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Potency and quantitative risk assessment are essential for determining safe concentrations for the formulation of potential skin sensitizers into consumer products. Several new approach methodologies (NAMs) for skin sensitization hazard assessment have been adopted in OECD test guidelines. Work is ongoing to develop NAMs for predicting skin sensitization potency on a quantitative scale for use as a point of departure in next generation risk assessment (NGRA). GARDskin Dose-Response (DR) is an adaptation of the GARDskin assay (OECD TG 442E); its readout is a quantitative potency prediction similar to the No Expected Sensitization Induction Level (NESIL) value (μg/cm2). Our goal was to evaluate the performance of the GARDskin DR for potency prediction of fragrance ingredients. One hundred fragrance ingredients from a reference database were tested in GARDskin DR. Materials tested had various protein-binding reactivity alerts, including Schiff base, Michael addition, SN2, and acylation. Potency categories were predicted with a total accuracy of 37% and an approximate accuracy (exact match or off by one category) of 81%. Combining predicted weak and very weak categories increased total accuracy to 53% and approximate accuracy to 98%. The mean prediction error for the NESIL and local lymph node assay (LLNA) EC3 was 3.15-fold and 3.36-fold, respectively. Based on the results of this study, GARDskin DR is a promising predictor of skin sensitization potency with an applicability domain covering a wide range of fragrance ingredient reaction mechanisms, increasing the confidence in using the assay to conduct NGRA, ultimately reducing the need for animal testing.
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http://dx.doi.org/10.14573/altex.2405131 | DOI Listing |
Int Arch Allergy Immunol
September 2025
Background: Tree nut/Peanut (TN/PN) allergies are among the most common pediatric food allergies, often persisting into later life and posing significant clinical risks. The likelihood of tolerance acquisition varies, and predictive factors remain inadequately defined in clinical practice.
Objective: To evaluate the clinical and laboratory features associated with anaphylaxis risk and tolerance development in pediatric patients with TN/PN allergy, and to determine the role of aeroallergen sensitization, comorbid atopic diseases, and skin test reactivity.
Anal Methods
September 2025
Institut de recherche Robert-Sauvé en santé et en sécurité du travail (IRSST), Qc, Canada.
Toluene diisocyanate (TDI) is an irritant (skin, eye and respiratory) and a sensitizer. This compound is used to manufacture polyurethane materials such as flexible foams. The use of isocyanates may lead to exposure by inhalation and/or skin contact and isocyanates are recognized as a cause of occupational asthma.
View Article and Find Full Text PDFZhonghua Jie He He Hu Xi Za Zhi
September 2025
Department of Allergy, Beijing Key Laboratory of Precision Medicine for Diagnosis and Treatment on Allergic Diseases, National Clinical Research Center for Dermatologic and Immunologic Diseases, Peking Union Medical College Hospital, Chinese Academy of Medical Sciences & Peking Union Medical College
Inhaled and intranasal corticosteroids are widely used in the management of allergic respiratory diseases. Delayed drug hypersensitivity reactions to budesonide are a rare adverse drug reaction characterized by non-immunoglobulin E (IgE)-mediated clinical manifestations, including localized or systemic contact dermatitis, mucosal edema, and paradoxical worsening of pre-existing symptoms. However, such reactions are often underdiagnosed due to atypical presentations.
View Article and Find Full Text PDFTurk J Pediatr
September 2025
Division of Allergy and Asthma, Department of Pediatrics, Faculty of Medicine, Hacettepe University, Ankara, Türkiye.
Animal allergens, particularly those from cats, dogs, and horses, are significant risk factors for the development of allergic diseases in childhood. Managing animal allergies requires allergen avoidance and, when this is not feasible, specific immunotherapy. Patient history remains the cornerstone of diagnosis, providing the foundation for diagnostic algorithms.
View Article and Find Full Text PDFJ Phys Chem Lett
September 2025
Tianjin Key Laboratory of Film Electronic and Communication Devices, School of Integrated Circuit Science and Engineering, Tianjin University of Technology, Tianjin 300384, China.
Achieving UVA/B-selective, skin-inspired nociceptors with perception and blockade functions at the single-unit device level remains challenging. This is because the device necessitates distinct components for every performance metric, thereby leading to complex preparation processes and restricted performance, as well as the absence of deep UV (UVB and below)-selective semiconductors. Here, to address this, we develop a structure-simplification skin-inspired nociceptor using a reverse type-II CuAgSbI/MoS heterostructure.
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