Clinical Newsletter
Regular updates on our latest clinical studies.
Nos équipes de recherche et développement travaillent dans le monde entier et génèrent des synergies tirées de notre expertise et de disciplines techniques connexes. Nous sommes en contact à l'international avec des institutions spécialisées indépendantes, avec des leaders d'opinion et multiplicateurs de façon à pouvoir gérer parfaitement la gestion des coopérations et du savoir. Dans ce contexte, nous menons des recherches à grande échelle présentées continuellement lors de congrès sous forme de posters ou d'exposés réalisés par nos partenaires de coopération, mais aussi lors de colloques et d'ateliers. Ces travaux de recherche sont aussi publiés dans des revues scientifiques de renom. Nous mettons à disposition dans cette base de données des publications spécialisées basées sur des preuves et pour la plus grande partie évaluées par des experts indépendants :
Materials in contact with liquids on the human skin surface may dissolve and permeate into skin. Release and permeation of chemicals in contact with skin is often estimated in vitro using artificial skin liquids, although sebum lipids are generally not included in these models. The purposes of this research were to develop a representative artificial sebum that contains the appropriate types of lipids at levels that match human values and quantitatively characterize the model to understand its utility for in vitro testing. Artificial sebum that consisted of 10 lipids at proportions that closely resembled human sebum was characterized using thin layer chromatography under a variety of storage and use conditions (dry and liquid, 4 degrees C and 32 degrees C, with and without vitamin E) for 28 days. Levels of sebum constituents maintained in solution and dry at 4 degrees C were stable through the duration of the test period. Levels of all sebum lipids maintained dry at 32 degrees C were stable in the presence of vitamin E; however, squalene oxidized rapidly in the absence of vitamin E. Liquids on the human skin surface consist of sebum and sweat with minor amounts of cellular debris and intercellular lipid from the stratum corneum. The relative importance of each component for release of chemicals from materials in contact with skin will depend upon the type of material (metal, organic, etc.). A model artificial sebum was formulated and characterized to aid researchers in understanding potential release of chemicals from materials in contact with skin and subsequent partitioning and absorption.
Physiological wound repair is a highly regulated, complex process, which leads to formation of new tissue after injury. However, the healing process is not perfect and healing impairments can occur. Delayed healing and formation of chronic wounds has been linked to the excessive production of proteolytic enzymes leading to reduced amounts of growth factors and successive destruction of the extracellular matrix. It has been implied that there is an alteration in the normal control mechanisms regulating the levels of these enzymes. The study presented provides data on the concentration of proteases and cytokines in wound fluid from chronic when compared with acute wounds. Levels of proteases such as PMN elastase, matrix metalloproteinases-2 (MMP-2), and MMP-13 were found to be profoundly elevated in chronic when compared with acute wound fluids. In addition, concentrations of IL-1beta, IL-6, and IL-8 were shown to be significantly higher in chronic than in acute wounds. Furthermore, the ability of a wound dressing, consisting of bovine collagen type I, to bind pro-inflammatory cytokines was investigated. Collagen type I was able to bind significant amounts of the pro-inflammatory cytokines in vitro. Thus, it should be able to establish a more physiological wound milieu in vivo and promote healing.