Modification of DNA structure by reactive nitrogen species as a result of 2-methoxyestradiol–induced neuronal nitric oxide synthase uncoupling in metastatic osteosarcoma cells - ScienceDirect

Von einem Mystery-Man-Autor
Last updated 29 mai 2024
Modification of DNA structure by reactive nitrogen species as a result of 2-methoxyestradiol–induced  neuronal nitric oxide synthase uncoupling in metastatic osteosarcoma cells  - ScienceDirect
2-methoxyestradiol (2-ME) is a physiological anticancer compound, metabolite of 17β-estradiol. Previously, our group evidenced that from mechanistic p…
Modification of DNA structure by reactive nitrogen species as a result of 2-methoxyestradiol–induced  neuronal nitric oxide synthase uncoupling in metastatic osteosarcoma cells  - ScienceDirect
Regulation of mitochondrial dynamics in 2-methoxyestradiol-mediated osteosarcoma cell death
Modification of DNA structure by reactive nitrogen species as a result of 2-methoxyestradiol–induced  neuronal nitric oxide synthase uncoupling in metastatic osteosarcoma cells  - ScienceDirect
Cancer cells change their glucose metabolism to overcome increased ROS: One step from cancer cell to cancer stem cell? - ScienceDirect
Modification of DNA structure by reactive nitrogen species as a result of 2-methoxyestradiol–induced  neuronal nitric oxide synthase uncoupling in metastatic osteosarcoma cells  - ScienceDirect
Antioxidants, Free Full-Text
Modification of DNA structure by reactive nitrogen species as a result of 2-methoxyestradiol–induced  neuronal nitric oxide synthase uncoupling in metastatic osteosarcoma cells  - ScienceDirect
Statin Treatment Upregulates Vascular Neuronal Nitric Oxide Synthase Through Akt/NF-κB Pathway
Modification of DNA structure by reactive nitrogen species as a result of 2-methoxyestradiol–induced  neuronal nitric oxide synthase uncoupling in metastatic osteosarcoma cells  - ScienceDirect
IJMS, Free Full-Text
Modification of DNA structure by reactive nitrogen species as a result of 2-methoxyestradiol–induced  neuronal nitric oxide synthase uncoupling in metastatic osteosarcoma cells  - ScienceDirect
Mitochondria as a Source of Reactive Oxygen and Nitrogen Species: From Molecular Mechanisms to Human Health
Modification of DNA structure by reactive nitrogen species as a result of 2-methoxyestradiol–induced  neuronal nitric oxide synthase uncoupling in metastatic osteosarcoma cells  - ScienceDirect
PDF) Modification of DNA structure by reactive nitrogen species as a result of 2-methoxyestradiol–induced neuronal nitric oxide synthase uncoupling in metastatic osteosarcoma cells
Modification of DNA structure by reactive nitrogen species as a result of 2-methoxyestradiol–induced  neuronal nitric oxide synthase uncoupling in metastatic osteosarcoma cells  - ScienceDirect
Modification of DNA structure by reactive nitrogen species as a result of 2- methoxyestradiol–induced neuronal nitric oxide synthase uncoupling in metastatic osteosarcoma cells - ScienceDirect
Modification of DNA structure by reactive nitrogen species as a result of 2-methoxyestradiol–induced  neuronal nitric oxide synthase uncoupling in metastatic osteosarcoma cells  - ScienceDirect
Modification of DNA structure by reactive nitrogen species as a result of 2- methoxyestradiol–induced neuronal nitric oxide synthase uncoupling in metastatic osteosarcoma cells - ScienceDirect
Modification of DNA structure by reactive nitrogen species as a result of 2-methoxyestradiol–induced  neuronal nitric oxide synthase uncoupling in metastatic osteosarcoma cells  - ScienceDirect
Frontiers Cross-talk of nitric oxide and reactive oxygen species in plant programed cell death

© 2014-2024 fenasera.org.br. Inc. or its affiliates.