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Published on: April 11, 2025
A possible primary cause of cancer: deficient cellular interactions in endocrine pancreas
1mauisrael@wanadoo.fr
Background:
Cancer is a devastating type of disease. New and innovative ways to tackle cancers that have so far proved refractive to conventional therapies is urgently needed. It is becoming increasingly clear that, in addition to conventional therapeutics targeting by small molecules, that tumor cell metabolism presents new opportunities to target selectively specific cancer cell populations. Metabolic defects in cancer cells can be manifested in many ways that might not be readily apparent, such as altering epigenetic gene regulation for example. The complex rewiring of metabolic pathways gives tumor cells a special advantage over differentiated cells, since they deplete body stores as fuel for their growth and proliferation. Tumor metabolism looks simpler when we consider that some enzymatic switches are in a neoglucogenic direction thereby depleting body stores. However, these pathways may be inadequately switched on by catabolic hormones (glucagon, epinephrine and cortisol) in a specific situation where anabolism is activated by, for example insulin released from beta pancreatic cells or IGF, inducing mitosis and synthesis that are powered by glucose catabolism. Such a hybrid metabolic situation would be reached if a pancreatic beta cell mechanism, mediated by GABA, failed to silence neighboring alpha cells and delta cells. The inhibitory transmitter GABA hyperpolarizes alpha and delta cells via their GABA A receptors, and blocks the release of glucagon and somatostatin. Alternatively, an anomaly of alpha cell channels, would lead to a similar situation. Whatever is the alteration, anabolism fails to silence catabolism and enzymatic switches controlled by kinases and phosphatases adopt an inadequate direction, leading to a hybrid metabolic rewiring found in cancer. It is daring to formulate such a hypothesis as this. However, it is quite possible that the starting point in cancer is an alteration of the endocrine pancreas, suppressing the mechanism by which beta cells silence the neighboring alpha and delta cells, with GABA and Zn2+.
Insights
Cancer cells exploit metabolic pathways for growth, creating a hybrid metabolic state. This study hypothesizes that a failure in pancreatic beta cells to regulate neighboring cells, mediated by GABA, may initiate this metabolic rewiring in cancer.
Area of Science:
- Oncology
- Metabolic Regulation
- Endocrinology
Background:
- Cancer presents a significant therapeutic challenge, especially for treatment-resistant types.
- Targeting tumor cell metabolism offers novel strategies beyond conventional small molecule therapies.
- Metabolic reprogramming in cancer cells provides a growth advantage, often linked to epigenetic alterations.
Purpose of the Study:
- To investigate the hypothesis that alterations in the endocrine pancreas contribute to cancer development.
- To explore the role of pancreatic beta cell dysfunction in metabolic rewiring characteristic of cancer.
- To understand how the failure of GABA-mediated signaling in the pancreas could lead to a pro-cancer metabolic state.
Main Methods:
- Analysis of metabolic pathways in cancer cells.
- Investigation of hormonal signaling in the pancreas, focusing on GABAergic mechanisms.
- Exploration of the interplay between anabolism and catabolism regulated by pancreatic hormones.
- Examination of potential defects in GABA A receptors or alpha cell channels.
Main Results:
- Tumor cells exhibit complex metabolic rewiring, favoring pathways that support rapid proliferation.
- A proposed hybrid metabolic state arises when anabolic signals (insulin, IGF) are not adequately counterbalanced by catabolic signals (glucagon, somatostatin).
- Dysfunctional GABAergic signaling from pancreatic beta cells may fail to inhibit alpha and delta cells, leading to uncontrolled catabolism.
Conclusions:
- A failure in the pancreatic beta cell mechanism to silence alpha and delta cells via GABA may be an initiating event in cancer.
- This pancreatic endocrine dysfunction could lead to a hybrid metabolic rewiring, promoting tumor growth.
- Targeting these metabolic and endocrine dysregulations presents a promising avenue for novel cancer therapies.
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