Page 20 - Read Online
P. 20

Page 16 of 16                         Nagayama. J Cancer Metastasis Treat 2021;7:6  I  http://dx.doi.org/10.20517/2394-4722.2020.114

               98.  Jin SM, Jang HW, Sohn SY, et al. Role of autophagy in the resistance to tumour necrosis factor-related apoptosis-inducing ligand-induced
                   apoptosis in papillary and anaplastic thyroid cancer cells. Endocrine 2014;45:256-62.
               99.  Nozima BH, Mendes TB, Pereira G, et al. FAM129A regulates autophagy in thyroid carcinomas in an oncogene-dependent manner.
                   Endocr Relat Cancer 2019;26:227-38.
               100. Arakawa S, Tsujioka M, Yoshida T, et al. Role of Atg5-dependent cell death in the embryonic development of Bax/Bak double-knockout
                   mice. Cell Death Differ 2017;24:1598-608.
               101. Fulda S, Kögel D. Cell death by autophagy: emerging molecular mechanisms and implications for cancer therapy. Oncogene
                   2015;34:5105-13.
               102. Maycotte P, Gearheart CM, Barnard R, et al. STAT3-mediated autophagy dependence identifies subtypes of breast cancer where
                   autophagy inhibition can be efficacious. Cancer Res 2014;74:2579-90.
               103. Levy JM, Thompson JC, Griesinger AM, et al. Autophagy inhibition improves chemosensitivity in BRAF(V600E) brain tumors. Cancer
                   Discov 2014;4:773-80.
               104. Xie X, Koh JY, Price S, White E, Mehnert JM. Atg7 overcomes senescence and promotes growth of BrafV600E-driven melanoma.
                   Cancer Discov 2015;5:410-23.
               105. Galluzzi L, Vitale I, Aaronson SA, et al. Molecular mechanisms of cell death: recommendations of the Nomenclature Committee on Cell
                   Death 2018. Cell Death Differ 2018;25:486-541.
               106. Zeybek ND, Gulcelik NE, Kaymaz FF, et al. Rosuvastatin induces apoptosis in cultured human papillary thyroid cancer cells. J
                   Endocrinol 2011;210:105-15.
               107. Pontini L, Marinozzi M. Shedding light on the roles of liver X receptors in cancer by using chemical probes. Br J Pharmacol 2020.
               108. Bauriaud-Mallet M, Vija-Racaru L, Brillouet S, et al. The cholesterol-derived metabolite dendrogenin A functionally reprograms breast
                   adenocarcinoma and undifferentiated thyroid cancer cells. J Steroid Biochem Mol Biol 2019;192:105390.
               109. Tesselaar MH, Crezee T, Swarts HG, Gerrits D, Boerman OC, et al. Digitalis-like compounds facilitate non-medullary thyroid cancer
                   redifferentiation through intracellular Ca2+, FOS, and autophagy-dependent pathways. Mol Cancer Ther 2017;16:169-81.
               110.  Tesselaar MH, Crezee T, Schuurmans I, et al. Digitalislike compounds restore hNIS expression and iodide uptake capacity in anaplastic
                   thyroid cancer. J Nucl Med 2018;59:780-6.
               111.  Schwertheim S, Theurer S, Jastrow H, et al. New insights into intranuclear inclusions in thyroid carcinoma: association with autophagy
                   and with BRAFV600E mutation. PLoS One 2019;14:e0226199.
               112.  Landa I, Pozdeyev N, Korch C, Marlow LA, Smallridge RC, et al. Comprehensive genetic characterization of human thyroid cancer cell
                   lines: a validated panel for preclinical studies. Clin Cancer Res 2019;25:3141-51.
   15   16   17   18   19   20   21   22   23   24   25