Hanne Verswyvel

Chapter 4 │ Page 154 74. Gross, C., et al., Heat shock protein 70-reactivity is associated with increased cell surface density of CD94/CD56 on primary natural killer cells. Cell stress & chaperones, 2003. 8(4): p. 348. 75. Yazdi, M., et al., Crosstalk Between NK Cell Receptors and Tumor Membrane Hsp70 - Derived Peptide: A Combined Computational and Experimental Study. Advanced Science, 2024. 11(14): p. 2305998. 76. Kim, S.-Y., et al., Non-thermal plasma induces AKT degradation through turn-on the MUL1 E3 ligase in head and neck cancer. Oncotarget, 2015. 6(32): p. 33382. 77. Gioanni, J., et al., Two new human tumor cell lines derived from squamous cell carcinomas of the tongue: establishment, characterization and response to cytotoxic treatment. Eur J Cancer Clin Oncol, 1988. 24(9): p. 1445-55. 78. Zhao, M., et al., Assembly and initial characterization of a panel of 85 genomically validated cell lines from diverse head and neck tumor sites. Clin Cancer Res, 2011. 17(23): p. 7248-64. 79. Xavier, F.C.A., et al., Mechanisms of immune evasion by head and neck cancer stem cells. Front Oral Health, 2022. 3: p. 957310. 80. Horton, J.D., et al., Immune Evasion by Head and Neck Cancer: Foundations for Combination Therapy. Trends Cancer, 2019. 5(4): p. 208-232.

RkJQdWJsaXNoZXIy MTk4NDMw