Ostrom, Q. T. et al. CBTRUS statistical report: major mind and different central nervous system tumors identified in the USA in 2013–2017. Neuro Oncol. 22, iv1–iv96 (2020).
Stupp, R. et al. Impact of tumor-treating fields plus upkeep temozolomide vs upkeep temozolomide alone on survival in sufferers with glioblastoma: a randomized scientific trial. JAMA 318, 2306–2316 (2017).
Kok, H. P. et al. Heating know-how for malignant tumors: a evaluate. Int. J. Hyperth. 37, 711–741 (2020).
Bastiancich, C., Da Silva, A. & Esteve, M. A. Photothermal remedy for the therapy of glioblastoma: potential and preclinical challenges. Entrance. Oncol. 10, 610356 (2020).
Pinto, A. & Pocard, M. Photodynamic remedy and photothermal remedy for the therapy of peritoneal metastasis: a scientific evaluate. Pleura Peritoneum 3, 20180124 (2018).
Wei, Q. et al. Intraoperative evaluation and photothermal ablation of the tumor margins utilizing gold nanoparticles. Adv. Sci. 8, 2002788 (2021).
Pinel, S., Thomas, N., Boura, C. & Barberi-Heyob, M. Approaches to bodily stimulation of metallic nanoparticles for glioblastoma therapy. Adv. Drug Deliv. Rev. 138, 344–357 (2019).
Vines, J. B., Yoon, J. H., Ryu, N. E., Lim, D. J. & Park, H. Gold nanoparticles for photothermal most cancers remedy. Entrance. Chem. 7, 167 (2019).
Chatterjee, H., Rahman, D. S., Sengupta, M. & Ghosh, S. Ok. Gold nanostars in plasmonic photothermal remedy: the position of tip heads within the thermoplasmonic panorama. J. Phys. Chem. C 122, 13082–13094 (2018).
Vo-Dinh, T. et al. Shining gold nanostars: from most cancers diagnostics to photothermal therapy and immunotherapy. J. Immunol. Sci. 2, 1–8 (2018).
Arami, H. et al. Nanomedicine for spontaneous mind tumors: a companion scientific trial. ACS Nano 13, 2858–2869 (2019).
Kim, T. I. et al. Injectable, cellular-scale optoelectronics with functions for wi-fi optogenetics. Science 340, 211–216 (2013).
Montgomery, Ok. L. et al. Wirelessly powered, totally inner optogenetics for mind, spinal and peripheral circuits in mice. Nat. Strategies 12, 969–974 (2015).
Park, S. I. et al. Gentle, stretchable, totally implantable miniaturized optoelectronic methods for wi-fi optogenetics. Nat. Biotechnol. 33, 1280–1286 (2015).
Kang, S. Ok. et al. Bioresorbable silicon digital sensors for the mind. Nature 530, 71–76 (2016).
Chung, H. U. et al. Binodal, wi-fi epidermal digital methods with in-sensor analytics for neonatal intensive care. Science 363, eaau0780 (2019).
Lee, Y. & Kim, D. H. Wi-fi metronomic photodynamic remedy. Nat. Biomed. Eng. 3, 5–6 (2019).
Yamagishi, Ok. et al. Tissue-adhesive wirelessly powered optoelectronic machine for metronomic photodynamic most cancers remedy. Nat. Biomed. Eng. 3, 27–36 (2019).
Agrawal, D. R. et al. Conformal phased surfaces for wi-fi powering of bioelectronic microdevices. Nat. Biomed. Eng. 1, 0043 (2017).
Bansal, A., Yang, F., Xi, T., Zhang, Y. & Ho, J. S. In vivo wi-fi photonic photodynamic remedy. Proc. Natl Acad. Sci. USA 115, 1469–1474 (2018).
Ho, J. S. et al. Self-tracking vitality switch for neural stimulation in untethered mice. Phys. Rev. Appl. 4, 024001 (2015).
Wang, M., Kim, M., Xia, F. & Xu, C. Impression of the emission wavelengths on in vivo multiphoton imaging of mouse brains. Biomed. Decide. Specific 10, 1905–1918 (2019).
Stujenske, J. M., Spellman, T. & Gordon, J. A. Modeling the spatiotemporal dynamics of sunshine and warmth propagation for in vivo optogenetics. Cell Rep. 12, 525–534 (2015).
Lee, P. M., Tian, X. & Ho, J. S. Wi-fi energy switch for glioblastoma photodynamic remedy. In 2019 IEEE Biomedical Circuits and Methods Convention (BioCAS) 1–4 (IEEE, 2019).
US Federal Communications Fee. 47 CFR 1.1310, Radiofrequency radiation publicity limits (Federal Communications Fee, Washington, DC, 2011).
Ash, C., Dubec, M., Donne, Ok. & Bashford, T. Impact of wavelength and beam width on penetration in light-tissue interplay utilizing computational strategies. Lasers Med. Sci. 32, 1909–1918 (2017).
Gutruf, P. et al. Wi-fi, battery-free, totally implantable multimodal and multisite pacemakers for functions in small animal fashions. Nat. Commun. 10, 5742 (2019).
Shin, G. et al. Versatile near-field wi-fi optoelectronics as subdermal implants for broad functions in optogenetics. Neuron 93, 509–521.e3 (2017).
Kim, A. et al. An implantable ultrasonically-powered micro-light-source (µLight) for photodynamic remedy. Sci. Rep. 9, 1395 (2019).
Tajima, Ok. et al. Wi-fi optogenetics protects towards weight problems through stimulation of non-canonical fats thermogenesis. Nat. Commun. 11, 1730 (2020).
Holland, J. M., Mitchell, T. J., Gipson, L. C. & Whitaker, M. S. Survival and explanation for dying in ageing germfree athymic nude and regular inbred C3Hf/He mice. J. Natl Most cancers Inst. 61, 1357–1361 (1978).
Simpson, J. R. et al. Affect of location and extent of surgical resection on survival of sufferers with glioblastoma multiforme: outcomes of three consecutive Radiation Remedy Oncology Group (RTOG) scientific trials. Int. J. Radiat. Oncol. Biol. Phys. 26, 239–244 (1993).
Hettie, Ok. S., Teraphongphom, N. T., Ertsey, R. D., Rosenthal, E. L. & Chin, F. T. Focusing on intracranial patient-derived glioblastoma (GBM) with a NIR-I fluorescent immunoconjugate for facilitating its image-guided resection. RSC Adv. 10, 42413–42422 (2020).
Chang, E. et al. AshwaMAX and Withaferin A inhibits gliomas in mobile and murine orthotopic fashions. J. Neurooncol. 126, 253–264 (2016).
Gained, S. M., Music, E., Reeder, J. T. & Rogers, J. A. Rising modalities and implantable applied sciences for neuromodulation. Cell 181, 115–135 (2020).
Kim, J., Campbell, A. S., de Avila, B. E. & Wang, J. Wearable biosensors for healthcare monitoring. Nat. Biotechnol. 37, 389–406 (2019).
Yang, J. C. et al. Digital pores and skin: latest progress and future prospects for skin-attachable gadgets for well being monitoring, robotics, and prosthetics. Adv. Mater. 31, e1904765 (2019).
Pucci, C., Martinelli, C. & Ciofani, G. Revolutionary approaches for most cancers therapy: present views and new challenges. Ecancermedicalscience 13, 961 (2019).
Murty, S. et al. Intravital imaging reveals synergistic impact of CAR T-cells and radiation remedy in a preclinical immunocompetent glioblastoma mannequin. OncoImmunology 9, 1757360 (2020).
Tavares, A. J. et al. Impact of eradicating Kupffer cells on nanoparticle tumor supply. Proc. Natl Acad. Sci. USA 114, E10871–E10880 (2017).