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Anakoinosis: Correcting Aberrant Homeostasis of Cancer Tissue-Going Beyond Apoptosis Induction
Daniel Heudobler1, Florian Lüke1, Martin Vogelhuber1
1Department of Internal Medicine III, Hematology and Oncology, University Hospital Regensburg, Regensburg, Germany.
Abstract:
The current approach to systemic therapy for metastatic cancer is aimed predominantly at inducing apoptosis of cancer cells by blocking tumor-promoting signaling pathways or by eradicating cell compartments within the tumor. In contrast, a systems view of therapy primarily considers the communication protocols that exist at multiple levels within the tumor complex, and the role of key regulators of such systems. Such regulators may have far-reaching influence on tumor response to therapy and therefore patient survival. This implies that neoplasia may be considered as a cell non-autonomous disease. The multi-scale activity ranges from intra-tumor cell compartments, to the tumor, to the tumor-harboring organ to the organism. In contrast to molecularly targeted therapies, a systems approach that identifies the complex communications networks driving tumor growth offers the prospect of disrupting or "normalizing" such aberrant communicative behaviors and therefore attenuating tumor growth. Communicative reprogramming, a treatment strategy referred to as anakoinosis, requires novel therapeutic instruments, so-called master modifiers to deliver concerted tumor growth-attenuating action. The diversity of biological outcomes following pro-anakoinotic tumor therapy, such as differentiation, trans-differentiation, control of tumor-associated inflammation, etc. demonstrates that long-term tumor control may occur in multiple forms, inducing even continuous complete remission. Accordingly, pro-anakoinotic therapies dramatically extend the repertoire for achieving tumor control and may activate apoptosis pathways for controlling resistant metastatic tumor disease and hematologic neoplasia.
Insights
A systems view of cancer therapy, termed anakoinosis, focuses on normalizing tumor communication networks rather than solely targeting cancer cells. This approach offers diverse, long-term tumor control strategies, including remission, for metastatic and hematologic cancers.
Area of Science:
- Oncology
- Systems Biology
- Cancer Therapeutics
Background:
- Current cancer therapies primarily induce apoptosis or eradicate tumor cells.
- A systems biology approach views tumors as complex communication systems.
- Neoplasia can be considered a non-autonomous disease influenced by multi-scale interactions.
Purpose of the Study:
- To explore a systems-based therapeutic strategy for cancer.
- To introduce the concept of anakoinosis (communicative reprogramming) for tumor control.
- To highlight the potential of novel therapeutic instruments ('master modifiers') in cancer treatment.
Main Methods:
- Viewing tumors as complex communication networks across multiple biological scales.
- Identifying key regulators of tumor communication systems.
- Developing novel therapeutic instruments ('master modifiers') for pro-anakoinotic therapy.
Main Results:
- A systems approach offers disruption or normalization of aberrant tumor communication.
- Pro-anakoinotic therapies can lead to diverse outcomes like differentiation and reduced inflammation.
- Long-term tumor control, including continuous complete remission, is achievable through this strategy.
Conclusions:
- Anakoinosis represents a paradigm shift from traditional cancer therapy.
- This approach broadens the therapeutic repertoire for managing metastatic and hematologic cancers.
- Pro-anakoinotic therapies can synergize with apoptosis pathways to overcome treatment resistance.
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