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Imad Shams

Showing results (11-20 of 36) with videos related to

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Gene|December 4, 2015
Molecular evolution of antioxidant and hypoxia response in long-lived, cancer-resistant blind mole rats: The Nrf2-Keap1 pathwayHanno Schmidt, Johannes Hangmann, Imad Shams, et al.
Phytopathology|January 27, 2026
Effects of Pathogen Load and Host Genetic Background on Tandem Kinase-Mediated Resistance in WheatLiubov Govta, Nikolai Govta, Imad Shams, et al.
Aging Cell|October 13, 2019
Downregulation of the inflammatory network in senescent fibroblasts and aging tissues of the long-lived and cancer-resistant subterranean wild rodent, SpalaxAmani Odeh, Maria Dronina, Vered Domankevich, et al.
Cell Calcium|July 27, 2018
Reduced calcium influx in the hypoxia-tolerant Spalax: The role of the erythropoietin receptorSafaa Salah-Hussiesy, Anatolii Mamchur, Amani Odeh, et al.
Journal of Molecular Biology|January 16, 2013
Transcription pattern of p53-targeted DNA repair genes in the hypoxia-tolerant subterranean mole rat SpalaxImad Shams, Assaf Malik, Irena Manov, et al.
BMC Genomics|January 10, 2019
The transcriptome landscape of the carcinogenic treatment response in the blind mole rat: insights into cancer resistance mechanismsRobert Altwasser, Arnon Paz, Abraham Korol, et al.
Metabolites|November 25, 2021
Glutamine Homeostasis and Its Role in the Adaptive Strategies of the Blind Mole Rat, SpalaxDmitry Miskevich, Anastasia Chaban, Maria Dronina, et al.
Metabolites|November 25, 2021
Comprehensive Analysis of <sup>13</sup>C<sub>6</sub> Glucose Fate in the Hypoxia-Tolerant Blind Mole Rat Skin FibroblastsDmitry Miskevich, Anastasia Chaban, Maria Dronina, et al.
Stem Cells (Dayton, Ohio)|July 14, 2018
Adipose-Derived Stem Cells of Blind Mole Rat Spalax Exhibit Reduced Homing Ability: Molecular Mechanisms and Potential Role in Cancer SuppressionAnatolii Mamchur, Eva Leman, Safaa Salah, et al.
FASEB Journal : Official Publication of the Federation of American Societies for Experimental Biology|July 8, 2005
Increased blood vessel density provides the mole rat physiological tolerance to its hypoxic subterranean habitatAaron Avivi, Imad Shams, Alma Joel, et al.
Pageof 4

Showing results (11-20 of 36) with videos related to

Sort By:
Pageof 4
Gene|December 4, 2015
Molecular evolution of antioxidant and hypoxia response in long-lived, cancer-resistant blind mole rats: The Nrf2-Keap1 pathwayHanno Schmidt, Johannes Hangmann, Imad Shams, et al.
Phytopathology|January 27, 2026
Effects of Pathogen Load and Host Genetic Background on Tandem Kinase-Mediated Resistance in WheatLiubov Govta, Nikolai Govta, Imad Shams, et al.
Aging Cell|October 13, 2019
Downregulation of the inflammatory network in senescent fibroblasts and aging tissues of the long-lived and cancer-resistant subterranean wild rodent, SpalaxAmani Odeh, Maria Dronina, Vered Domankevich, et al.
Cell Calcium|July 27, 2018
Reduced calcium influx in the hypoxia-tolerant Spalax: The role of the erythropoietin receptorSafaa Salah-Hussiesy, Anatolii Mamchur, Amani Odeh, et al.
Journal of Molecular Biology|January 16, 2013
Transcription pattern of p53-targeted DNA repair genes in the hypoxia-tolerant subterranean mole rat SpalaxImad Shams, Assaf Malik, Irena Manov, et al.
BMC Genomics|January 10, 2019
The transcriptome landscape of the carcinogenic treatment response in the blind mole rat: insights into cancer resistance mechanismsRobert Altwasser, Arnon Paz, Abraham Korol, et al.
Metabolites|November 25, 2021
Glutamine Homeostasis and Its Role in the Adaptive Strategies of the Blind Mole Rat, SpalaxDmitry Miskevich, Anastasia Chaban, Maria Dronina, et al.
Metabolites|November 25, 2021
Comprehensive Analysis of <sup>13</sup>C<sub>6</sub> Glucose Fate in the Hypoxia-Tolerant Blind Mole Rat Skin FibroblastsDmitry Miskevich, Anastasia Chaban, Maria Dronina, et al.
Stem Cells (Dayton, Ohio)|July 14, 2018
Adipose-Derived Stem Cells of Blind Mole Rat Spalax Exhibit Reduced Homing Ability: Molecular Mechanisms and Potential Role in Cancer SuppressionAnatolii Mamchur, Eva Leman, Safaa Salah, et al.
FASEB Journal : Official Publication of the Federation of American Societies for Experimental Biology|July 8, 2005
Increased blood vessel density provides the mole rat physiological tolerance to its hypoxic subterranean habitatAaron Avivi, Imad Shams, Alma Joel, et al.
Pageof 4