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La zone de Mandraka, située sur la première falaise orientale, constitue une région typiquement forestière dont la topographie ne favorise pas l’extension agricole. Cependant, compte tenu des besoins de sécurisation alimentaire, le besoin graduel en terres fait que la population se trouve dans l’obligeance d’accroître les zones d’agriculture et ainsi de recourir aux ressources forestières. Cette étude dessine alors comme objectif de définir les lignes d’actions principales combinant la gestion des ressources agricoles et la valorisation durable des ressources forestières. Aussi, des enquêtes socioéconomiques (formelles et informelles) ont été entreprises afin de parvenir aux résultats escomptés. Malgré les efforts en matière de valorisation agricole, l’autosuffisance alimentaire reste encore un problème fondamental à surmonter. De ce fait, le revenu agricole ne constitue que 22,54% du revenu des ménages. Il est également constaté que l’exploitation forestière évaluée prometteuse (61,07% du revenu) semble majorer les intérêts des grands collecteurs au détriment de la masse paysanne. Par conséquent, les difficultés quant aux besoins financiers persistent et les actions tendent vers la production (exploitation) à outrance, de plus que la demande en ville ne cesse d’augmenter. Face à cette situation, l’amélioration progressive des formes d’exploitation agricole constitue une alternative complémentaire vivement incitée. De même, la rénovation de l’organisation de la filière « Produits forestiers ligneux », principalement le charbonnage demeure impérative. Il constitue la principale activité génératrice de revenu à court terme de la population. Cependant, à long terme, il contribue activement à la dégradation des ressources naturelles en l’occurrence les formations secondaires, vestige de la forêt naturelle. Il s’agit ainsi, de promouvoir les cultures vivrières et les cultures de rente visant le marché d’une part, et d’apporter des améliorations au niveau des techniques d’exploitation des ressources forestières en vue d’un rendement optimum d’autre part.

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Comparative genomics of virulent Tannerella forsythia ATCC 43037 and a close health-associated relative, Tannerella BU063, revealed, in the latter, the absence of an entire array of genes encoding putative secretory proteases that possess a nearly identical C-terminal domain (CTD) that ends with a -Lys-Leu-Ile-Lys-Lys motif. This observation suggests that these proteins, referred to as KLIKK proteases, may function as virulence factors. Re-sequencing of the loci of the KLIKK proteases found only six genes grouped in two clusters. All six genes were expressed by T. forsythia in routine culture conditions, although at different levels. More importantly, a transcript of each gene was detected in gingival crevicular fluid (GCF) from periodontitis sites infected with T. forsythia indicating that the proteases are expressed in vivo. In each protein, a protease domain was flanked by a unique N-terminal profragment and a C-terminal extension ending with the CTD. Partially purified recombinant proteases showed variable levels of proteolytic activity in zymography gels and toward protein substrates, including collagen, gelatin, elastin, and casein. Taken together, these results indicate that the pathogenic strain of T. forsythia secretes active proteases capable of degrading an array of host proteins, which likely represents an important pathogenic feature of this bacterium.

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INTRODUCTION Every joint registry aims to improve patient care by identifying implants that have an inferior performance. For this reason, each registry records the implant name that has been used in the individual patient. In most registries, a paper-based approach has been utilized for this purpose. However, in addition to being time-consuming, this approach does not account for the fact that failure patterns are not necessarily implant specific but can be associated with design features that are used in a number of implants. Therefore, we aimed to develop and evaluate an implant product library that allows both time saving barcode scanning on site in the hospital for the registration of the implant components and a detailed description of implant specifications. MATERIALS AND METHODS A task force consisting of representatives of the German Arthroplasty Registry, industry, and computer specialists agreed on a solution that allows barcode scanning of implant components and that also uses a detailed standardized classification describing arthroplasty components. The manufacturers classified all their components that are sold in Germany according to this classification. The implant database was analyzed regarding the completeness of components by algorithms and real-time data. RESULTS The implant library could be set up successfully. At this point, the implant database includes more than 38,000 items, of which all were classified by the manufacturers according to the predefined scheme. Using patient data from the German Arthroplasty Registry, several errors in the database were detected, all of which were corrected by the respective implant manufacturers. CONCLUSIONS The implant library that was developed for the German Arthroplasty Registry allows not only on-site barcode scanning for the registration of the implant components but also its classification tree allows a sophisticated analysis regarding implant characteristics, regardless of brand or manufacturer. The database is maintained by the implant manufacturers, thereby allowing registries to focus their resources on other areas of research. The database might represent a possible global model, which might encourage harmonization between joint replacement registries enabling comparisons between joint replacement registries.