presence of HTLV-I proviral DNA in the tumor cell DNA. ATL cells originate from the CD4 subset of peripheral T cells. ATL shows diverse clinical features but can be divided into four subtypes:acute, chronic, smoldering, and lymphoma type. Chemotherapy is not effective; the acute and lymphoma types have a poor prognosis. Familial occurrence of ATL is common. HTLV-I infection is caused by transmission of live infected lymphocytes from mother to child, from man to woman, or by blood transfusion. Infection with HTLV-I can lead to other diseases, including HTLV-I-associated myelopathy/tropical spastic paraparesis and HTLV-I uveitis.

Adult↗

Expression of AML1 and ETO Transcripts in hematopoietic cells.

Recently, two genes, AML1 and ETO have been isolated from the chromosomal breakpoint of t(8;21). In this study, we isolated and identified fusion transcripts from a leukemic cell line carrying t(8;21). We demonstrated by PCR analysis that these transcripts are consistently expressed in fresh leukemic cells with t(8;21). On the other hand, the wild type of ETO is expressed in several hematopoietic cells from different lineage, while the expression of AML1 was present in all hematopoietic cells investigated. These widespread expression suggests these molecules play an essential role in hematopoiesis.

Base Sequence↗

[A possible mechanism of interstitial pneumonia during interferon therapy with sho-saiko-to].

Interstitial pneumonia has been reported to be a side effect of treatment with interferon, and Sho-saiko-to (Xiao-Chai-Hu-Tang) may enhance this side effect. It is well known that activated neutrophils are important mediators of pulmonary fibrosis, so we studied the effects of interferon and Sho-saiko-to on neutrophil activation. Homogenized lung myeloperoxidase (MPO) activity was assayed after intraperitoneal injection of interferon with or without pretreatment with Sho-saiko-to. Although Sho-saiko-to alone did not change the lung MPO content, MPO in the lung was significantly increased by interferon administration. The increase was enhanced further by pretreatment with Sho-saiko-to. When the accumulated neutrophils are activated by some cytokines, such as TNF alpha or IL-1 beta from monocytes/macrophages, they may damage lung tissue. We therefore studied the effects of Sho-saiko-to and interferon on TNF alpha production in freshly isolated human monocytes. Sho-saiko-to increased the production of TNF alpha, but interferon did not. In addition, Sho-saiko-to significantly increased the production of TNF alpha by monocytes stimulated by lipopolysaccharide. Taken together, these data indicate that interferon causes neutrophils to accumulate in the lung. Sho-saiko-to alone may not injure lung tissue, but it increases the effect of interferon. When stimulated by some antigen, Sho-saiko-to may overstimulate the neutrophils. Granulocytes elastase and oxygen radicals released from activated neutrophils may damage lung tissue. The fibroblasts that repair the damaged tissue may increase the risk of pulmonary fibrosis.

Animals↗

[Inhibitory effects of menogaril to the proliferation of HTLV-I infected T-cell lines and fresh tumor cells from adult T-cell leukemia patients].

Anti-cancer effect of anthracyclines are well established. In vitro inhibitory effects of a new anthracyclin-derivative drug, menogaril (TUT-7) which is developed for oral administration, on three human T-cell leukemia virus type-I (HTLV-I) infected T-cell lines, a HTLV-I non-infected T cell line, and fresh tumor cells from four adult T-cell leukemia (ATL) cases are evaluated and compared to those of doxorubicin. The inhibitory effects of TUT-7 is almost as much as those of doxorubicin. Both TUT-7 and doxorubicin induced apoptosis to a HTLV-I infected cell line and inhibited proliferation of fresh tumor cells from ATL of chronic, acute and lymphoma type in a dose dependent manner. We have already reported that skin eruption of ATL patient improved by oral administration of TUT-7. This new anthracyclin-derivative would be useful in treating ATL patients even in out-patients clinic keeping a good quality of life.

Apoptosis↗

High degree of myeloid differentiation and granulocytosis is associated with t(8;21) smoldering leukemia.

The t(8;21) is a frequent chromosome abnormality in acute myeloid leukemia (AML), particularly associated with M2 of the French-American-British (FAB) classification, but also found in a few patients with myelodysplastic syndrome (MDS). The two genes involved in the t(8;21) have been recently isolated and the cDNA of the AML1/ETO fusion gene identified. We have investigated a series of AML and MDS patients by a reverse transcriptase-polymerase chain reaction (RT-PCR) and analyzed the clinical and laboratory features of leukemia with t(8;21). The t(8;21) was only found in a subset of M2, which had the clinical and hematological features distinct from those M2 without t(8;21). M2 with t(8;21) was associated with a significantly higher myeloid differentiation and with a good response to chemotherapy. Moreover, among the patients with refractory anemia with excess of blasts in transformation (RAEB-T) the t(8;21) was also significantly associated with a higher myeloid differentiation and a good response to chemotherapy. M2 patients with t(8;21) could be distinguished on a number of hematological parameters, eg white blood cell count and percentage of bone marrow myeloblasts and promyelocytes, from RAEB-T carrying the t(8;21). Based on these findings we suggest that leukemia patients carrying t(8;21) can be grouped into two types; overt acute myeloid leukemia (M2) and smoldering or slowly evolving myeloid leukemia.

Adolescent↗

ATL cells recognize self class II HLA antigens: implication to leukemogenesis.

Adult T cell leukemia (ATL) cells show the decreased expression of T cell receptor (TCR)/CD3 complex on their surfaces in vivo. It is well known that excess amounts of antigen modulate TCR/CD3 complex on antigen-specific T lymphocytes. We hypothesized that antigen receptor of ATL cells was down-regulated with some antigenic stimulation in vivo, which might play an important role in leukemogenesis. In order to test this possibility, we studied whether the fresh ATL cells from three cases would respond to autologous and allogeneic lymphoid cell lines. In two of three cases, ATL cells could proliferate in the presence of autologous cell lines. In one case, this proliferation could be completely inhibited by anti-CD3 and anti-human leukocyte antigen (HLA)-DQ monoclonal antibodies, indicating that ATL cells recognized self HLA-DQ. In another case, the proliferation was suppressed by anti-CD3 and HLA-DR antibodies. These findings showed that ATL cells of some cases were derived from autoreactive T lymphocytes and such stimulation via TCR/CD3 complex plays an important role in the leukemogenesis of ATL in vivo.

Autoantigens↗

p53 gene mutation and loss of heterozygosity are associated with increased risk of disease progression in adult T cell leukemia.

Although the prototype of adult T cell leukemia (ATL) is an aggressive T cell neoplasm, ATL manifests four major clinical subtypes, acute, lymphoma, chronic, and smoldering. We studied the relationship between p53 gene alteration and clinical features in 34 patients with ATL, 14 acute type, 15 chronic type, and five crisis type transformed from chronic type. Using a polymerase chain reaction/single strand conformation polymorphism (PCR/SSCP) assay, followed by nucleotide sequencing, we detected mutations of the p53 gene in six of the 14 acute type patients, two of the five crisis type, and one of the 15 chronic type patients. Gene dosage studies, using PCR amplification and Southern blotting, showed loss of heterozygosity (LOH) of the p53 gene in four of the 14 acute type patients, two of the five crisis type, and one of 14 chronic type patients examined. These observations indicated that the frequency of p53 gene alterations in the acute and crisis types of ATL was markedly higher than that in chronic type, suggesting that p53 gene alteration plays a role in the disease progression of ATL.

Adult↗

[Clinical usefulness of polyamino acid particle agglutination test for detection of anti-HTLV-I antibody].

A new artificial carrier particle agglutination test using polyamino acid (polyamino PA) was developed for anti HTLV-I assay. We carried out the comparative study on anti-HTLV-I among polyamino PA, gelatin PA, EIA and WB methods. All of 76 ATL, 20 HAM/TSP, 53 patients with uveitis and 50 HTLV-I carriers were seropositive and 50 HTLV-I non carriers were seronegative with four methods. Eighteen of 503 patients include autoimmune diseases showed seropositive by polyamino PA and gelatin PA. One of 19 seropositives by EIA was false positive. All of 25 sera showed non-specific reaction by the gelatin PA were clearly negative by the polyamino PA. This is due to the fact that the polyamino acid particle has a greater specific gravity as carrier. The final judgement was got within 45 minutes. It was earlier more 30 minutes than the gelatin PA. The polyamino PA is a simple, rapid, sensitive and specific method. Therefore, it is useful for mass screening and clinical diagnosis.

Agglutination Tests↗

Recombinant human soluble thrombomodulin reduces endotoxin-induced pulmonary vascular injury via protein C activation in rats.

Adult respiratory distress syndrome (ARDS) is a serious complication of disseminated intravascular coagulation (DIC) or multiple organ failure. To determine whether recombinant soluble human thrombomodulin (rsTM) may be useful in treating ARDS due to sepsis, we investigated the effect of rsTM on lipopolysaccharide (LPS)-induced pulmonary vascular injury in rats. The intravenous administration of rsTM prevented the increase in pulmonary vascular permeability induced by LPS. Neither heparin plus antithrombin III (AT III) nor dansyl Glu Gly Arg chloromethyl ketone-treated factor Xa (DEGR-Xa), a selective inhibitor of thrombin generation, prevented LPS-induced vascular injury. The agents rsTM, heparin plus AT III, and DEGR-Xa all significantly inhibited the LPS-induced intravascular coagulation. Recombinant soluble TM pretreated with a monoclonal antibody (moAb) that inhibits protein C activation by rsTM did not prevent the LPS-induced vascular injury; in contrast, rsTM pretreated with a moAb that does not affect thrombin binding or protein C activation by rsTM prevented vascular injury. Administration of activated protein C (APC) also prevented vascular injury. LPS-induced pulmonary vascular injury was significantly reduced in rats with leukopenia induced by nitrogen mustard and by ONO-5046, a potent inhibitor of granulocyte elastase. Results suggest that rsTM prevents LPS-induced pulmonary vascular injury via protein C activation and that the APC-induced prevention of vascular injury is independent of its anticoagulant activity, but dependent on its ability to inhibit leukocyte activation.

Animals↗

Persistence of affected T lymphocytes in long-term clinical remission in paroxysmal nocturnal hemoglobinuria.

Long-term clinical remission of more than 10 years is rarely seen in paroxysmal nocturnal hemoglobinuria (PNH). Affected blood cells in PNH lack glycosylphosphatidylinositol (GPI)-anchored membrane proteins such as decay-accelerating factor (DAF) and CD59. We performed a flow cytometric analysis of circulating blood cells obtained from two patients with PNH who had been in clinical remission for more than 10 and 25 years, respectively. Affected cells with the PNH phenotype were demonstrated only among T-lymphocytes. Persistent affected T cells were negative for the CD52 protein only, this protein being a GPI-anchored lymphocyte marker without complement regulatory activity. The persistence of the affected T cells may be explained either by an inherently long life span after the disappearance of the PNH stem cell or by insidious production at a subclinical level by affected stem cell. In either event, detection of affected T cells, especially CD52-negative T cells, may be useful for the evaluation of long-term clinical remission in PNH.

Adrenal Cortex Hormones↗

A novel diagnostic method of adult T-cell leukemia: monoclonal integration of human T-cell lymphotropic virus type I provirus DNA detected by inverse polymerase chain reaction.

Adult T-cell leukemia (ATL) is neoplasm of the mature helper T lymphocytes and human T-cell lymphotropic virus type-I (HTLV-I) has been shown to be causative virus of ATL. Because HTLV-I integrates its provirus randomly into host chromosomal DNA, monoclonal integration of HTLV-I provirus indicates the clonal proliferation of HTLV-I-infected cells. Therefore, demonstration of clonality of HTLV-I proviral DNA is essential to diagnosis of ATL. Southern blot analysis was used for this purpose. We developed the novel method using inverse polymerase chain reaction (IPCR) to detect the clonality of HTLV-I proviral DNA. This method identified the clonality in all ATL cases. Diagnosis could be made within 3 days using this method. It enabled us to detect specifically the presence of minimal numbers of ATL cells with high sensitivity. It also identified the monoclonal or oligoclonal proliferations of HTLV-I-infected cells in HTLV-I carriers and the intermediate state, in which no clonality could be shown by conventional Southern blot analyses. This finding indicated that even HTLV-I carriers had monoclonal proliferation of HTLV-I-infected cells without any symptoms. This novel method is shown to be useful for the diagnosis of ATL and provides information on the natural course of HTLV-I infection.

Base Sequence↗