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Leukemia adult T-cell

Lymphomas not included in Working Formulation mycosis fungoides, mantle cell lymphoma, monocytoid B-cell lymphoma, mucosa-associated lymphoid tissue (MALT), anaplastic large cell lymphoma, angiocentric lymphoma, angioimmunoblastic lymphadenopathy (AILD), Castleman s disease, adult T-cell leukemia/lymphoma. [Pg.1376]

Ishida T, Iida S, Akatsuka Y, et al. The CC chemokine receptor 4 as a novel specific molecular target for immunotherapy in adult T-cell leukemia/lymphoma. Clin Cancer Res 2004 10 7529-7539. [Pg.350]

Adult T-cell leukemia Human T-cell Retrovirus RNA... [Pg.166]

HTLV I Endemic in W Indies and SW Japan transmission via blood, human milk can cause adult T-cell leukemia, and HTLV I-associated myelopathy and tropical spastic paraparesis... [Pg.196]

MM = multiple myeloma ATL = adult T-cell leukemia ALL = acute lymphoblastic leukemia CLL = chronic lymphocytic leukemia FCC = follicular center cell lymphoma DLC = diffuse large cell lymphoma TRB = T-cell rich B-cell lymphoma ALCL = anaplastic large cell lymphoma MALT = mucosa-associated lymphoid tissue-type lymphoma LC = lung cancer CMM = cutaneous malignant melanoma TCC = transitional cell carcinoma CSCC = cutaneous squamous cell carcinoma. [Pg.125]

K3. Kinoshita, K., Kamihira, S., Yamada, Y, Amagasaki, T., Ikeda, S., Momita, S., and Ichimaru, M., Adult T-cell leukemia-lymphoma in the Nagasaki district. In Adult T-Cell Leukemia and Related Disease (M. Hanaoka, K. Takatsuki, and M. Shimoyama, eds.), pp. 167-184. Japan Scientific Societies Press, Tokyo, 1982. [Pg.135]

Shimoyama, M., Diagnostic criteria and classification of clinical subtypes of adult T-cell leukemia-lymphoma. A report from the Lymphoma Study Group (1984-87). Br. J. Haematol. 79,428-437 (1991). [Pg.136]

T2. Tamiya, S., Ftoh, K., Suzushima, H., Takatsuki, K., and Matsuoka, M., Mutation of CD95 (Fas/Apo-1) gene in adult T-cell leukemia cells. Blood 91, 3935-3942 (1998). [Pg.136]

Kasai T, Iwanaga Y, Iha H et al. Prevalent loss of mitotic spindle checkpoint in adult T-cell leukemia confers resistance to microtubule inhibitors. JBiol Chem 2002 277 5187-5193. [Pg.247]

Tomita M, Kawakami H, Uchihara JN, Okudaira T, Masuda M, Takasu N, Matsuda T, Ohta T, Tanaka Y, Ohshiro K, Mori N. 2006. Curcumin (diferuloylmethane) inhibits constitutive active NF-kappaB, leading to suppression of cell growth of human T-cell leukemia virus type I-infected T-cell lines and primary adult T-cell leukemia cells. Int J Cancer 118 765-772. [Pg.397]

T/NK (natural killer) cell lymphomas are much less common in Western countries and much less understood than the B cell lymphomas. Thus, the discussion of these entities will be much briefer. In addition, a significant number of the T/NK lymphomas, such as enteropathy-type T cell lymphoma, hepatosplenic T cell lymphoma, subcutaneous panniculitis-like T cell lymphoma, blastic NK cell lymphoma, T cell granular lymphocytic leukemia, and adult T cell leukemia/ lymphoma, will not be discussed in this review. The reader is advised to consult the recent World Health Organization Classification of Tumours (J2). [Pg.320]

Ohira, A., Honda, O., Gauntt, C.D., Yamamoto, M., Hori, K., Masutani, H., Yodoi, J., and Honda, Y. 1994. Oxidative stress induces adult T cell leukemia derived factor/thioredoxin in the rat retina. Lab. Invest. 70 279-285. [Pg.153]

Mahieux R, Gessain A. HTLV-1 associated adult T-cell leukemia/lymphoma. Rev Clin Exp Hematol 2003 7 336-61. [Pg.628]

Human T-cell lympho trophic vkus type-I (HTLV-I) is an exogenous human retrovirus that causes adult T cell leukemia (ATL) and a progressive neurological disorder, HTLV-I associated myelopathy/tropical spastic paraparesis (HAM/TSP). [Pg.313]

Hinuma Y, Nagata K, Hairaoka M, Nakai M, Matsumoto T, Kinoshita KI, Shirakawa S, Miyoslri 1(1981) Adult T-cell leukemia Airdgen in ai ATL cell line aird detecdon of airdbodies to dre airdgen in humai sera. Proc Natl Acad Sci USA 78 6476-6480. [Pg.323]

Ohaslii T, Hanabuclii S, Kato H, Koya Y, Takemura F, Hirokawa K, Yoshiki T, Tanaka Y Fuji M, Kannagi M (1999) hrduchon of adult T-cell leukemia-like lymphoproliferahve disease and its inliibition by adoptive immunotlieraphy in T-cell-deficient nude rats inoculated witli syngeneic human T-cell leukemia virus type 1-immortalized cells. J Virol 73 6031-6040. [Pg.325]

Teiidler CL, Greenberg SJ, Burton JD, Danielpour D, BUm SJ, Blattner WA, Manns A, Waldmann TA (1991) Cytokine induc-doii ill HTLV-I associated myelopadiy and adult T-cell leukemia Alternate molecular- mechanisms underlying redoviral padiogeri-esis. J Cell Biochem 46 302—311. [Pg.325]

Usuku K, Sonoda S, Osame M, Yashiki S, Takahashi K, Matsumoto M, SawadaT, Tsuji K, TaraM, Igata A (1988) HLAliaplo type-linked high immune responsiveness against HTLV-I in HTLV-I-associated myelopadiy Comparison widi adult T-cell leukemia/lymphoma. Ann Neui-ol 23(Suppl) S 143-150. [Pg.325]

Sasaki H, Nishikata I, Shiraga T et al. Overexpression of a cell adhesion molecule, TSLCl, as a possible molecular marker for acute-type adult T-cell leukemia. Blood 2005 105(3) 1204-1213. [Pg.134]

HTLV-1 and HTLV-2 The human T cell lymphotropic virus type I (HTLV-I) is endemic in some areas of Japan, the Caribbean, and Africa, and has been associated with adult T cell leukemia. In Japan, seroconversion has been observed when anti-HTLV-I-negative patients were transfused with seropositive blood or blood components in one study the conversion rate was 62% (177). However, no case of transfusion-associated adult T cell leukemia has been reported to date (184,185). HTLV-II was originally isolated from a patient with hairy cell leukemia, but... [Pg.538]

Morishima Y, Ohya K, Ueda R, Fukuda T. Detection of adult T cell leukemia virus (ATLV) bearing lymphocytes in concentrated red blood cells derived from ATL associated antibody (ATLA-Ab) positive donors. Vox Sang 1986 50(4) 212-15. [Pg.544]

Chemotherapy-related myelodysplastic syndrome has been reported in association with adult T cell leukemia (80). [Pg.1040]

Iwata, S., Hori, T., Sato, N Ueda-Taniguchi, Y., Yamabe, T., Nakamura, H Masutani, H and Yodoi, J. (1994) Thiol-mediated redox regulation of lymphocyte proliferation possible involvement of adult T cell leukemia-derived factor and glutathione in transferrin receptor expression. J. Immunol. 152, 5633-5642. [Pg.89]

Sakashita A, Hattori T, Miller CW, Suzushima H, Asou N, Takatsuki K, Koefiler HP. Mutations of the p53 gene in adult T-cell leukemia. Blood 1992 79 477-80. [Pg.1480]


See other pages where Leukemia adult T-cell is mentioned: [Pg.343]    [Pg.343]    [Pg.111]    [Pg.136]    [Pg.136]    [Pg.206]    [Pg.292]    [Pg.44]    [Pg.241]    [Pg.85]    [Pg.16]    [Pg.4]    [Pg.280]    [Pg.76]    [Pg.314]    [Pg.870]    [Pg.591]    [Pg.591]    [Pg.314]    [Pg.869]    [Pg.591]    [Pg.591]   
See also in sourсe #XX -- [ Pg.323 ]




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