Oxidative Stress-Related Mechanisms That Mediate Chemoresistance in Cancer Stem Cells
Author:
Publisher
Springer Nature Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-16-5422-0_101
Reference74 articles.
1. Artero-Castro A, Perez-Alea M, Feliciano A et al (2015) Disruption of the ribosomal P complex leads to stress-induced autophagy. Autophagy 11:1499–1519
2. Bi J, Chowdhry S, Wu S, Zhang W, Masui K, Mischel PS (2020) Altered cellular metabolism in gliomas - an emerging landscape of actionable co-dependency targets. Nat Rev Cancer 20:57–70
3. Bodet L, Menoret E, Descamps G et al (2010) BH3-only protein Bik is involved in both apoptosis induction and sensitivity to oxidative stress in multiple myeloma. Br J Cancer 103:1808–1814
4. Briehl MM, Tome ME, Wilkinson ST, Jaramillo MC, Lee K (2014) Mitochondria and redox homoeostasis as chemotherapeutic targets. Biochem Soc Trans 42:939–944
5. Brown CO, Salem K, Wagner BA et al (2012) Interleukin-6 counteracts therapy-induced cellular oxidative stress in multiple myeloma by up-regulating manganese superoxide dismutase. Biochem J 444:515–527
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