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Biomedical subjects

K Hatake

Publications and source records attributed to K Hatake.

At least 55 records · Page 3Linked to original sources

Portal vein thrombosis in paroxysmal nocturnal haemoglobinuria.

A 28-year-old man was hospitalized with nausea, vomiting, abdominal pain and low-grade fever. He had a 6-month history of paroxysmal nocturnal haemoglobinuria (PNH), and laboratory data showed anaemia and liver dysfunction. An abdominal ultrasonography showed ascites and portal vein thrombosis. After receiving antithrombotic treatment, the portal vein thrombosis did not extend. Portal vein thrombosis is very rare but should be considered when we encounter liver dysfunction associated with PNH as well as hepatic vein thrombosis. Ultrasonography is very useful in detecting portal vein thrombosis and facilitating early diagnosis. Warfarin is very effective in preventing exacerbation of portal vein thrombosis in PNH.

Adult↗

Adult T cell leukemia lymphoma (ATL) localized in the right tibial bone.

A 56-year-old man was admitted complaining of pain in the right tibia. He was diagnosed as having adult T-cell leukemia/lymphoma (ATL/L) in the right knee joint by roentgenographic and histological examination. Monoclonal integration of HTLV-I proviral DNA was demonstrated in the bone tumor cells, although polyclonal integration was observed in the peripheral blood. These results led us to make a diagnosis of ATL with localized growth in the right knee joint. The osteolytic bone change was progressive despite radiation therapy. Complete remission was achieved after amputation of his right lower leg and two courses of chemotherapy. Resection of the localized lesion might be useful in cases of ATL, but further studies are necessary to confirm this conclusion.

Bone Neoplasms↗

[Systemic lupus erythematosus presenting as fulminant thrombotic thrombocytopenic purpura].

A 20-year-old woman visited a nearby hospital because of sudden, severe, and unusual genital bleeding. She also exhibited severe anemia and thrombocytopenia. In transit to our hospital, the patient suddenly suffered cardiac arrest and died soon thereafter despite immediate blood transfusion and therapeutic intubation. Thrombotic thrombocytopenic purpura (TTP) was initially diagnosed at autopsy due to the observation of numerous fragmented erythrocytes in peripheral blood, evidence of hemolysis, and thrombotic microangiopathy in multiple organs. In addition, histopathologic and serologic findings disclosed an association with systemic lupus erythematosus (SLE). Test for anticardiolipin antibody was positive, and hemophagocytic findings were detected in lymph node specimens. Reports of TTP in association with SLE have been increasing in recent years. However, the mechanisms correlating these two illnesses have not been identified. We speculated that the rapid clinical course in this case was attributable to TTP that had been provoked by endothelial microangiopathy due to SLE, and moreover, the fact that the patient's general condition had been seriously complicated by excessive menstrual bleeding.

Adult↗

No beneficial effect from addition of etoposide to daunorubicin, cytarabine, and 6-mercaptopurine in individualized induction therapy of adult acute myeloid leukemia: the JALSG-AML92 study. Japan Adult Leukemia Study Group.

To assess the efficacy of etoposide added to the standard remission induction therapy for acute myeloid leukemia (AML), newly diagnosed adult AML patients were randomized to receive either daunorubicin (40 mg/m2/day x 4 or more), behenoyl cytarabine (200 mg/m2/day x 10 or more), and 6-mercaptopurine (70 mg/m2/day x 10 or more) (BHAC-DM), or the same three drugs plus etoposide (100 mg/m2/day x 5) (BHAC-EDM) for response-oriented individualized induction therapy. The patients achieving complete remission (CR) received the same 3 courses of consolidation therapy followed by 6 courses of maintenance/intensification therapy. M3 patients were excluded because all-trans retinoic acid was used. Of 667 patients registered, 655 were evaluable. The median age was 49 (range 15 to 85). CR rates were 77% in the BHAC-DM group and 75% in the BHAC-EDM group. In 173 M4 patients, CR rates were 86% and 69% (P = 0.009), and in 32 M5 patients, 80% and 77% (P = 0.810) in the BHAC-DM and the BHAC-EDM groups, respectively. The predicted 6-year overall survival rates were 30% and 38% (P = 0.925) for the BHAC-DM and BHAC-EDM groups, and the disease-free survival rates of CR patients were 25% and 35% (P = 0.352), respectively. Nonhematological toxicities after the first course of induction therapy were almost equal among the two groups, with the exception of a greater loss of hair (P = 0.024) and more frequent diarrhea (P = 0.013) in the BHAC-EDM group. We concluded that in the present study, the addition of etoposide to the standard individualized induction therapy showed no advantage in adult AML, even among M4 and M5 patients.

Acute Disease↗

[Moderate aplastic anemia associated with Crohn's disease during antithymocyte globulin treatment].

A 53-year-old woman with moderate aplastic anemia (AA) was treated with antithymocyte globulin (ATG). However, on the 4th day of treatment, ATG was discontinued because of bloody vomiting and melena. The patient improved with conservative treatment but complained of abdominal pain when the prednisolone (PSL) dose was decreased. Crohn's disease was finally diagnosed on the basis of upper and lower gastrointestinal X-ray studies. The patient responded well to ATG with hematologic improvement, and maintained remission with low-dose PSL and nutritional support. Drug-induced AA may occur during treatment for Crohn's diseases. The association of AA and Crohn's disease is rare, and to our knowledge, has not yet been reported in the literature. We discussed the pathogenesis of Crohn's disease during immunotherapy for AA.

Anemia, Aplastic↗

IL-13 as well as IL-4 induces monocytes/macrophages and a monoblastic cell line (UG3) to differentiate into multinucleated giant cells in the presence of M-CSF.

The formation of multinucleated giant cells (MGCs) from monocytes/macrophages is controlled by various cytokines whose crucial roles are not fully understood. In this study, we found that interleukin (IL)-13 as well as IL-4 induced peripheral blood monocytes (PBMs) and monoblastic cell line, UG3, to differentiate into MGCs in the presence of macrophage colony-stimulating factor (M-CSF), while IL-2, IL-7 or IL-10 did not. The presence of M-CSF was essential to this MGC formation, because IL-3 or granulocyte-macrophage colony-stimulating factor (GM-CSF) could not replace M-CSF. IL-4 and IL-13 have been known to inhibit the formation of osteoclast-like cells in the presence of stroma cells or osteoblastic cells. But in our system without stroma cells, IL-4 or IL-13 induced some of characteristics of osteoclasts such as tartrate-resistant acid phosphatase (TRAP) activity, vitronectin receptor (vit-R) expression and resorptive activity for hydroxyapatite, but not the expression of receptors for parathyroid hormone or calcitonin. These results suggest possible involvement of IL-4 and IL-13 in MGCs and osteoclasts development, and UG3 may be useful to further investigate the roles of IL-4 and IL-13 in the formation and physiology of MGCs, and the relationship between these MGCs and osteoclasts.

Acid Phosphatase↗

Activated endothelial cells induce apoptosis in leukemic cells by endothelial interleukin-8.

Tumor cells are eradicated by several systems, including Fas ligand-Fas and tumor necrosis factor (TNF)-tumor necrosis factor receptor (TNFR). In the previous study, we purified an apoptosis-inducing factor (AIF) to homogeneity from a medium conditioned by PDBu-treated HL-60 cells. N-terminal sequence analysis showed that AIF is identical to endothelial interleukin-8 (IL-8). A novel apoptosis system, in which endothelial cells participate via endothelial IL-8 release, is identified here. Human umbilical vein cells (VE cells) produce and secrete IL-8 by stimulation of IL-1alpha and TNF-alpha. Endothelial IL-8, which is secreted from VE cells by stimulation of IL-1alpha and TNF-alpha , induces apoptosis in myelogenous leukemia cell line K562 cells. Monocyte-derived IL-8 could not induce apoptosis in K562 cells. Moreover, interaction between VE cells and K562 cells induces the release of endothelial IL-8 from VE cells, and the attached K562 cells undergo apoptosis. Moreover, interactions between VE cell and other cell lines, such as HL-60, U937, Jurkat, and Daudi, induce the secretion of endothelial IL-8 and the induction of apoptosis in cell lines. Endothelial IL-8 significantly inhibits tumor growth of intraperitoneal and subcutaneous tumor mass of K562 cells and induces apoptosis in their cells in vivo. Endothelial IL-8 plays an important role in apoptosis involving endothelial cells, which may provide us with a new therapy for hematological malignancies.

Animals↗

Single glycosyltransferase, core 2 beta1-->6-N-acetylglucosaminyltransferase, regulates cell surface sialyl-Lex expression level in human pre-B lymphocytic leukemia cell line KM3 treated with phorbolester.

Sialyl-Lex (sLex) antigen expression recognized by KM93 monoclonal antibody was significantly down-regulated during differentiation induced by 12-O-tetradecanoylphorbol-13-acetate (TPA) in human pre-B lymphocytic leukemia cell line KM3. The sLex determinants were almost exclusively expressed on O-linked oligosaccharide chains of an O-glycosylated 150-kDa glycoprotein (gp150). A low shear force cell adhesion assay showed that TPA treatment significantly inhibited E-selectin-mediated cell adhesion. Transcript and/or enzyme activity levels of alpha1-->3-fucosyltransferase, alpha2-->3-sialyltransferase, beta1-->4-galactosyltransferase, and elongation beta1-->3-N-acetylglucosaminyltransferase did not correlate with sLex expression levels. However, transcript and enzyme activity levels of core 2 GlcNAc-transferase (C2GnT) were significantly down-regulated during TPA treatment. Following transfection and constitutive expression of full-length exogenous C2GnT transcript, C2GnT enzyme activities were maintained at high levels even after TPA treatment and down-regulation of cell surface sLex antigen expression by TPA was completely abolished. Furthermore, in the transfected cells, the KM93 reactivity of gp150 was not reduced by TPA treatment, and the inhibition of cell adhesion by TPA was also blocked. These results suggest that sLex expression is critically regulated by a single glycosyltransferase, C2GnT, during differentiation of KM3 cells.

Animals↗

Identification of alternatively spliced transcripts encoding murine macrophage colony-stimulating factor.

We have isolated a novel cDNA encoding macrophage colony-stimulating factor (M-CSF) from a murine stromal cell line, ST2. The cDNA included an entire coding sequence of the M-CSF gene but contained an additional sequence of 140 base pairs (bp). Northern blot analysis demonstrated that other murine cell lines such as a fibroblastic cell line (L) and a stromal cell line (PA6) also expressed the transcripts corresponding to the clone. The nucleotide sequence analyses of the cDNA and the cloned M-CSF genome revealed that the 140-bp insertion sequence was part of intron 1 which separated exon 1 and exon 2: the former contained part of the amino acid residues of the signal sequence and the latter the rest of the signal sequence and the first 22 amino acid residues of the mature protein. The insertion of the 140-bp intron sequence not only changed the amino acid sequence of the signal peptide but also generated an in-frame termination codon. However, instead of the dysfunction of the original initiation codon, the 140-bp insertion sequence contained a putative ATG initiation codon that preserved the original open reading frame. Finally, we found that the cDNA directed the expression of a secreted and biologically active M-CSF protein when it was introduced into COS7 cells and M-CSF activity in the culture supernatants was measured using an M-CSF-dependent cell line. These results indicate the presence of an alternatively spliced M-CSF transcript which utilizes an alternate initiation codon in order to specify active M-CSF protein.

Alternative Splicing↗

Tec and Jak2 kinases cooperate to mediate cytokine-driven activation of c-fos transcription.

Although transcriptional activation of the c-fos proto-oncogene plays an intrinsic role in the mechanism of blood cell growth, it is still obscure how protein-tyrosine kinases (PTKs) regulate the cytokine-driven c-fos activation pathway. We present here that Tec PTK is tyrosine-phosphorylated and activated by granulocyte-macrophage colony-stimulating factor (GM-CSF) stimulation in a human GM-CSF-dependent cell line. Moreover, we could show that introduction of Tec into mouse BA/F3-hGMRalphabeta cells can profoundly activate the c-fos promoter in response to GM-CSF or to interleukin-3 (IL-3). In contrast, introduction of a kinase-deleted Tec could suppress cytokine-driven c-fos activation, indicating that Tec is directly involved in the regulation of c-fos transcription. Interestingly, strong activation by Tec of the c-fos promoter was blocked by the co-expression of dominant negative Jak2. The molecular interaction between Tec and Jak2 was then investigated both in mammalian and insect cell systems, revealing that they can not only bind to each other, but either of the two can phosphorylate the other. Thus, Tec and Jak2 can "cross-talk" in a complexed way to mediate cytokine-driven c-fos activation.

Amino Acid Sequence↗

Identification of a novel apoptosis-inducing factor derived from leukemic cells: endothelial interleukin-8, but not monocyte-derived, induces apoptosis in leukemic cells.

The human myelogenous leukemia cell line HL-60, treated with phorbol 12, 13-dibutyrate (PDBu), produces apoptosis-inducing factors (AIFs) in leukemic cells. We have purified AIF against leukemic cell line K562 as target cells, and N-terminal amino acid sequencing analysis revealed that this purified protein is identical to endothelial cell-derived interleukin-8 ([(Ala)-IL-8]77). In Western blot analysis of supernatants of PDBu-treated HL-60 cells, only [(Ala)-IL-8]77 was detected. Moreover, recombinant human [(Ala)-IL-8]77 induced apoptosis in leukemic cell lines such as K562, HL-60, KG-1, U937, THP-1 and Jurkat, but monocyte-derived IL-8 ([(Ser)-IL-8]72) did not. Therefore [(Ala)-IL-8]77 plays an important role in inducing apoptosis against leukemic cells and may lead to a new therapy for leukemia.

Apoptosis↗

Grb10/GrbIR as an in vivo substrate of Tec tyrosine kinase.

BACKGROUND: Tec is a member of the recently emerging subfamily among nonreceptor protein-tyrosine kinases (PTKs). Although many members of this family have been shown to be involved in a wide range of cytokine-mediated signalling systems, the molecular mechanism by which they exert in vivo effects remains obscure. To gain insights into the downstream pathways of Tec, we here looked for Tec-interacting proteins (TIPs) by using the yeast two-hybrid screening. RESULTS: One of TIPs turned out to be Grb10/GrbIR, which carries one pleckstrin homology domain and one Src homology 2 domain. Grb10/GrbIR was known to bind receptor PTKs in a ligand-dependent fashion, but not to be phosphorylated on tyrosine residues. In a transient expression system in human kidney 293 cells, however, Grb10/GrbIR becomes profoundly tyrosine-phosphorylated by Tec, but not by Syk, Jak2 or insulin receptor. We also reveal that expression of Grb10/GrbIR suppresses the cytokine-driven and Tec-driven activation of the c-fos promoter. CONCLUSION: Our results indicate a novel role of Grb10/GrbIR as an effector molecule to a subset of nonreceptor PTKs.

Amino Acid Sequence↗

Oculomotor nerve invasion of acute myelogenous leukemia demonstrated by magnetic resonance imaging.

A 53-year-old male was diagnosed as having acute myelogenous leukemia (M2, FAB). He complained of double vision and right blepharoptosis after receiving remission induction chemotherapy. Magnetic resonance imaging (MRI) showed enlargement of the bilateral oculomotor nerves. Intrathecal injections of methotrexate and cytosine arabinoside were partially effective and repeated MRI showed shrinkage of the enlarged oculomotor nerves, after therapy. This case shows the importance of MRI in the early diagnosis of CNS leukemia.

Cranial Nerve Neoplasms↗

Apoptosis-gene expression in hematopoietic system: normal and pathological conditions (Review).

Gene expression involving apoptosis in the hematopoietic system is reviewed. In normal and hematological disorders, Fas-Fas ligand and tumor necrosis factor-alpha-receptor interaction play a major role in enhancing apoptosis. On the other hand, bcl-2 or certain novel proteins (including FADD, RIP, TRADD and sentrin) prevent apoptosis. Apoptosis is involved in myelodysplastic syndrome and pathogenesis of leukemia. Expression of Fas antigen plays a role in negative regulation of hematopoiesis in the bone marrow as does interferon-gamma.

Animals↗

CD95 predicts responsiveness to tretinoin in acute promyelocytic leukemia.

We describe a predictive marker (CD95) for the responsiveness to tretinoin (RA) in acute promyelocytic leukemia (APL). Functional CD95 expression during RA treatment have been observed only in those patients who responded to RA. Expression of CD95 (Fas antigen), which plays a major role in apoptosis, was determined by fluorescence activated cell sorter (FACS) analysis. APL cases in which no enhancement of CD95 expression was observed showed no response to RA and did not obtain complete remission. We propose that CD95 can predict the clinical response to RA probably due to differentiation.

Adult↗

Bcl-x is a regulatory factor of apoptosis and differentiation in megakaryocytic lineage cells.

Differentiation- and lineage-related differences in the expression of two anti-apoptotic molecules, bcl-x and bcl-2, were examined using various human hematopoietic cell lines. Bcl-x was strongly expressed in cell lines with erythroid and megakaryocytic properties (K562, HEL, CMK, and Mo7E), and was moderately expressed in immature myeloid cell lines (KG-1 and KCL-22). Bcl-2 expression was relatively weak in these cells. On the other hand, bcl-x was not expressed in more mature myeloid cell lines (HL-60 and PL-21), but bcl-2 was strongly expressed in these cells and in monocytoid cell lines (U937, THP-1, and JOSK-I). We investigated the biological significance of high levels of bcl-x expression in erythroid and megakaryocytic lineage cells. When K562 cells were specifically differentiated into megakaryocytic lineage by phorbol ester, the amounts of bcl-x increased by 10-fold. In contrast, bcl-x was gradually downregulated during erythroid differentiation induced by cytosine arabinoside. Apoptosis was observed following erythroid differentiation of K562 cells, but it was not associated with megakaryocytic differentiation in consistent with the increase in bcl-x. Moreover, phorbol ester-induced megakaryocytic differentiation was facilitated by the overexpression of bcl-x in K562 cells. Finally, in situ hybridization revealed that bcl-x mRNA expression was strongest in megakaryocytes among normal bone marrow cells. These results suggest that bcl-x is a regulatory factor in the apoptosis and differentiation of megakaryocytes.

Apoptosis↗

Interleukin-8 and monocyte chemotactic protein-1 production by a human glioblastoma cell line, T98G in coculture with monocytes: involvement of monocyte-derived interleukin-1alpha.

We have previously demonstrated that a human glioblastoma cell line, T98G cells, produced high levels of interleukin-8 (IL-8) and monocyte chemotactic protein-1 (MCP-1) when stimulated with IL-1 or tumor necrosis factor-alpha (TNF-alpha). In this study, we found that T98G cells are capable of producing large amounts of IL-8 and MCP-1 when cocultured with human peripheral blood monocytes or a monocytic cell line, U937 cells. Since it is possible that both glioblastoma cells and monocytes are capable of producing chemokines, we determined which type of cells actually produced IL-8 and MCP-1, by the fixation of one or the other cell type with 3% paraformaldehyde (PA). This procedure revealed that T98G cells were the main source and that PA-treated monocytes effectively stimulated IL-8 and MCP-1 production by T98G cells. Both IL-8 and MCP-1 gene expression and protein production by T98G cells were confirmed by northern blot as well as immunohistochemical staining methods. To analyze the molecules on human monocytes responsible for inducing IL-8 and MCP-1 by T98G cells, several antibodies (Abs) as well as IL-1 receptor antagonist (IL-1Ra) were tested. Anti-IL-1alpha Ab and IL-1Ra almost completely abolished the IL-8/MCP-1-inducing capacity of the PA-fixed monocytes, while no inhibition was obtained with anti-IL-1beta, anti-TNF-alpha or Abs against CD11b/18, L-selectin or ICAM-1, indicating that membrane-associated IL-1alpha is involved in the IL-8/MCP-1 induction, while secreted IL-1alpha plays a major role in this cell-to-cell, i.e., juxtacrine interaction in unfixed conditions.

Antibodies, Monoclonal↗