Truzzi Francesca, Tibaldi Camilla, Dilloo Silvia, Saltari Annalisa, Levesque Mitchell P, Arcangeli Fabio, Garzi Alfredo, Ruggiero Giuseppe, Dinelli Giovanni
Department of Agricultural and Food Sciences, Alma Mater Studiorum-University of Bologna, 40127 Bologna, Italy.
Department of Dermatology, University of Zurich Hospital, 8091 Zurich, Switzerland.
Pharmaceutics. 2025 Apr 4;17(4):472. doi: 10.3390/pharmaceutics17040472.
: There is a great demand for novel, multipurpose, natural skin-care products in the global skin repair and sun protection markets. Within this framework, the potential benefits of topical Vitamin D2 (VD2) administration in combination with silver nanoparticles (AgNPs) were examined. : Evaluating the efficacy of the VD2+AgNP cream in wound healing, skin irritation and UVB irradiation protection necessitated preclinical testing using reconstructed human skin equivalent models (prepared from human foreskins) containing both a fully stratified epidermal layer and underlying dermis. : Application of the cream significantly improved wound healing by stimulating keratinocyte re-epithelialization and dermal fibroblast migration in models subjected to full-thickness (scratch and biopsy punch) wounds, compared to untreated models. The VD2+AgNP cream, administered prior to the induction of skin irritation by 5% sodium dodecyl sulfate (SDS) afforded protection by ameliorating cell viability epidermal thickness and interleukin-1alpha levels. UVB exposure (50 mJ/cm) significantly reduced cell viability and epidermal thickness (associated with increased epidermal breakage), as well as basal layer Ki67 and supra-basal layer involucrin expression, compared to the CTRL sham-irradiated models. The cream administered prior to UVB irradiation (protective capacity) showed greater efficacy in minimizing epidermal damage. This was reflected by significantly higher Ki67 and involucrin expression, as well as lower epidermal breakage, compared to models where the cream was applied following UVB irradiation (curative capacity). : The VD2+AgNP cream shows multipurpose potential in skin protection. The underlying molecular mechanisms remain to be investigated.
全球皮肤修复和防晒市场对新型、多功能的天然护肤品有巨大需求。在此框架下,研究了局部应用维生素D2(VD2)与银纳米颗粒(AgNP)联合使用的潜在益处。:评估VD2+AgNP乳膏在伤口愈合、皮肤刺激和紫外线B(UVB)辐射防护方面的功效,需要使用包含完全分层的表皮层和下层真皮的重建人皮肤等效模型(由人包皮制备)进行临床前测试。:与未处理的模型相比,在全层(划痕和活检打孔)伤口模型中,涂抹该乳膏通过刺激角质形成细胞重新上皮化和真皮成纤维细胞迁移,显著改善了伤口愈合。在5%十二烷基硫酸钠(SDS)诱导皮肤刺激之前涂抹VD2+AgNP乳膏,通过改善细胞活力、表皮厚度和白细胞介素-1α水平提供了保护。与假照射的对照模型相比,UVB照射(50 mJ/cm)显著降低了细胞活力和表皮厚度(与表皮破损增加相关),以及基底层Ki67和基底层以上的内披蛋白表达。在UVB照射之前涂抹该乳膏(保护能力)在最小化表皮损伤方面显示出更大的功效。与在UVB照射后涂抹该乳膏的模型(治疗能力)相比,这表现为显著更高的Ki67和内披蛋白表达,以及更低的表皮破损。:VD2+AgNP乳膏在皮肤保护方面显示出多功能潜力。其潜在的分子机制仍有待研究。