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Sulfur mustard single-dose exposure triggers senescence in primary human dermal fibroblasts
Gabriele Horn1, Catherine Schäfers1, Horst Thiermann1
1Bundeswehr Institute of Pharmacology and Toxicology, Neuherbergstraße 11, 80937, Munich, Germany.
Abstract:
Chronic wounds, skin blisters, and ulcers are the result of skin exposure to the alkylating agent sulfur mustard (SM). One potential pathomechanism is senescence, which causes permanent growth arrest with a pro-inflammatory environment and may be associated with a chronic wound healing disorder. SM is known to induce chronic senescence in human mesenchymal stem cells which are subsequently unable to fulfill their regenerative function in the wound healing process. As dermal fibroblasts are crucial for cutaneous wound healing by being responsible for granulation tissue formation and synthesis of the extracellular matrix, SM exposure might also impair their function in a similar way. This study, therefore, investigated the SM sensitivity of primary human dermal fibroblasts (HDF) by determining the dose-response curve. Non-lethal concentrations LC1 (3 µM) to LC25 (65 µM) were used to examine the induction of senescence. HDF were exposed once to 3 µM, 13 µM, 24 µM, 40 µM or 65 μM SM, and were then cultured for 31 days. Changes in morphology as well as at the genetic and protein level were investigated. For the first time, HDF were shown to undergo senescence in a time- and concentration-dependent manner after SM exposure. They developed a characteristic senescence phenotype and expressed various senescence markers. Proinflammatory cytokines and chemokines were significantly altered in SM-exposed HDF as part of a senescence-associated secretory phenotype. The senescent fibroblasts can thus be considered a contributor to the SM-induced chronic wound healing disorder and might serve as a new therapeutic target in the future.
Insights
Sulfur mustard (SM) exposure causes chronic wounds by inducing senescence in human dermal fibroblasts (HDF). These senescent HDF contribute to impaired wound healing and may offer new therapeutic targets.
Area of Science:
- Dermatology
- Toxicology
- Cell Biology
Background:
- Chronic wounds, blisters, and ulcers result from sulfur mustard (SM) exposure.
- Cellular senescence, a state of permanent growth arrest, is implicated in chronic wound healing disorders.
- Mesenchymal stem cells exposed to SM exhibit chronic senescence, hindering regenerative functions.
Purpose of the Study:
- To investigate the sensitivity of primary human dermal fibroblasts (HDF) to SM.
- To determine if SM exposure induces senescence in HDF.
- To explore the potential role of SM-induced senescent HDF in chronic wound healing.
Main Methods:
- Primary human dermal fibroblasts (HDF) were exposed to a range of non-lethal SM concentrations (3–65 µM).
- Morphological, genetic, and protein level changes were analyzed over 31 days.
- Senescence markers and the senescence-associated secretory phenotype (SASP) were assessed.
Main Results:
- HDF demonstrated time- and concentration-dependent senescence following SM exposure.
- A characteristic senescence phenotype and expression of senescence markers were observed.
- SM-exposed HDF exhibited altered levels of proinflammatory cytokines and chemokines (SASP).
Conclusions:
- SM exposure induces senescence in HDF, contributing to chronic wound healing disorders.
- Senescent HDF play a role in the pathomechanisms of SM-induced skin damage.
- Targeting SM-induced senescent fibroblasts presents a potential future therapeutic strategy.
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