7 research outputs found

    Guidelines for the use and interpretation of assays for monitoring cell death in higher eukaryotes

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    Cell death is essential for a plethora of physiological processes, and its deregulation characterizes numerous human diseases. Thus, the in-depth investigation of cell death and its mechanisms constitutes a formidable challenge for fundamental and applied biomedical research, and has tremendous implications for the development of novel therapeutic strategies. It is, therefore, of utmost importance to standardize the experimental procedures that identify dying and dead cells in cell cultures and/or in tissues, from model organisms and/or humans, in healthy and/or pathological scenarios. Thus far, dozens of methods have been proposed to quantify cell death-related parameters. However, no guidelines exist regarding their use and interpretation, and nobody has thoroughly annotated the experimental settings for which each of these techniques is most appropriate. Here, we provide a nonexhaustive comparison of methods to detect cell death with apoptotic or nonapoptotic morphologies, their advantages and pitfalls. These guidelines are intended for investigators who study cell death, as well as for reviewers who need to constructively critique scientific reports that deal with cellular demise. Given the difficulties in determining the exact number of cells that have passed the point-of-no-return of the signaling cascades leading to cell death, we emphasize the importance of performing multiple, methodologically unrelated assays to quantify dying and dead cells

    One health, une seule santé

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    One Health, « Une seule santĂ© », est une stratĂ©gie mondiale visant Ă  dĂ©velopper les collaborations interdisciplinaires pour la santĂ© humaine, animale et environnementale. Elle promeut une approche intĂ©grĂ©e, systĂ©mique et unifiĂ©e de la santĂ© aux Ă©chelles locale, nationale et mondiale, afin de mieux affronter les maladies Ă©mergentes Ă  risque pandĂ©mique, mais aussi s'adapter aux impacts environnementaux prĂ©sents et futurs. Bien que ce mouvement s’étende, la littĂ©rature en français reste rare. Traduit de l’anglais, coordonnĂ© par d’éminents Ă©pidĂ©miologistes et s'appuyant sur un large panel d' approches scientifiques rarement rĂ©unies autour de la santĂ©, cet ouvrage retrace les origines du concept et prĂ©sente un contenu pratique sur les outils mĂ©thodologiques, la collecte de donnĂ©es, les techniques de surveillance et les plans d’étude. Il combine recherche et pratique en un seul volume et constitue un ouvrage de rĂ©fĂ©rence unique pour la santĂ© mondiale

    NOD-Like Receptors-Pivotal Guardians of the Immunological Integrity of Barrier Organs

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    NOD-like receptors (NLRs) exert pivotal roles in innate immunity as sensors of exogenous or endogenous cellular danger signals. The NLR protein family has a characteristic domain architecture comprising a central nucleotide binding and oligomerization domain (NOD), an N-terminal effector binding domain and C-terminal leucine-rich repeats (LRRs). Mutations in NLR genes are genetically associated with a number of chronic inflammatory diseases of barrier organs. In this chapter, we focus on the influence of NLR regulation and function in the complex pathophysiology of mucosal homeostasis. The understanding of NLR biology may guide our future understanding of how the interaction between the human genome and the metagenome of transient and resident microbiota precipitates into chronic inflammatory disorders, such as Crohn's disease or atopy
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