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Published on: February 24, 2021
The Alcatraz-Strategy: a roadmap to break the connectivity barrier in malignant brain tumours
Matthias Schneider1,2, Anna-Laura Potthoff1,2, Georg Karpel-Massler3
1Department of Neurosurgery, University Hospital Bonn, Germany.
Abstract:
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.
Insights
This review explores brain tumour cell networks and proposes the Alcatraz-Strategy. This approach aims to disrupt tumour connectivity through resection, morphological, and functional isolation for innovative cancer treatment.
Area of Science:
- Neuro-oncology
- Cancer Biology
- Cellular Networks
Background:
- Malignant primary brain tumours exhibit complex functional and communicative cellular networks.
- Understanding cell-to-cell connections is crucial for developing effective treatments.
Purpose of the Study:
- To review the diverse nature of cell-to-cell connections in brain tumours.
- To propose an innovative therapeutic strategy targeting these detrimental networks.
Main Methods:
- Supramarginal resection beyond the enhancing tumour mass.
- Morphological isolation to disrupt tumour microtubes (TMs) and cell-to-cell contacts.
- Functional isolation to block intercellular cytosolic exchange and neuronal input.
Main Results:
- The proposed 'Alcatraz-Strategy' integrates resection and isolation techniques.
- This strategy aims to dismantle the communicative infrastructure of brain tumour networks.
- Analogy to Alcatraz highlights spatial and functional isolation principles.
Conclusions:
- The Alcatraz-Strategy offers a novel framework for treating brain tumours.
- This approach addresses the harmful effects of cellular brain tumour networks.
- Ongoing translational efforts and clinical trials support its potential efficacy.

