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Articles

Heat shock proteins and acute leukemias

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Pages 225-235 | Published online: 04 Sep 2013

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Leila Sharif-Khatibi, Amina Kariminia, Sameide Khoei & Bahram Goliaei. (2007) Hyperthermia induces differentiation without apoptosis in permissive temperatures in human erythroleukaemia cells. International Journal of Hyperthermia 23:8, pages 645-655.
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Chen Hu, Jing Yang, Ziping Qi, Hong Wu, Beilei Wang, Fengming Zou, Husheng Mei, Jing Liu, Wenchao Wang & Qingsong Liu. (2022) Heat shock proteins: Biological functions, pathological roles, and therapeutic opportunities. MedComm 3:3.
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Aleksandra Georgievski, Anaïs Michel, Charles Thomas, Zandile Mlamla, Jean-Paul Pais de Barros, Stéphanie Lemaire-Ewing, Carmen Garrido & Ronan Quéré. (2022) Acute lymphoblastic leukemia-derived extracellular vesicles affect quiescence of hematopoietic stem and progenitor cells. Cell Death & Disease 13:4.
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Azam Rashidbaghan, Ali Mostafaie & Yaghoub Yazdani. (2022) More Related Gene Pathways to Vincristine-Induced Death Events in a Human T-Acute Lymphoblastic Leukemia Cell Line. Reports of Biochemistry and Molecular Biology 10:4, pages 554-564.
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Xiangyu Deng, Bin Du, Fengmei Zhu, Yanan Gao & Jun Li. (2020) Proteomic analysis of Aspergillus niger 3.316 under heat stress . MicrobiologyOpen 9:5.
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José Luis Ordóñez, Daniel Osuna, Juan Madoz-Gúrpide & Enrique de Álava. 2017. The Molecular Basis of Human Cancer. The Molecular Basis of Human Cancer 623 655 .
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Rajesh R. Kundapur & Dhiraj Kumar. 2015. Biomedical Applications of Natural Proteins. Biomedical Applications of Natural Proteins 31 39 .
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Keith J. August, Aru Narendran & Kathleen A. Neville. (2013) Pediatric Relapsed or Refractory Leukemia: New Pharmacotherapeutic Developments and Future Directions. Drugs 73:5, pages 439-461.
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Bryan Newman, Yan Liu, Hsiu-Fang Lee, Duxin Sun & Yin Wang. (2012) HSP90 Inhibitor 17-AAG Selectively Eradicates Lymphoma Stem Cells. Cancer Research 72:17, pages 4551-4561.
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Hajare Mjahed, François Girodon, Michaela Fontenay & Carmen Garrido. (2012) Heat shock proteins in hematopoietic malignancies. Experimental Cell Research 318:15, pages 1946-1958.
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Elizabeth R. Remily-Wood, Richard Z. Liu, Yun Xiang, Yi Chen, C. Eric Thomas, Neal Rajyaguru, Laura M. Kaufman, Joana E. Ochoa, Lori Hazlehurst, Javier Pinilla-Ibarz, Jeffrey Lancet, Guolin Zhang, Eric Haura, David Shibata, Timothy Yeatman, Keiran S. M. Smalley, William S. Dalton, Emina Huang, Ed Scott, Gregory C. Bloom, Steven A. Eschrich & John M. Koomen. (2011) A database of reaction monitoring mass spectrometry assays for elucidating therapeutic response in cancer. PROTEOMICS - Clinical Applications 5:7-8, pages 383-396.
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Andre Goy. 2011. Bortezomib in the Treatment of Multiple Myeloma. Bortezomib in the Treatment of Multiple Myeloma 107 121 .
Liwen Wang, Sean W. Harshman, Shujun Liu, Chen Ren, Hua Xu, Larry Sallans, Michael Grever, John C. Byrd, Guido Marcucci & Michael A. Freitas. (2010) Assaying pharmacodynamic endpoints with targeted therapy: Flavopiridol and 17AAG induced dephosphorylation of histone H1.5 in acute myeloid leukemia. PROTEOMICS 10:23, pages 4281-4292.
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Chenghua Li, Lingling Wang, Xuanxuan Ning, Aiqin Chen, Linbao Zhang, Song Qin, Huifeng Wu & Jianmin Zhao. (2010) Identification of two small heat shock proteins with different response profile to cadmium and pathogen stresses in Venerupis philippinarum. Cell Stress and Chaperones 15:6, pages 897-904.
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J E Lancet, I Gojo, M Burton, M Quinn, S M Tighe, K Kersey, Z Zhong, M X Albitar, K Bhalla, A L Hannah & M R Baer. (2010) Phase I study of the heat shock protein 90 inhibitor alvespimycin (KOS-1022, 17-DMAG) administered intravenously twice weekly to patients with acute myeloid leukemia. Leukemia 24:4, pages 699-705.
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Ana Sofia Martins, José Luis Ordoñez, Alfredo García-Sánchez, David Herrero, Victoria Sevillano, Daniel Osuna, Carlos Mackintosh, Gemma Caballero, Ana Pastora Otero, Christopher Poremba, Juan Madoz-Gúrpide & Enrique de Alava. (2008) A Pivotal Role for Heat Shock Protein 90 in Ewing Sarcoma Resistance to Anti-Insulin-like Growth Factor 1 Receptor Treatment: In vitro and In vivo Study . Cancer Research 68:15, pages 6260-6270.
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Marion Pocaly, Valérie Lagarde, Gabriel Etienne, Maryse Dupouy, Delphine Lapaillerie, Stéphane Claverol, Sébastien Vilain, Marc Bonneu, Béatrice Turcq, François‐Xavier Mahon & Jean‐Max Pasquet. (2008) Proteomic analysis of an imatinib‐resistant K562 cell line highlights opposing roles of heat shock cognate 70 and heat shock 70 proteins in resistance. PROTEOMICS 8:12, pages 2394-2406.
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Kyeong Lee, Jung S. Ryu, Yinglan Jin, Woncheol Kim, Navneet Kaur, Sang J. Chung, Yong-Jin Jeon, Joon-Tae Park, Ji S. Bang, Hong S. Lee, Tae Y. Kim, Jung J. Lee & Young-Soo Hong. (2008) Synthesis and anticancer activity of geldanamycin derivatives derived from biosynthetically generated metabolites. Org. Biomol. Chem. 6:2, pages 340-348.
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Z. H. Liu, Q. Yang & J. Ma. (2007) A heat shock protein gene (hsp22.4) from Chaetomium globosum confers heat and Na2CO3 tolerance to yeast. Applied Microbiology and Biotechnology 77:4, pages 901-908.
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Yong Chen, Zaman Alli, Cameron Ackerley, Bandar Al-Saud & Mohamed Abdelhaleem. (2007) Altered distribution of heat shock protein 60 (Hsp60) with dysregulated expression of DHX32. Experimental and Molecular Pathology 82:3, pages 256-261.
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Maryline Moulin, Charles Dumontet & André-Patrick Arrigo. (2007) Sensitization of chronic lymphocytic leukemia cells to TRAIL-induced apoptosis by hyperthermia. Cancer Letters 250:1, pages 117-127.
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Chunxiao Fu, Morgen Hickey, Melissa Morrison, Roger McCarter & Eun-Soo Han. (2006) Tissue specific and non-specific changes in gene expression by aging and by early stage CR. Mechanisms of Ageing and Development 127:12, pages 905-916.
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Ivan Dikic, Nicola Crosetto, Silvia Calatroni & Paolo Bernasconi. (2006) Targeting ubiquitin in cancers. European Journal of Cancer 42:18, pages 3095-3102.
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Lata T. GooljarsinghChristine FernandesKang YanHong Zhang, Michael Grooms, Kyung Johanson, Robert H. Sinnamon, Robert B. Kirkpatrick, John Kerrigan, Tia Lewis, Marc Arnone, Alastair J. King, Zhihong LaiRobert A. CopelandPeter J. Tummino. (2006) A biochemical rationale for the anticancer effects of Hsp90 inhibitors: Slow, tight binding inhibition by geldanamycin and its analogues. Proceedings of the National Academy of Sciences 103:20, pages 7625-7630.
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