Schneider Matthias, Potthoff Anna-Laura, Karpel-Massler Georg, Schuss Patrick, Siegelin Markus D, Debatin Klaus-Michael, Duffau Hugues, Vatter Hartmut, Herrlinger Ulrich, Westhoff Mike-Andrew
Department of Neurosurgery, University Hospital Bonn, Germany.
Brain Tumour Translational Research Group, University Hospital Bonn, Germany.
Mol Oncol. 2024 Dec;18(12):2890-2905. doi: 10.1002/1878-0261.13642. Epub 2024 Apr 3.
In recent years, the discovery of functional and communicative cellular tumour networks has led to a new understanding of malignant primary brain tumours. In this review, the authors shed light on the diverse nature of cell-to-cell connections in brain tumours and propose an innovative treatment approach to address the detrimental connectivity of these networks. The proposed therapeutic outlook revolves around three main strategies: (a) supramarginal resection removing a substantial portion of the communicating tumour cell front far beyond the gadolinium-enhancing tumour mass, (b) morphological isolation at the single cell level disrupting structural cell-to-cell contacts facilitated by elongated cellular membrane protrusions known as tumour microtubes (TMs), and (c) functional isolation at the single cell level blocking TM-mediated intercellular cytosolic exchange and inhibiting neuronal excitatory input into the malignant network. We draw an analogy between the proposed therapeutic outlook and the Alcatraz Federal Penitentiary, where inmates faced an impassable sea barrier and experienced both spatial and functional isolation within individual cells. Based on current translational efforts and ongoing clinical trials, we propose the Alcatraz-Strategy as a promising framework to tackle the harmful effects of cellular brain tumour networks.
近年来,功能性和通信性细胞肿瘤网络的发现使人们对恶性原发性脑肿瘤有了新的认识。在这篇综述中,作者揭示了脑肿瘤中细胞间连接的多样性,并提出了一种创新的治疗方法,以解决这些网络的有害连接性问题。所提出的治疗前景围绕三个主要策略展开:(a)超边缘切除,切除大量超出钆增强肿瘤肿块的通信肿瘤细胞前沿部分;(b)单细胞水平的形态学隔离,破坏由称为肿瘤微管(TMs)的细长细胞膜突起促进的细胞间结构接触;(c)单细胞水平的功能隔离,阻断TM介导的细胞间胞质交换,并抑制神经元对恶性网络的兴奋性输入。我们将所提出的治疗前景与恶魔岛联邦监狱进行类比,在那里,囚犯面临着无法逾越的海障,并且在单个牢房内经历了空间和功能上的隔离。基于目前的转化研究努力和正在进行的临床试验,我们提出“恶魔岛策略”作为一个有前景的框架,以应对细胞性脑肿瘤网络的有害影响。