962 resultados para PROGRAMMES OF ACTION
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Spanish version available at the Library
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Includes bibliography
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This is the version of the draft Plan of Action eLAC2015 agreed upon at the regional preparatory conference for the third Ministerial Conference on the Information Society in Latin America and the Caribbean, held in Montevideo on 23 and 24 September 2010, incorporating editorial changes made by ECLAC.
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Report of the Regional Meeting in Preparation for the Comprehensive 10-Year Review Conference of the Implementation of the Almaty Programme of Action (Asunción, 19 November 2013).
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The Caribbean Meeting of Experts on Implementation of the SIDS Programme of Action, held at the Holiday Inn Hotel, Port of Spain, Trinidad and Tobago, 17-19 May 1995 was convened to review progress towards implementation of the SIDS Programme of Action (SIDS-POA), to discuss constraints on the effective implementation of the Programme and to agree on priority areas for action. It was organized by the Economic Commission for Latin America and the Caribbean/Caribbean Development and Cooperation Committee (ECLAC/CDCC), in collaboration with the United Nations Development Programme’s Special Unit for Technical Cooperation among Developing Countries (UNDP/TCDC), the United Nations Environment Programme (UNEP), the University of the West Indies Centre for Environment and Development (UWICED), and the Caribbean Community (CARICOM). A copy of the programme and a list of documents are attached to this report as Annex I and II respectively.
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The secretariat is hereby circulating the present document, prepared by the Mexican Agency for International Development Cooperation (AMEXCID), to members of the Economic Commission for Latin America and the Caribbean (ECLAC), as input to the meeting of the Committee on South-South Cooperation to be held in the framework of the thirty-sixth session of the Commission.
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Spinosad, applied as a jetting solution or dip is an efficacious, non-systemic treatment for the control of Bovicola ovis in sheep. This paper describes the effect of back-line treatment width and group housing of animals on the efficacy of spinosad for the control of lice. A 0.4 mg/kg liveweight dose was found to be the suboptimal dose of spinosad for the control of body lice in a dose titration study and was used to investigate application and housing effects in a second study. Lousy Merino sheep were treated with either a narrow 3-cm application of spinosad or with a wider 25-cm swathe. After treatment they were either kept alone or in groups of 6 sheep per pen. Lice were counted at day 0 and every 14 days to 70 days after treatment before estimation of the percentage of lice control and analysis of treatment effects. A much higher percentage of lice control was achieved with 0.4 mg/kg in the second study than in the first, possibly because of differences in formulation used. The wider application width gave significantly higher (P < 0.05) control of lice than the narrow application when sheep were either housed alone or in groups up to day 42 post-treatment. Greater control of lice was seen in group-housed sheep compared with sheep housed individually (P < 0.05) up to day 70. Using broader application widths combined with holding the animals together after treatment with pour-on formulations may optimise the delivery and efficacy of ectoparasiticides for livestock.
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Purpose: Eicosapentaenoic acid has been tested in bladder cancer as a synergistic cytotoxic agent in the form of meglumine-eicosapentaenoic acid, although its mechanism of action is poorly understood in this cancer. The current study analyzed the mechanisms by which eicosapentaenoic acid alters T24/83 human bladder cancer metabolism in vitro. Materials and Methods: T24/83 human bladder cancer cells were exposed to eicosapentaenoic acid for 6 to 24 hours in vitro and incorporation profiles were determined. Effects on membrane phospholipid incorporation, energy metabolism, mitochondrial activity, cell proliferation and apoptosis were analyzed Reactive oxygen species and lipid peroxide production were also determined. Results: Eicosapentaenoic acid was readily incorporated into membrane phospholipids with a considerable amount present in mitochondrial cardiolipin. Energy metabolism was significantly altered by eicosapentaenoic acid, accompanied by decreased mitochondrial membrane potential, and increased lipid peroxide and reactive oxygen species generation. Subsequently caspase-3 activation and apoptosis were detected in eicosapentaenoic acid exposed cells, leading to decreased cell numbers. Conclusions: These findings confirm that eicosapentaenoic acid is a potent cytotoxic agent in bladder cancer cells and provide important insight into the mechanisms by which eicosapentaenoic acid causes these changes. The changes in membrane composition that can occur with eicosapentaenoic acid likely contribute to the enhanced drug cytotoxicity reported previously in meglumine-eicosapentaenoic acid/epirubicin/mitomycin studies. Dietary manipulation of the cardiolipin fatty acid composition may provide an additional method for stimulating cell death in bladder cancer. In vivo studies using intravesical and dietary manipulation of fatty acid metabolism in bladder cancer merit further attention.