Terms: = Leukemia AND MYH11, ENSG00000133392, 4629 AND Diagnosis
105 results:
1. [Acute myeloid leukemia with type I CBFB::myh11 fusion gene not detected by screening test for leukemia-related chimeric genes].
Utsumi S; Shima T; Kubara C; Semba Y; Hayashi M; Takigawa K; Yoshino T; Minami M; Matsuo Y; Kuriyama T; Akashi K; Maeda T; Taniguchi S; Eto T
Rinsho Ketsueki; 2023; 64(12):1503-1507. PubMed ID: 38220149
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2. [Clinical features and prognosis of core binding factor acute myeloid leukemia children in South China: a multicenter study].
Guo BY; Wang Y; Li J; Li CF; Feng XQ; Zheng MC; Liu SX; Yang LH; Jiang H; Xu HG; He XL; Wen H
Zhonghua Er Ke Za Zhi; 2023 Oct; 61(10):881-888. PubMed ID: 37803854
[No Abstract] [Full Text] [Related]
3. Blast phase of chronic myeloid leukemia with concurrent BCR::ABL1 and SET::NUP214: A report of two cases.
Chen Y; Wang Q; Cen J; Xu C; Tao TT; Xie J; Shen W; Gong Y; Pan J; Yao L
Mol Carcinog; 2023 Feb; 62(2):117-121. PubMed ID: 36321418
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4. [Myeloid sarcomas of the shoulder and testis relapsing 9 years after allogenic stem cell transplantation for acute myeloid leukemia].
Yamamoto R; Suyama T; Yoshizawa Y; Shimizu M; Kuroda A; Shinagawa A
Rinsho Ketsueki; 2022; 63(8):860-864. PubMed ID: 36058855
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5. Acute hepatitis-like presentation with cholestasis of CBFB-myh11-positive acute myeloid leukemia in an adult male: a case report.
Spinelli I; De Santis A; Cesini L; Riminucci M; Corsi A; Forlino M; Perrone EP; Minotti C; Cartoni C
J Med Case Rep; 2022 Jul; 16(1):294. PubMed ID: 35907896
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6. Jumping translocation involving chromosome 13q in a patient with Crohn's Disease and inv(16)(p13.1q22)/CBFB-myh11 acute myeloid leukemia.
Clarke S; de Kraa R; Chuah H; Creeper K; Leahy MF; Wright M
Cancer Genet; 2022 Aug; 266-267():7-14. PubMed ID: 35613501
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7. 3'CBFB deletion in CBFB-rearranged acute myeloid leukemia retains morphological features associated with inv(16), but patients have higher risk of relapse and may require stem cell transplant.
Tang G; Zou Y; Wang SA; Borthakur G; Toruner G; Hu S; Li S; Xu J; Medeiros LJ; Tang Z
Ann Hematol; 2022 Apr; 101(4):847-854. PubMed ID: 35184217
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8. Incidental identification of inv(16)(p13.1q22)/
Quesada AE; Luthra R; Jabbour E; Patel KP; Khoury JD; Tang Z; Alvarez H; Mallampati S; Garcia-Manero G; Montalban-Bravo G; Medeiros LJ; Kanagal-Shamanna R
Cold Spring Harb Mol Case Stud; 2021 Jun; 7(3):. PubMed ID: 34117074
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9. [The Prognostic Factors for AML Children with CBFβ/myh11 Positive].
Yan M; Song FX; Lu J
Zhongguo Shi Yan Xue Ye Xue Za Zhi; 2021 Apr; 29(2):369-373. PubMed ID: 33812401
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10. RNA sequencing as an alternative tool for detecting measurable residual disease in core-binding factor acute myeloid leukemia.
Kim T; Moon JH; Ahn JS; Ahn SY; Jung SH; Yang DH; Lee JJ; Shin MG; Choi SH; Lee JY; Tyndel MS; Lee HY; Kim KH; Cai Y; Lee YJ; Sohn SK; Min YH; Cheong JW; Kim HJ; Zhang Z; Kim DDH
Sci Rep; 2020 Nov; 10(1):20119. PubMed ID: 33208771
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11. [Driver Mutations in Acute Myeloid leukemia with Inversion of Chromosome 16].
Ghukasyan LG; Krasnov GS; Muravenko OV; Ikonnikova AY; Yurasov RA; Baidun LV; Ibragimova SZ; Nasedkina TV
Mol Biol (Mosk); 2020; 54(3):389-397. PubMed ID: 32492002
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12. Using the SEER-Medicare Data to Assess Incident Chronic Myeloid leukemia and Bladder Cancer Cases Missed by Cancer Registries.
Lam CJK; Warren JL; Nielsen M; Smith A; Boyd E; Barrett MJ; Mariotto AB
J Natl Cancer Inst Monogr; 2020 May; 2020(55):31-38. PubMed ID: 32412074
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13. The Incidence and Immunophenotypic and Genetic Features of JL1 Expressing Cells and the Therapeutic Potential of an Anti-JL1 Antibody in
Park SH; You E; Park CJ; Jang S; Cho YU; Yoon CH; Koh KN; Im HJ; Seo JJ
Ann Lab Med; 2019 Jul; 39(4):358-366. PubMed ID: 30809981
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14. Synchronous diagnosis of
Shoyele O; Gupta G
Ann Clin Lab Sci; 2018 Nov; 48(6):790-796. PubMed ID: 30610052
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15. Clinicopathological characteristics of de novo and secondary myeloid sarcoma: A monocentric retrospective study.
Claerhout H; Van Aelst S; Melis C; Tousseyn T; Gheysens O; Vandenberghe P; Dierickx D; Boeckx N
Eur J Haematol; 2018 Jun; 100(6):603-612. PubMed ID: 29532520
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16. Multiplex fusion gene testing in pediatric acute myeloid leukemia.
Iijima-Yamashita Y; Matsuo H; Yamada M; Deguchi T; Kiyokawa N; Shimada A; Tawa A; Takahashi H; Tomizawa D; Taga T; Kinoshita A; Adachi S; Horibe K
Pediatr Int; 2018 Jan; 60(1):47-51. PubMed ID: 29105243
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17. Monitoring of fusion gene transcripts to predict relapse in pediatric acute myeloid leukemia.
Matsuo H; Iijima-Yamashita Y; Yamada M; Deguchi T; Kiyokawa N; Shimada A; Tawa A; Tomizawa D; Taga T; Kinoshita A; Adachi S; Horibe K
Pediatr Int; 2018 Jan; 60(1):41-46. PubMed ID: 29067751
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18. Detection and Quantification of Acute Myeloid leukemia-Associated Fusion Transcripts.
Schumacher J; Szankasi P; Kelley TW
Methods Mol Biol; 2017; 1633():151-161. PubMed ID: 28735486
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19. Copy number alterations determined by single nucleotide polymorphism array testing in the clinical laboratory are indicative of gene fusions in pediatric cancer patients.
Busse TM; Roth JJ; Wilmoth D; Wainwright L; Tooke L; Biegel JA
Genes Chromosomes Cancer; 2017 Oct; 56(10):730-749. PubMed ID: 28597942
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20. [Case Conference of Hematological Malignancies Based on the Morphology of Blood Cells: Chairmen's Introductory Remarks].
Inaba T; Ikemoto T
Rinsho Byori; 2016 Nov; 64(11):1310-1312. PubMed ID: 30695313
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