Department of Neurosurgery, Brigham and Women's Hospital, Harvard Medical School, Boston, MA, USA.
David H. Koch Institute for Integrative Cancer Research, Massachusetts Institute of Technology, Cambridge, MA, USA.
Sci Rep. 2023 Jan 30;13(1):1636. doi: 10.1038/s41598-023-28769-9.
Increasing the intensity of tumor treating fields (TTF) within a tumor bed improves clinical efficacy, but reaching sufficiently high field intensities to achieve growth arrest remains challenging due in part to the insulating nature of the cranium. Using MRI-derived finite element models (FEMs) and simulations, we optimized an exhaustive set of intracranial electrode locations to obtain maximum TTF intensities in three clinically challenging high-grade glioma (HGG) cases (i.e., thalamic, left temporal, brainstem). Electric field strengths were converted into therapeutic enhancement ratios (TER) to evaluate the predicted impact of stimulation on tumor growth. Concurrently, conventional transcranial configurations were simulated/optimized for comparison. Optimized intracranial TTF were able to achieve field strengths that have previously been shown capable of inducing complete growth arrest, in 98-100% of the tumor volumes using only 0.54-0.64 A current. The reconceptualization of TTF as a targeted, intracranial therapy has the potential to provide a meaningful survival benefit to patients with HGG and other brain tumors, including those in surgically challenging, deep, or anatomically eloquent locations which may preclude surgical resection. Accordingly, such an approach may ultimately represent a paradigm shift in the use of TTFs for the treatment of brain cancer.
增加肿瘤床内肿瘤治疗场(TTF)的强度可以提高临床疗效,但由于颅骨的绝缘性质,要达到足以使肿瘤生长停止的足够高的场强仍然具有挑战性。我们使用 MRI 衍生的有限元模型(FEM)和模拟,优化了一组详尽的颅内电极位置,以在三个临床挑战性的高级别胶质瘤(HGG)病例(即丘脑、左颞叶、脑干)中获得最大 TTF 强度。将电场强度转换为治疗增强比(TER),以评估刺激对肿瘤生长的预测影响。同时,模拟/优化了常规的经颅配置进行比较。优化的颅内 TTF 能够达到以前已经证明能够诱导完全生长停止的场强,在使用 0.54-0.64 A 电流时,98-100%的肿瘤体积都能达到这一强度。将 TTF 重新概念化为一种靶向的、颅内治疗方法,有可能为 HGG 和其他脑肿瘤患者提供有意义的生存获益,包括那些在手术挑战性强、深部或解剖上重要的位置的患者,这些位置可能需要手术切除。因此,这种方法最终可能代表了 TTF 在治疗脑癌中的使用的范式转变。