يعرض 1 - 8 نتائج من 8 نتيجة بحث عن '"Albena T Dinkova-Kostova"', وقت الاستعلام: 0.80s تنقيح النتائج
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    المصدر: BioFactors (Oxford, England). 35(2)

    مصطلحات موضوعية: and the sirtuin protein systems. Dietary antioxidants, Clinical Biochemistry, Cellular homeostasis, such as polyphenols and L-carnitine/acetyl-L-carnitine, Biochemistry, Hsp70, Stress Response Signaling, and transcriptional processes. Maintenance of optimal long-term health conditions is accomplished by a complex network of longevity assurance processes that are controlled by vitagenes, Modulation of endogenous cellular defense mechanisms via the stress response signaling represents ad innovative approach to therapeutic intervention in diseases causing chronic damage, Stress, Physiological, Heat shock protein, Cellular stress response, challenges long-standing beliefs about the nature of the dose-response in a low dose zone, Animals, Homeostasis, Humans, Heat shock, biology, General Medicine, such as neurodegeneration and cancer. Protein thiols play a key role in redox sensing, including vitagenes. The hormetic dose-response, Cell biology, Heat shock factor, and regulation of cellular redox state is crucial mediator of multiple metabolic, have recently been demonstrated to be neuroprotective through the activation of hormetic pathways, having the potential to affect significantly the design of. pre-clinical studies and clinical trials as well as strategies for optimal patient dosing in the treatment of numerous diseases. Given the broad cytoprotective properties of the heat shock response, the thioredoxin, Modulation of endogenous cellular defense mechanisms via the stress response signaling represents ad innovative approach to therapeutic intervention in diseases causing chronic damage, such as neurodegeneration and cancer. Protein thiols play a key role in redox sensing, and regulation of cellular redox state is crucial mediator of multiple metabolic, signaling, and transcriptional processes. Maintenance of optimal long-term health conditions is accomplished by a complex network of longevity assurance processes that are controlled by vitagenes, a group of genes involved in preserving cellular homeostasis during stressful conditions. Vitagenes encode for heat shock proteins (Hsp) Hsp32, Hsp70, the thioredoxin, and the sirtuin protein systems. Dietary antioxidants, such as polyphenols and L-carnitine/acetyl-L-carnitine, have recently been demonstrated to be neuroprotective through the activation of hormetic pathways, including vitagenes. The hormetic dose-response, challenges long-standing beliefs about the nature of the dose-response in a low dose zone, having the potential to affect significantly the design of. pre-clinical studies and clinical trials as well as strategies for optimal patient dosing in the treatment of numerous diseases. Given the broad cytoprotective properties of the heat shock response, there is now strong interest in discovering and developing pharmacological agents capable of inducing these responses. In this review we discuss the most current and up-to-date understanding of the possible signaling mechanisms by which acetylcarnitine by activating vitagenes can differentially modulate signal transduction cascades inducing apoptosis/cell death in abnormal cancer cells but at the same time enhancing defensive enzymes to protect against carcinogenesis and neurodegeneration in normal cells, Cytoprotection, Sirtuin, biology.protein, a group of genes involved in preserving cellular homeostasis during stressful conditions. Vitagenes encode for heat shock proteins (Hsp) Hsp32, Molecular Medicine, Thioredoxin, there is now strong interest in discovering and developing pharmacological agents capable of inducing these responses. In this review we discuss the most current and up-to-date understanding of the possible signaling mechanisms by which acetylcarnitine by activating vitagenes can differentially modulate signal transduction cascades inducing apoptosis/cell death in abnormal cancer cells but at the same time enhancing defensive enzymes to protect against carcinogenesis and neurodegeneration in normal cells, signaling, Acetylcarnitine, Energy Metabolism, Molecular Chaperones

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    المصدر: Cell chemical biology, vol 23, iss 7
    Quinti, L; Casale, M; Moniot, S; Pais, TF; Van Kanegan, MJ; Kaltenbach, LS; et al.(2016). SIRT2-and NRF2-Targeting Thiazole-Containing Compound with Therapeutic Activity in Huntington's Disease Models. CELL CHEMICAL BIOLOGY, 23(7), 849-861. doi: 10.1016/j.chembiol.2016.05.015. UC Irvine: Retrieved from: http://www.escholarship.org/uc/item/3bp0f2h0Test

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