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Radiation Treatment of Organotypic Cultures from Submandibular and Parotid Salivary Glands Models Key In Vivo Characteristics
Published on: May 17, 2019
Rescue of non-healing, degenerative salivary glands by cholinergic-calcium signaling
Jianlong Li1,2, Bo Sun3,2, Li Xuan Tan4,2
1Department of Cell and Tissue Biology, School of Dentistry, University of California San Francisco, San Francisco, California, USA; School of Health and Life Sciences, University of Health and Rehabilitation Sciences, Qingdao, China.
Abstract:
Chronic degenerative wounds are often deemed irreparable, directing research efforts to focus predominantly on acute tissue injury regeneration while leaving endogenous repair mechanisms for chronically damaged tissues largely unexplored. In this study, we demonstrate that non-healing, severely degenerated salivary gland tissues can be fundamentally restored through first-line treatment with muscarinic agonists. This approach rescues tissue structure and function, returning it to a homeostatic-like state, and reactivates endogenous regeneration processes to drive new cell expansion that persists for months post-treatment. Furthermore, neuromimetic activation profoundly depletes radiation-induced DNA damage and re-establishes the nerve-acinar relationship, ultimately restoring the tissues physiological capacity to maintain homeostasis, even in the absence of treatment. We show that full recovery of organ function, comparable to uninjured controls, is primarily mediated by the re-differentiation of aberrantly de-differentiated epithelial acinar cells and the restoration of mitochondrial function via a muscarinic-calcium signaling pathway. These findings challenge the prevailing notion that chronic organ degeneration is irreversible and propose a readily testable therapeutic strategy for epithelial restoration with potential applications across a spectrum of chronic injuries.
Insights
This study shows that muscarinic agonists can restore degenerated salivary glands, reactivating natural repair processes and reversing chronic tissue damage. This offers a new therapeutic strategy for epithelial restoration in various chronic injuries.
Area of Science:
- Regenerative Medicine
- Tissue Engineering
- Physiology
Background:
- Chronic degenerative wounds are often considered irreparable, limiting research on endogenous repair mechanisms.
- Existing research primarily focuses on acute tissue injury regeneration.
Purpose of the Study:
- To investigate the potential of muscarinic agonists in restoring degenerated salivary gland tissues.
- To explore endogenous regeneration processes in chronically damaged organs.
Main Methods:
- Treatment of non-healing salivary gland tissues with muscarinic agonists.
- Assessment of tissue structure, function, and cellular regeneration.
- Analysis of DNA damage, nerve-acinar relationships, and mitochondrial function.
Main Results:
- Muscarinic agonist treatment fundamentally restored tissue structure and function, inducing a homeostatic-like state.
- Endogenous regeneration processes were reactivated, leading to persistent cell expansion.
- Radiation-induced DNA damage was depleted, and the nerve-acinar relationship was re-established.
Conclusions:
- Chronic organ degeneration may be reversible, challenging current therapeutic paradigms.
- Muscarinic agonists offer a readily testable strategy for epithelial restoration.
- Restoration is mediated by epithelial cell re-differentiation and mitochondrial function via muscarinic-calcium signaling.
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