6 research outputs found

    International nosocomial infection control consortium (INICC) report, data summary of 36 countries, for 2004-2009

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    The results of a surveillance study conducted by the International Nosocomial Infection Control Consortium (INICC) from January 2004 through December 2009 in 422 intensive care units (ICUs) of 36 countries in Latin America, Asia, Africa, and Europe are reported. During the 6-year study period, using Centers for Disease Control and Prevention (CDC) National Healthcare Safety Network (NHSN; formerly the National Nosocomial Infection Surveillance system [NNIS]) definitions for device-associated health care-associated infections, we gathered prospective data from 313,008 patients hospitalized in the consortium's ICUs for an aggregate of 2,194,897 ICU bed-days. Despite the fact that the use of devices in the developing countries' ICUs was remarkably similar to that reported in US ICUs in the CDC's NHSN, rates of device-associated nosocomial infection were significantly higher in the ICUs of the INICC hospitals; the pooled rate of central line-associated bloodstream infection in the INICC ICUs of 6.8 per 1,000 central line-days was more than 3-fold higher than the 2.0 per 1,000 central line-days reported in comparable US ICUs. The overall rate of ventilator-associated pneumonia also was far higher (15.8 vs 3.3 per 1,000 ventilator-days), as was the rate of catheter-associated urinary tract infection (6.3 vs. 3.3 per 1,000 catheter-days). Notably, the frequencies of resistance of Pseudomonas aeruginosa isolates to imipenem (47.2% vs 23.0%), Klebsiella pneumoniae isolates to ceftazidime (76.3% vs 27.1%), Escherichia coli isolates to ceftazidime (66.7% vs 8.1%), Staphylococcus aureus isolates to methicillin (84.4% vs 56.8%), were also higher in the consortium's ICUs, and the crude unadjusted excess mortalities of device-related infections ranged from 7.3% (for catheter-associated urinary tract infection) to 15.2% (for ventilator-associated pneumonia). Copyright © 2012 by the Association for Professionals in Infection Control and Epidemiology, Inc. Published by Elsevier Inc. All rights reserved

    Physicochemical, Technological Properties, And Health-benefits Of Cucurbita Moschata Duchense Vs. Cehualca. A Review

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    Squash (Cucurbita moschata D.), is a vegetable crop native from México. Since ancient times it has been essential in the diet of rural communities and some urban areas worldwide, mainly in the nowadays squash is a marginalized crop in terms of cultivation, marketing, industrialization and research. There are few of scientific studies on its physical, chemical, physicochemical, nutrimental, functional and technological characteristics. Some scientific literature on squash highlights its importance as a source of α and β-carotene, lutein, vitamin C, dietary fiber, minerals, and phenolic compounds. These nutrimental and bioctive components are very important in providing human health benefits. Different researchers agree in indicating that more scientific studies are needed to achieve greater and better utilization of this important crop. This review will focus on the physical, chemical, nutritional, and technological aspects of the squash (C. moschata). © 2011.44925872593Aguilar-Gutiérrez, F., Zazueta-Morales, J.J., Camacho-Hernández, I.L., (2006), Metodología de superficie de respuesta en la obtención de hojuelas precocidas deshidratadas de calabaza (Cucurbita Moschata D.) Cehualca. Tesis de licenciatura. Maestría en Ciencia y Tecnología de Alimentos, Facultad de Ciencias Químico Biológicas, Universidad Autónoma de SinaloaAguilar-Gutiérrez, F., Zazueta-Morales, J.J., Camacho-Hernández, I.L., (2009), Caracterización Química, Física, Funcional y Nutrimental de la Calabaza Cehualca (Cucurbita moschata D.) cv Cehualca Integral. Tesis de maestría. Maestría en Ciencia y Tecnología de Alimentos, Facultad de Ciencias Químico Biológicas, Universidad Autónoma de SinaloaAréchiga-Carbajal, J., Zazueta-Morales, J.J., Camacho-Hernández, I.L., (2007), Efecto del procesamiento sobre las Características Fisicoquímicas de una Harina Precocida de Calabaza Cehualca (Cucurbita Moschata Duchense) Deshidratada. Tesis de licenciatura. Facultad de Ciencias Químico Biológicas, Universidad Autónoma de SinaloaDe Nuestra Cosecha. La calabaza y la calabacita mexicanas en el mercado norteamericano (1999) Claridades Agropecuarias, 76, pp. 3-24. , ASERCACanul, K.J., Ramírez-Vallejo, P., Castillo-González, F., Chávez-Servia, J.L., Diversidad morfológica de la calabaza cultivada en el centro - oriente de Yucatán, México (2005) Fotetecnia Mexicana, 28 (4), pp. 339-349Castilho, G.C., Mauro, M.A., Kimura, M., Kinetics of osmotic dehydration and air-drying of pumpkins (Cucurbita moschata) (2007) Journal of Food Engineering, 82, pp. 284-291Delgado-Nieblas, C.I., Gallegos-Infante, J.A., Zazueta-Morales, J.J., Aguilar-Palazuelos, E., Rocha-Guzmán, N.E., González-Laredo, R.F., Physicochemical and functional characterization of third generation snacks enriched with pumpkin (Cucurbita moschata D) flour manufactured by extrusion process (2010) Fourth International Congress on Food Science and Food Biotechnology in Developing CountriesDelgado-Nieblas, C.I., Zazueta-Morales, J.J., Aréchiga-Carbajal, J.J., Lopez-Valdez, C., Camacho-Hernández, I.L., Caro-Corrales, J.J., Efecto del tiempo de precocción y temperatura de secado sobre el contenido de β-caroteno y características microestructurales de harinas precocidas de calabaza cehualca (Cucúrbita moschata Duchense) cv cehualca (2007) VI Congreso del Noroeste, II Nacional, en Ciencias Alimentarias y Biotecnología, pp. 14-17. , Sonora, MéxicoDelgado-Nieblas, C.I., Zazueta-Morales, J.J., Aréchiga-Carbajal, J., Lopez-Valdez, C., Camacho-Hernández, I.L., Caro-Corrales, J.J., Utilización de la metodología de superficie de respuesta para la optimización del proceso de obtención de harinas precocidas de calabaza (Cucurbita moschata Duchense) cv Cehualca (2007) VI Congreso del Noroeste, II Nacional, en Ciencias Alimentarias y Biotecnología, pp. 14-17. , Sonora, MéxicoDoymaz, I., The kinetics of forced convective air-drying of pumpkin slices (2007) Journal of Food Engineering, 79, pp. 243-248Fu, C., Shi, H., Li, Q., A review on pharmacological activities and utilization technologies of pumpkin. Plant Foods for human nutrition (formerly qualitas plantarum) (2006) Springer Netherlands, 61 (2), pp. 73-80. , http://www.springerlink.com/content/u64g58483p22t4vk/fulltext.pdf, Accessed on:González, E., Montenegro, M.A., Nazareno, M.A., Carotenoid composition and vitamin A value of an Argentinian squash (Cucurbita moschata) (2001) Archivos Latinoamericanos de Nutrición, 51 (4), pp. 395-399. , http://www.scielo.org.ve/scielo.php?script=sci_arttext&pid=S0004-062 22001000400012&lng=es&nrm=iso, Accessed on: ISSN 0004-0622Grover, J.K., Yadav, S.P., Pharmacological actions andpotential uses of Momordica charantia: a review (2004) Journal of Ethnopharmacology, 93, pp. 123-132Holdsworth, S.D., Conservación por el calor (1988) Conservación de Frutas y Hortalizas, pp. 49-76. , España, S.A. Acribia, Zaragoza (Eds.)Ill-Min, C., Eun-Hye, K., Min-A, Y., Sun-Jin, K., Myong-Cheol, S., Hyung-In, M., Antidiabetic effects of three Korean sorghum phenolic extracts in normal and streptozotocin-induced diabetic rats (2011) Food Research International, 44 (1), pp. 127-132Jacobo-Valenzuela, N., Zazueta-Morales, J.J., Pérez-Castañeda, V., Camacho-Hernández, I.L., Gallegos-Infante, J.A., Rocha-Guzmán, N.E., González-Laredo, R.F., Rediscovering Winter Squash (Cucurbita moschata D.) cv. Cehualca as a Magic Food in Sinaloa State. 3rd International Congress of Food Science and Food Biotechnology in Developing Countries (2008) AMECA, , 14-17 October, 475-478Jun, H., Lee, C.H., Song, G.S., Kim, Y.S., Characterization of the pectic polysaccharides from pumpkin peel (2006) Elsevier, 39, pp. 554-561Kumar-Reddy, C.V., Sreeramulu, D., Raghunath, M., Antioxidant activity of fresh and dry fruits commonly consumed in India (2010) Food Research International, 43, pp. 285-288Lee, C.H., Cho, J.K., Lee, S.J., Koh, W., Park, W., Kim, C.H., Enhancing β-carotene content in Asian noodles by adding pumpkin powder (2002) Cereal Chemistry, 79 (4), pp. 593-595Lira, S.R., Montes, H.S., (1992) Cultivos marginados otra perspectiva de 1492. La agricultura en Mesoamérica. Cucúrbita (Cucurbita spp.), , http://www.rlc.fao.org/es/agricultura/produ/cdrom/contenido/libro09/Cap2_3.htm#auto, Cultivos Andinos-FAO, Accessed on:Montes, C.R., Vallejo, C.F.A., y Baena, G.D., Diversidad genética de germoplasma colombiano de zapallo (Cucurbita moschata Dúchesne Exp. Prior) (2004) Acta Agronómica, 53 (3). , http://www.revista.unal.edu.co/index.php/acta_agronomica/article/viewFil e/97/210, Colombia. Accessed on:Noor, A.A.A., Komatchi, C.A., Physicochemical and functional properties of peeled and unpeeled pumpkin flour (2009) Journal of Food Science, 74 (7), pp. 328-333. , http://ddr.nal.usda.gov/bitstream/10113/74/1/IND20626906.pdf, Accessed on:Noseworthy, J., Loy, B., Improving eating quality and carotenoid content of squash (2008) Proceedings of the IXth EUCARPIA meeting on genetics and breeding of Cucurbitaceae, , INRA, Avignon (France), May 21-24th, 521-528, M. Pitrat (Ed.)Know what you eat. Squash, winter, butternut, raw, , http://nutritiondata.self.com/facts/vegetables-and-vegetable-products/26 47/2, Accessed on: NutritionDataPhanindra-Kumar, H.S., Radhakrishna, K., Nagaraju, P.K., Vijaya-Rao, D., Physico-chemical characteristic of carrot and pumpkin (2001) Journal of Food Processing Preservation, 25, pp. 447-460Pinho, F.G.R., Henrriques, F., Barroca, M.J., Mass transfer coefficients for the drying of pumpkin (Cucurbita moschata) and dried product quality. Food bioprocess technol (2009) Springer Science and Business MediaQue, F., Mao, L., Fang, X., Wu, T., Comparison of hot air-drying and freeze-drying on the physicochemical properties and antioxidant activities of pumpkin (Cucurbita moschata Duch.) flours (2007) International Journal of Food Science and Technology, 43, pp. 1195-1201Rodriguez-Amaya, D.B., Enhancing the carotenoid levels of foods through agriculture and food technology. (2003), Internet Paper for Food, Nutrition and Health. FoodAfrica, Internet Forum 31Rodriguez-Amaya, D.B., Kimura, M., Amaya-Farfan, J. Fontes Brasileiras de Carotenóides. Tabela Brasileira de Composição de Carotenoides em Alimentos (2008) Ministerio de Meio Ambiente, pp. 58-59Roura, S.I., Del Valle, C.E., Aguero, L., Davidovich, L.A., Changes in apparent viscosity and vitamin C retention during thermal treatment of Butternut Squash (Cucurbita moschata Duch) pulp: Effect of ripening stage (2007) Journal of Food Quality, 30, pp. 538-551See, E.F., Wan Nadiah, W.A., Noor Aziah, A.A., Physico-chemical and sensory evaluation of breads supplemented with pumpkin flour (2007) ASEAN Food Journal, 14 (2), pp. 123-130Sgroppo, S.C., Sosa, C.A., Zapallo anco (Cucurbita moschata, D.) fresco cortado tratado con luz uv-c (2009) FACENA, 25, pp. 7-19Tamer, C.E., Incedayi, B., Parseker, A.S., Yonak, S., Çopur, Ö.U., Evaluation of several quality criteria of low calorie pumpkin dessert (2010) Notulae Botanicae Horti Agrobotanici, 38 (1), pp. 76-80. , http://notulaebotanicae.ro/nbha/article/viewFile/3557/4423, Accessed on:Toshiro, H., Takahiko, A., Seiichiro, N., The composition and vitamin A value of the carotenoids of pumpkins of different colors (1986) Journal of Food Biochemistry, 11, pp. 59-68Wang, S., Melnyk, J.P., Tsao, R., Marcone, M.F., How natural dietary antioxidants in fruits, vegetables and legumes promote vascular health (2011) Food Research International, 44 (1), pp. 14-22Whitaker, T.W., Archeological cucurbits (1981) Economic Botany, 35 (4), pp. 460-466. , http://www.springerlink.com/content/16626369v057g326/, Accessed on:Wootton-Beard, P.C., Moran, A., Ryan, L., Stability of the total antioxidant capacity and total polyphenol content of 23 commercially available vegetable juices before and after in vitro digestion measured by FRAP, DPPH, ABTS and Folin-Ciocalteu methods (2011) Food Research International, 44 (1), pp. 217-224Yang, J.O., Oh, S.R., Lee, H.K., Kim, C.J., Song, K.B., Isolation of anticomplementary substances from Cucurbita moschata Duc (2002) Journal of Food Science, 67 (4), pp. 1348-1351Zaccari, F., Galietta, G., Durán, A., Soto, B., Gratadoux, V., Cuantificación de β-Caroteno en zapallos (Cucurbita sp.) cultivados en Uruguay (2007) V Congreso Iberoamericano de Tecnología Postcosecha y Agroexportaciones, pp. 544-54

    The Potential Protective Effects of Phenolic Compounds against Low-density Lipoprotein Oxidation

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