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This study introduces a novel methodology that employs the 3-D reconstructed tissue model, EpiOcular, to assess the irritation and phototoxicity potential of medical devices and drugs in contact with the eye. Our study evaluated diverse test materials, including medical devices, ophthalmological solutions and an experimental drug (cemtirestat), for their potential to cause eye irritation and phototoxicity. The protocols used in this study with the EpiOcular tissue model were akin to those used in the ultra-mildness testing of cosmetic formulations, which is challenging to predict with standard rabbit tests. To design these protocols, we leveraged experience gained from the validation project on the EpiDerm skin irritation test for medical devices (ISO 10993-23:2021) and the OECD TG 498 method for photo-irritation testing. The predictions were based on the tissue viability and inflammatory response, as determined by IL-1α release. By developing and evaluating these protocols for medical devices, we aimed to expand the applicability domain of the tests referred to in ISO 10993-23. This will contribute to the standardisation and cost-effective safety evaluation of ophthalmic products, while reducing reliance on animal testing in this field. The findings obtained from the EpiOcular model in the photo-irritation test could support its implementation in the testing strategies outlined in OECD TG 498.
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http://dx.doi.org/10.1177/02611929241270095 | DOI Listing |
Neurol Sci
September 2025
Neurology Unit, Department of Clinical and Experimental Sciences, University of Brescia, Brescia, Italy.
The rapid evolution of digital tools in recent years after COVID-19 pandemic has transformed diagnostic and therapeutic practice in neurology. This shift has highlighted the urgent need to integrate digital competencies into the training of future specialists. Key innovations such as telemedicine, artificial intelligence, and wearable health technologies have become central to improving healthcare delivery and accessibility.
View Article and Find Full Text PDFGen Thorac Cardiovasc Surg
September 2025
Thoracic Surgery Department, Centre Hospitalier de la Cote Basque, 13, avenue de l'Interne Jacques Loeb, 64100, Bayonne, France.
Objective: Reduction of bleeding and prolonged air leak (>5 days) following major lung resection remains a challenge. Hemostasis and aerostasis devices can facilitate earlier pleural de-drainage and fast-track. Our objectives were to evaluate the efficacy of TenaTac (an elastic, adhering patch approved as a medical device) in reducing bleeding and prolonged air leak after major lung resection.
View Article and Find Full Text PDFCardiovasc Intervent Radiol
September 2025
Neuroradiologische Klinik, Kopf- Und Neurozentrum, Klinikum Stuttgart, Kriegsbergstraße 60, 70174, Stuttgart, Germany.
Eur Spine J
September 2025
Centre Hospitalier Universitaire de Tours, Tours, France.
Purpose: Degenerative lumbar spinal stenosis (DLSS) represents an increasing challenge due to the aging population. The natural course of untreated DLSS is largely unknown. For the acute DLSS decompensations, the main concern remains the opportunity and timing of surgery, i.
View Article and Find Full Text PDFOral Surg Oral Med Oral Pathol Oral Radiol
August 2025
Department of Oral Medicine, Peking University School and Hospital of Stomatology & National Center for Stomatology & National Clinical Research Center for Oral Diseases & National Engineering Research Center of Oral Biomaterials and Digital Medical Devices, Beijing, PR China. Electronic address: yz
Objective: There are limited data regarding the association and differentiation between proliferative verrucous leukoplakia (PVL) and unifocal verrucous leukoplakia (UVL).
Methods: We retrospectively recruited oral leukoplakia (OL) patients from 2010 to 2024, analyzing the demographic, clinical, histopathological features, and malignant transformation of PVL and UVL.
Results: Among 1756 OL subjects, PVL and UVL accounted for 1.