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Peroxisome proliferator-activated receptor (PPAR)-beta as a target for wound healing drugs: what is possible?
Nguan Soon Tan1, Liliane Michalik, Beatrice Desvergne
1Unité CIG-Sciences, Centre Intégratif de Génomique, Université de Lausanne, Lausanne, Switzerland.
Abstract:
Peroxisome proliferator-activated receptor (PPAR) dysfunction has been implicated in the manifestation of many diseases and illnesses, ranging from obesity to cancer. Herein, we discuss the role of PPARbeta, one of the three PPAR isotypes, during wound healing. While PPARbeta expression is undetectable in unchallenged and healthy adult interfollicular mouse skin, it is robustly re-activated in stress situations, such as upon phorbol ester treatment, hair plucking and cutaneous wounding. The inflammatory reaction associated with a skin injury activates the keratinocytes at the edges of the wound. This activation involves PPARbeta, whose expression and activity as transcription factor are up-regulated by pro-inflammatory signals. The re-activation of PPARbeta influences three important properties of the activated keratinocytes that are vital for rapid wound closure, namely, survival, migration and differentiation. The anti-apoptotic and, thus, survival role of PPARbeta is mediated by the up-regulation of expression of integrin-linked kinase and 3-phosphoinositide-dependent kinase-1. Both kinases are required for the full activation of the Akt1 survival cascade. Therefore, the up-regulation of PPARbeta, early after injury, appears to be important to maintain a sufficient number of viable keratinocytes at the wound edge. At a later stage of wound repair, the stimulation of keratinocyte migration and differentiation by PPARbeta is also likely to be important for the formation of a new epidermis at the wounded area. Consistent with these observations, the entire wound healing process is delayed in PPARbeta +/- mice and wound closure is retarded by 2-3 days. The multiple roles of PPARbeta in the complex keratinocyte response after injury and during skin repair certainly justify a further exploration of its potential as a target for wound healing drugs.
Insights
Peroxisome proliferator-activated receptor beta (PPARbeta) is reactivated during skin injury, promoting keratinocyte survival, migration, and differentiation crucial for wound healing. PPARbeta deficiency delays skin repair, highlighting its therapeutic potential for wound healing drugs.
Area of Science:
- Dermatology
- Molecular Biology
- Cell Biology
Background:
- Peroxisome proliferator-activated receptor (PPAR) dysfunction is linked to various diseases, including obesity and cancer.
- PPARbeta is one of three PPAR nuclear receptor isotypes.
- PPARbeta is generally undetectable in healthy adult skin but is upregulated during stress and injury.
Purpose of the Study:
- To investigate the role of PPARbeta in skin wound healing.
- To understand how PPARbeta influences keratinocyte behavior during the wound repair process.
Main Methods:
- Studied PPARbeta expression in mouse skin under stress conditions (phorbol ester treatment, hair plucking, wounding).
- Examined the effects of PPARbeta on keratinocyte survival, migration, and differentiation.
- Utilized PPARbeta +/- mice to assess the impact on wound healing and closure time.
Main Results:
- PPARbeta expression is robustly re-activated in response to skin injury and inflammatory signals.
- PPARbeta upregulates keratinocyte survival by activating the Akt1 cascade via integrin-linked kinase and 3-phosphoinositide-dependent kinase-1.
- PPARbeta promotes keratinocyte migration and differentiation, essential for new epidermis formation.
- Wound healing and closure are significantly delayed in PPARbeta +/- mice.
Conclusions:
- PPARbeta plays a critical role in multiple stages of skin wound healing by modulating keratinocyte responses.
- The re-activation of PPARbeta is vital for maintaining keratinocyte viability and facilitating epidermal regeneration.
- PPARbeta represents a promising therapeutic target for developing novel wound healing drugs.
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