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1.
Skin Health Dis ; 1(2): e22, 2021 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-35664983

RESUMEN

Background: Retinoid-based therapies are commonly used in the treatment of disorders of keratinization and other skin disorders but can result in non-specific effects and adverse reactions. Use of retinoic acid metabolism blocking agents (RAMBAs) such as DX308 may address these shortcomings. Objectives: Characterize the therapeutic potential of recently discovered, CYP26-selective RAMBA, DX308. Materials and Methods: Preliminary in vitro assessment of potential off-target activity, metabolic and toxicologic profiling. Studies to assess safety and efficacy of topical treatment in correcting abnormal skin morphology in rhino mice. Extensive gene expression profiling by RNA sequencing and qPCR in 3D epidermis grown with keratinocytes (KCs) from keratinization disorders and healthy controls, to investigate modulation of retinoid biopathways. Results: In vitro, DX308 does not interact with off-target nuclear receptors or CYP450s, is not genotoxic, and is stable in skin, despite vigorous hepatic metabolism. In vivo, topical DX308 induces comedolysis and epidermal thickening without apparent adverse effects. Gene expression profiling shows potent modulation of retinoid-responsive genes by DX308 in both healthy and keratinization disorder KCs. Pathway analysis suggests DX308 may inhibit inflammatory and immune responses in KCs. Conclusions: These preliminary studies suggest that DX308 is an efficacious topical therapeutic with a favourable metabolic and safety profiles. DX308 may present an improved therapeutic alternative for the treatment of keratinization disorders and other retinoid-responsive skin ailments.

2.
Br J Dermatol ; 179(4): 906-917, 2018 10.
Artículo en Inglés | MEDLINE | ID: mdl-29663317

RESUMEN

BACKGROUND: Possible outcomes of acne lesions are atrophic scars, which may cause serious psychological distress. Current treatments for postacne scarring often require invasive procedures. Pathophysiological studies on acne scarring have only investigated the first week of papule life. OBJECTIVES: To study the pathophysiology of atrophic scar formation to identify molecular and cellular pathways that can lead to new therapies for the prevention of acne scarring. METHODS: Large-scale gene expression profiling and immunohistochemistry analysis were performed on uninvolved skin and papules in both scar-prone (SP) and non-scar-prone (NSP) patients with acne, at different time points. RESULTS: Gene expression and immunohistochemistry analyses showed a very similar immune response in 48-h-old papules in SP and NSP populations, characterized by elevated numbers of T cells, neutrophils and macrophages. However, the immune response only persisted in SP patients in 3-week-old papules, and was characterized by an important B-cell infiltrate. Transient downmodulation of sebaceous gland markers related to lipid metabolism was observed in 48-h-old papules in NSP patients, followed by normalization after 3 weeks. In contrast, in SP patients a drastic reduction of these markers persisted in 3-week-old papules, suggesting an irreversible destruction of sebaceous gland structures after inflammatory remodelling in SP patients with acne. CONCLUSIONS: Long-lived acne papules are characterized by a B-cell infiltrate. A relationship exists between the duration and severity of inflammation and the alteration of sebaceous gland structures, leading to atrophic scar formation in acne.


Asunto(s)
Acné Vulgar/complicaciones , Cicatriz/inmunología , Células Plasmáticas/inmunología , Glándulas Sebáceas/patología , Atrofia/etiología , Atrofia/inmunología , Biopsia , Cicatriz/etiología , Cicatriz/patología , Epidermis/inmunología , Epidermis/patología , Perfilación de la Expresión Génica , Humanos , Glándulas Sebáceas/citología , Glándulas Sebáceas/inmunología
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