984 resultados para 4-c]pyrrole
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O presente trabalho avaliou o desempenho de seis cultivares de alface em ambiente protegido. O delineamento experimental foi o de blocos ao acaso, com seis tratamentos e quatro repetições. As cultivares de alface avaliadas foram: Hortência, Rubra, Mônica SF1, Regina de Verão, Verônica e Grandes Lagos 659. A temperatura do ar dentro do ambiente protegido oscilou entre 24,4 ºC e 31,5oC durante o cultivo. Rubra e Grandes Lagos 659 apresentaram os melhores desempenhos, com rendimentos médios superiores a 28.000 kg.ha-1 e massa fresca por planta de 176,7 g e 184,4 g, respectivamente.
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Foi analisado o efeito de dois sistemas silvipastoris nos índices de conforto ambiental e alterações nos parâmetros fisiológicos de bezerros bubalinos criados na Embrapa Amazônia Oriental, Belém-PA (clima Afi), no Período 1 (abril a setembro/2007) e Período 2 (outubro/2007 a março/2008). Foram inseridos onze bezerros no Sistema Silvipastoril 1 (SSP1), que apresentava sombreamento útil nas pastagens de 18 a 21%, e oito no Sistema Silvipastoril 2 (SSP2), sem sombreamento, com lago para banho. Foram mensuradas as variáveis fisiológicas: temperatura retal (TR), frequência respiratória (FR), temperatura da pele (TP), e calculados o Índice de Temperatura e Umidade (ITU) e Índice de Conforto de Benezra (ICB), nos dois períodos experimentais, comparados pelo Teste Tukey (P < 0,05). O ITU apresentou diferença estatística entre horários (P < 0,05) e período do ano (P < 0,05), e oscilou de 73,5 ± 1,3 até 82,2 ± 0,8. A TR apresentou diferença estatística entre horários e períodos do ano (P < 0,05), com amplitude de 38,3 ± 0,26 a 39,3 ± 0,38 °C. A FR apresentou diferença significativa entre horários (P < 0,05), com amplitude de 32,2 ± 9,2 a 56,5 ± 19,0 mov min-1, consideradas acima dos níveis normais, enquanto a TP foi diferente estatisticamente entre períodos e horários (P < 0,05) e variou de 23,6 ± 8,3 a 31,7 ± 5,4 °C. Nos Períodos 1 e 2 e nos dois SSP's, os ICBs estiveram acima do valor ideal, variando de 2,46 ± 0,33 a 3,31 ± 0,62 (SSP1) e 2,42 ± 0,30 a 3,45 ± 0,66 (SSP2).
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Bovine α-lactalbumin (α-La) and lysozyme (Lys), two globular proteins with highly homologous tertiary structures and opposite isoelectric points, were used to produce bio-based supramolecular structures under various pH values (3, 7 and 11), temperatures (25, 50 and 75 °C) and times (15, 25 and 35 min) of heating. Isothermal titration calorimetry experiments showed protein interactions and demonstrated that structures were obtained from the mixture of α-La/Lys in molar ratio of 0.546. Structures were characterized in terms of morphology by transmission electron microscopy (TEM) and dynamic light scattering (DLS), conformational structure by circular dichroism and intrinsic fluorescence spectroscopy and stability by DLS. Results have shown that protein conformational structure and intermolecular interactions are controlled by the physicochemical conditions applied. The increase of heating temperature led to a significant decrease in size and polydispersity (PDI) of α-La–Lys supramolecular structures, while the increase of heating time, particularly at temperatures above 50 °C, promoted a significant increase in size and PDI. At pH 7 supramolecular structures were obtained at microscale – confirmed by optical microscopy – displaying also a high PDI (i.e. > 0.4). The minimum size and PDI (61 ± 2.3 nm and 0.14 ± 0.03, respectively) were produced at pH 11 for a heating treatment of 75 °C for 15 min, thus suggesting that these conditions could be considered as critical for supramolecular structure formation. Its size and morphology were confirmed by TEM showing a well-defined spherical form. Structures at these conditions showed to be stable at least for 30 or 90 days, when stored at 25 or 4 °C, respectively. Hence, α-La–Lys supramolecular structures showed properties that indicate that they are a promising delivery system for food and pharmaceutical applications.
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Lactic acid bacteria (LAB) play a key role in the biopreservation of a wide range of fermented food products, such as yogurt, cheese, fermented milks, meat, fish, vegetables (sauerkraut, olives and pickles), certain beer brands, wines and silage, allowing their safe consumption, which gave to these bacteria a GRAS (Generally Recognised as Safe) status. Besides that, the use of LAB in food and feed is a promising strategy to reduce the exposure to dietary mycotoxins, improving their shelf life and reducing health risks, given the unique mycotoxin decontaminating characteristic of some LAB. Mycotoxins present carcinogenic, mutagenic, teratogenic, neurotoxic and immunosuppressive effects over animals and Humans, being the most important ochratoxin A (OTA), aflatoxins (AFB1), trichothecenes, zearalenone (ZEA), fumonisin (FUM) and patulin. In a previous work of our group it was observed OTA biodegradation by some strains of Pediococcus parvulus isolated from Douro wines. So, the aim of this study was to enlarge the screening of the biodetoxification over more mycotoxins besides OTA, including AFB1, and ZEA. This ability was checked in a collection of LAB isolated from vegetable (wine, olives, fruits and silage) and animal (milk and dairy products, sausages) sources. All LAB strains were characterized phenotypically (Gram, catalase) and genotypically. Molecular characterisation of all LAB strains was performed using genomic fingerprinting by MSP- PCR with (GTG)5 and csM13 primers. The identification of the isolates was confirmed by 16S rDNA sequencing. To study the ability of LAB strains to degrade OTA, AFB1 and ZEA, a MRS broth medium was supplemented with 2.0 g/mL of each mycotoxin. For each strain, 2 mL of MRS supplemented with the mycotoxins was inoculated in triplicate with 109 CFU/mL. The culture media and bacterial cells were extracted by the addition of an equal volume of acetonitrile/methanol/acetic acid (78:20:2 v/v/v) to the culture tubes. A 2 mL sample was then collected and filtered into a clean 2 mL vial using PP filters with 0.45 m pores. The samples were preserved at 4 °C until HPLC analysis. Among LAB tested, 10 strains isolated from milk were able to eliminate AFB1, belonging to Lactobacillus casei (7), Lb. paracasei (1), Lb. plantarum (1) and 1 to Leuconostoc mesenteroides. Two strains of Enterococcus faecium and one of Ec. faecalis from sausage eliminated ZEA. Concerning to strains of vegetal origin, one Lb. plantarum isolated from elderberry fruit, one Lb. buchnerii and one Lb. parafarraginis both isolated from silage eliminated ZEA. Other 2 strains of Lb. plantarum from silage were able to degrade both ZEA and OTA, and 1 Lb. buchnerii showed activity over AFB1. These enzymatic activities were also verified genotypically through specific gene PCR and posteriorly confirmed by sequencing analysis. In conclusion, due the ability of some strains of LAB isolated from different sources to eliminate OTA, AFB1 and ZEA one can recognize their potential biotechnological application to reduce the health hazards associated with these mycotoxins. They may be suitable as silage inoculants or as feed additives or even in food industry.
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Dissertação de mestrado em Biofísica e Bionanossistemas
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La preservación es la llave que comparte el éxito de un transplante. La técnica de preservación de órganos permite el traslado de éstos a diferentes hospitales que pueden estar a grandes distancias. (...) El objetivo de la preservación es mantener la viabilidad del órgano por el mayor tiempo posible para que en el momento de ser transplantado, reinicie sus funciones de inmediato. De lo contrario, una no función primaria significa retransplante de inmediato, en el caso del hígado. Una mala función primaria significa una mayor exposición inmunológica, lo que trae aparejado episodios reiterados de rechazo con la pérdida final del injerto. Muchos son los factores que pueden modificar el objetivo arriba planteado: cuestiones del donante, del receptor, de la preservación y de la cirugía del transplante. La hipotermia parece ser uno de los ítems más importantes en la preservación de los órganos; éstos deben ser enfriados lo más rápidamente posible entre 0º y 4º C. Pero durante la isquemia fría aparecen daños en órganos como el hígado y sus mecanismos no han sido todavía aclarados. En trabajos recientes la isquemia caliente daña el sistema hepatocelular y durante la isquemia fría el sistema vascular, específicamente el sinusoidal. No está muy claro si la presencia de coloides para mantener la presión osmótica es necesaria para evitar el edema celular. Hoy se sabe que la presencia de algunos coloides es necesaria para este objetivo. Otro de los puntales de la preservación es el daño causado por la reperfusión del órgano isquémico, mecanismos que aún no han sido totalmente comprendidos. Por tales motivos nuestro grupo de trabajo ha desarrollado una solución de preservación Córdoba con el objetivo de estudiar los mecanismos de isquemia-reperfusión. Objetivos generales: * Desarrollar y estudiar el comportamiento de la Solución Córdoba. * Desarrollar diferentes técnicas quirúrgicas en transplantes de hígado de manera de especificar cuál es la más apropiada para la preservación.
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v.4, c. 2
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El descubrimiento de técnicas más sensibles para la detección del T. cruzi en el enfermo chagásico rescató el rol primordial del parásito en la patogenia y actualmente se considera a la enfermedad como el producto de la interacción de los genomas del parásito y el humano. Sin embargo aún queda por responder por qué el 30% de las personas infectadas evolucionan hacia una enfermedad cardíaca y el 70% permanece asintomático aunque con serología persistente; así como también la amplia variabilidad clínica, que puede resultar desde una cardiopatía sin consecuencias hasta producir muerte súbita. En este sentido, se ha descripto que la variabilidad genética del parásito debe estar relacionada con el tropismo del mismo a los diferentes órganos del huésped y, por lo tanto, con la forma clínica de la enfermedad y con las diferencias observadas luego del tratamiento específico de la enfermedad. Es por ello que proponemos determinar la importancia que tiene la composición genética del aislamiento de T. cruzi que infectó al huésped y/o la de los clones diferentes que pueden aparecer en sangre para explicar la amplia variabilidad de síntomas y signos que manifiestan los pacientes con cardiopatía chagásica crónica. Estos resultados contribuirán al entendimiento de la fisiopatogenia de la miocardiopatía chagásica y sus variabilidades clínicas y facilitarán establecer el pronóstico y tratamiento de la enfermedad. Pacientes que concurran al Hospital Materno Infantil de la Provincia de Córdoba, al Hospital Nacional de Clínicas y a la Clínica Sucre serán tratados de acuerdo con la declaración de Helsinki y firmarán consentimiento informado. Se seguirá la evolución clínico-cardiológica por radiografía, electrocardiografía y ecocardiografía. La serología para Chagas se determinará por HAI-ELISA. Se obtendrán muestras de sangre de estos pacientes que se clasificarán con serología positiva para Chagas sin cardiopatía, con cardiopatía leve y con cardiopatía severa. Extracción del ADN: las muestras de sangre periférica de cada paciente se mezclarán con igual volumen de guanidina 6M/EDTA 0,5M. El ADN se extraerá por técnicas convencionales con fenol:cloroformo:alcohol isoamílico y luego se precipitará con etanol. Finalmente la solución se resuspenderá en agua estéril libre de nucleasas. Se conservará a -4º C hasta su uso para la amplificación del contenido de ADN del parásito por la reacción en cadena de la polimerasa (PCR). PCR: la detección de los parásitos en cada muestra se determinará mediante la amplificación por PCR de un fragmento de la región variable correspondiente al minicírculo del ADN del kinetoplasto (kADN), utilizando primers específicos para dicha región. Análisis de la región variable del kADN por enzimas de restricción: la caracterización de los parásitos de cada muestra se realizará además mediante el análisis de los fragmentos producidos luego de la digestión con enzimas de restricción (RFLP). El amplificado producto de la PCR se utilizará para la digestión con las enzimas de restricción y los fragmentos obtenidos serán separados por electroforesis en geles de agarosa 2% teñidos con bromuro de etidio. Análisis de los resultados: Los perfiles de bandas obtenidos luego de la digestión con las enzimas de restricción de las muestras de sangre de los pacientes se correlacionarán con la sintomatología clínica de cada uno de ellos para determinar si existe relación entre la variabilidad genética del parásito infectante y la variedad clínica presentada. Los perfiles de bandas obtenidos luego de la RFLP de las muestras de sangre se analizarán cualitativamente por observación de los geles.
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AbstractBackground:Aerobic fitness, assessed by measuring VO2max in maximum cardiopulmonary exercise testing (CPX) or by estimating VO2max through the use of equations in exercise testing, is a predictor of mortality. However, the error resulting from this estimate in a given individual can be high, affecting clinical decisions.Objective:To determine the error of estimate of VO2max in cycle ergometry in a population attending clinical exercise testing laboratories, and to propose sex-specific equations to minimize that error.Methods:This study assessed 1715 adults (18 to 91 years, 68% men) undertaking maximum CPX in a lower limbs cycle ergometer (LLCE) with ramp protocol. The percentage error (E%) between measured VO2max and that estimated from the modified ACSM equation (Lang et al. MSSE, 1992) was calculated. Then, estimation equations were developed: 1) for all the population tested (C-GENERAL); and 2) separately by sex (C-MEN and C-WOMEN).Results:Measured VO2max was higher in men than in WOMEN: -29.4 ± 10.5 and 24.2 ± 9.2 mL.(kg.min)-1 (p < 0.01). The equations for estimating VO2max [in mL.(kg.min)-1] were: C-GENERAL = [final workload (W)/body weight (kg)] x 10.483 + 7; C-MEN = [final workload (W)/body weight (kg)] x 10.791 + 7; and C-WOMEN = [final workload (W)/body weight (kg)] x 9.820 + 7. The E% for MEN was: -3.4 ± 13.4% (modified ACSM); 1.2 ± 13.2% (C-GENERAL); and -0.9 ± 13.4% (C-MEN) (p < 0.01). For WOMEN: -14.7 ± 17.4% (modified ACSM); -6.3 ± 16.5% (C-GENERAL); and -1.7 ± 16.2% (C-WOMEN) (p < 0.01).Conclusion:The error of estimate of VO2max by use of sex-specific equations was reduced, but not eliminated, in exercise tests on LLCE.
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The main object of the present paper consists in giving formulas and methods which enable us to determine the minimum number of repetitions or of individuals necessary to garantee some extent the success of an experiment. The theoretical basis of all processes consists essentially in the following. Knowing the frequency of the desired p and of the non desired ovents q we may calculate the frequency of all possi- ble combinations, to be expected in n repetitions, by expanding the binomium (p-+q)n. Determining which of these combinations we want to avoid we calculate their total frequency, selecting the value of the exponent n of the binomium in such a way that this total frequency is equal or smaller than the accepted limit of precision n/pª{ 1/n1 (q/p)n + 1/(n-1)| (q/p)n-1 + 1/ 2!(n-2)| (q/p)n-2 + 1/3(n-3) (q/p)n-3... < Plim - -(1b) There does not exist an absolute limit of precision since its value depends not only upon psychological factors in our judgement, but is at the same sime a function of the number of repetitions For this reasen y have proposed (1,56) two relative values, one equal to 1-5n as the lowest value of probability and the other equal to 1-10n as the highest value of improbability, leaving between them what may be called the "region of doubt However these formulas cannot be applied in our case since this number n is just the unknown quantity. Thus we have to use, instead of the more exact values of these two formulas, the conventional limits of P.lim equal to 0,05 (Precision 5%), equal to 0,01 (Precision 1%, and to 0,001 (Precision P, 1%). The binominal formula as explained above (cf. formula 1, pg. 85), however is of rather limited applicability owing to the excessive calculus necessary, and we have thus to procure approximations as substitutes. We may use, without loss of precision, the following approximations: a) The normal or Gaussean distribution when the expected frequency p has any value between 0,1 and 0,9, and when n is at least superior to ten. b) The Poisson distribution when the expected frequecy p is smaller than 0,1. Tables V to VII show for some special cases that these approximations are very satisfactory. The praticai solution of the following problems, stated in the introduction can now be given: A) What is the minimum number of repititions necessary in order to avoid that any one of a treatments, varieties etc. may be accidentally always the best, on the best and second best, or the first, second, and third best or finally one of the n beat treatments, varieties etc. Using the first term of the binomium, we have the following equation for n: n = log Riim / log (m:) = log Riim / log.m - log a --------------(5) B) What is the minimun number of individuals necessary in 01der that a ceratin type, expected with the frequency p, may appaer at least in one, two, three or a=m+1 individuals. 1) For p between 0,1 and 0,9 and using the Gaussean approximation we have: on - ó. p (1-p) n - a -1.m b= δ. 1-p /p e c = m/p } -------------------(7) n = b + b² + 4 c/ 2 n´ = 1/p n cor = n + n' ---------- (8) We have to use the correction n' when p has a value between 0,25 and 0,75. The greek letters delta represents in the present esse the unilateral limits of the Gaussean distribution for the three conventional limits of precision : 1,64; 2,33; and 3,09 respectively. h we are only interested in having at least one individual, and m becomes equal to zero, the formula reduces to : c= m/p o para a = 1 a = { b + b²}² = b² = δ2 1- p /p }-----------------(9) n = 1/p n (cor) = n + n´ 2) If p is smaller than 0,1 we may use table 1 in order to find the mean m of a Poisson distribution and determine. n = m: p C) Which is the minimun number of individuals necessary for distinguishing two frequencies p1 and p2? 1) When pl and p2 are values between 0,1 and 0,9 we have: n = { δ p1 ( 1-pi) + p2) / p2 (1 - p2) n= 1/p1-p2 }------------ (13) n (cor) We have again to use the unilateral limits of the Gaussean distribution. The correction n' should be used if at least one of the valors pl or p2 has a value between 0,25 and 0,75. A more complicated formula may be used in cases where whe want to increase the precision : n (p1 - p2) δ { p1 (1- p2 ) / n= m δ = δ p1 ( 1 - p1) + p2 ( 1 - p2) c= m / p1 - p2 n = { b2 + 4 4 c }2 }--------- (14) n = 1/ p1 - p2 2) When both pl and p2 are smaller than 0,1 we determine the quocient (pl-r-p2) and procure the corresponding number m2 of a Poisson distribution in table 2. The value n is found by the equation : n = mg /p2 ------------- (15) D) What is the minimun number necessary for distinguishing three or more frequencies, p2 p1 p3. If the frequecies pl p2 p3 are values between 0,1 e 0,9 we have to solve the individual equations and sue the higest value of n thus determined : n 1.2 = {δ p1 (1 - p1) / p1 - p2 }² = Fiim n 1.2 = { δ p1 ( 1 - p1) + p1 ( 1 - p1) }² } -- (16) Delta represents now the bilateral limits of the : Gaussean distrioution : 1,96-2,58-3,29. 2) No table was prepared for the relatively rare cases of a comparison of threes or more frequencies below 0,1 and in such cases extremely high numbers would be required. E) A process is given which serves to solve two problemr of informatory nature : a) if a special type appears in n individuals with a frequency p(obs), what may be the corresponding ideal value of p(esp), or; b) if we study samples of n in diviuals and expect a certain type with a frequency p(esp) what may be the extreme limits of p(obs) in individual farmlies ? I.) If we are dealing with values between 0,1 and 0,9 we may use table 3. To solve the first question we select the respective horizontal line for p(obs) and determine which column corresponds to our value of n and find the respective value of p(esp) by interpolating between columns. In order to solve the second problem we start with the respective column for p(esp) and find the horizontal line for the given value of n either diretly or by approximation and by interpolation. 2) For frequencies smaller than 0,1 we have to use table 4 and transform the fractions p(esp) and p(obs) in numbers of Poisson series by multiplication with n. Tn order to solve the first broblem, we verify in which line the lower Poisson limit is equal to m(obs) and transform the corresponding value of m into frequecy p(esp) by dividing through n. The observed frequency may thus be a chance deviate of any value between 0,0... and the values given by dividing the value of m in the table by n. In the second case we transform first the expectation p(esp) into a value of m and procure in the horizontal line, corresponding to m(esp) the extreme values om m which than must be transformed, by dividing through n into values of p(obs). F) Partial and progressive tests may be recomended in all cases where there is lack of material or where the loss of time is less importent than the cost of large scale experiments since in many cases the minimun number necessary to garantee the results within the limits of precision is rather large. One should not forget that the minimun number really represents at the same time a maximun number, necessary only if one takes into consideration essentially the disfavorable variations, but smaller numbers may frequently already satisfactory results. For instance, by definition, we know that a frequecy of p means that we expect one individual in every total o(f1-p). If there were no chance variations, this number (1- p) will be suficient. and if there were favorable variations a smaller number still may yield one individual of the desired type. r.nus trusting to luck, one may start the experiment with numbers, smaller than the minimun calculated according to the formulas given above, and increase the total untill the desired result is obtained and this may well b ebefore the "minimum number" is reached. Some concrete examples of this partial or progressive procedure are given from our genetical experiments with maize.
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1. The author suggests a tecnique for the determination of vitamin A on shark liver oils in industrial plants. The advantages of using oly four ml. of reagent and of permitting a quickly rigorous reading by photoeletric cell, contribute to the possibility of the examination of a great number of samples daily; 2. It is described a survey on the vitamin A content of oils from shark livers, which has been made at the Finishing School Darcy Vargas, Marammaia Is., Rio de Janeiro State. The conclusions are the following: a) Male individuals have showed generally tendency for higher vitamin A pontency oils; b) The size of the fish does not interfere in the vitamin content of the oil (graphic 4); c) The data collected upon 3.085 individuals led to the conclusion that some species are richer in the reservated vitamin although it was possible to catch in the same specie fishes with widely variable potency in vitamin A. One fish belonging to the specie C. lamia produced the highest vitamin potency oil with 167.712 international units per gram; d) The fishing season appears to have no influence on the oils; e) The adventitous food seems to be the most important factor affecting the content of vitamin A of the shark-liver oils; 3. The presence and the quantity of vitamin D in those oils was investigated and two of the determinations are presented.
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Os autores analisam, dentro do campo da higiene industrial, as condições sanitárias de um grande estabelecimento de artes gráficas no Rio de Janeiro a Imprensa Nacional, o regime de trabalho aí instituído; e revistam, um a um, os processos industriais executados, especialmente atenção às causas potenciais de acidentes, que aí existem, e também àquelas cuja responsabilidade já se positivou. Ressaltam, no ponto de vista doutrinário, os diversos fatores que podem interferir na ocorrência dêsses infortúnios de trabalho; e, mostrando como tem sido superestimada a culpabilidade das máquinas, realçam a importância dos fatores individuais idade e experiência do operário, doenças e defeitos físicos, atitude mental, constituição fisio-psicologica. Salientam como a evidência da predisposição a acidentes, que se reconheça existir, possibilita manter os operários, já em função ou pretendentes a emprego, debaixo de supervisão rigorosa; e oportuniza mesmo colocá-los melhormente, em tarefas que, no máximo, só lhes possam acarretar aciden¬tes de natureza leve. Mostram que, no período em estudo 1942 a 1945, houve ao todo 1.123 acidentes na I.N., com o coeficiente geral de incidência de 220.3 por 1.000 operários expostos. O coeficiente de acidentes médios ou graves foi de 32 por mil, no mesmo período. Apontando ainda a descenção, no quatriênio, das curvas relativas tanto aos acidentes totais, como aos médios ou graves e aos produzidos por máquinas, dão a ver que a taxa, que retrata essa descida, é, para os primeiros, 3.5 e cêrca de 10 vêzes maior, respectivamente, que a dos acidentes por máquinas e dos médios ou graves. Mostra-se significativa a diferença, entre a tendência observada nas curvas dos acidentes em geral e dos médios ou graves; já isso, porém, não acontece, quanto à diferença entre a primeira e a dos acidentes produzidos por máquinas. De fato, sendo os valores de t respec¬tivamente, dc 2.987 e 2.333, só o primeiro fica, na tabela de Fisher, acima do nível de significância P = 5%, para v = 4 graus de liberdade (2.776). Na base dos coeficientes de incidência por 1.000 operários, em cada uma das seções da Imprensa Nacional, verifica-se terem sido eles mais elevados nas oficinas de mecânica e carpintaria e na turma de eletricidade; já quanto a oficinas pròpriamente gráficas, mostram-se mais altos os coeficientes nas de rotogravura, estereotipia e impressão. Em 8 das 14 seções, depois de baixa pronunciada do primeiro para o segundo ano e deste para o terceiro, alteou-se, no fim do período (1945), a curva de acidentes. Só na oficina mecânica, veio ela sempre em declínio. Levando em conta a severidade dos acidentes, verifica-se que, no período em estudo, os coeficientes relativos aos acidentes médios ou graves, calculados sobre 1.000 operários expostos, foram mais altos nas oficinas auxiliares de mecânica e carpintaria, seguidos, também aqui, dos ocorridos na rotogravura e estereotipia. Analisando os acidentes pelas suas causas imediatas, apontam os auto¬res ter tocado, no período e em qualquer dos quatro anos, às máquinas, a maior responsabilidade; seguiram-se-lhes os instrumentos e objetos traumatizantes, as quédas e choques. Todavia. na base do percentual dos acidentes médios ou graves sobre o total respectivo. regista-se haver contraste nítido, respeito à severidade, entre um primeiro grupo de causas de acidentes, compreendendo o esforço, os corpos estranhos (dada a sua frequente localização ocular) e os agentes causadores de queimaduras e um segundo grupo, englobando as de¬mais causas, salvo as máquinas, que ficam de permeio. A responsabilidade dos corpos estranhos e das queimaduras, como causas de acidentes de severidade, mostra o cuidado que devem merecer os recursos de proteção individual para os operários. Tabulando por meses, e na base de horas de trabalho, os acidentes ocorridos, verifica-se que a maior taxa corresponde ao verão (146.2 por 1.000 horas de trabalho), seguindo-se-lhe o outono (122.0), vindo depois o inverno e a primavera, nesta ordem. Não sendo, no Rio de Janeiro, cidade situada na zona tropical, tão nítida. como em outras de clima temperado, a diferenciação estacional, tomaram os autores para comparação os quadrimestres mais quente (dezembro a marco) e mais frio (junho a setembro), e verificaram que a taxa de acidentes no primeiro, de 136.8 por 1.000 horas de trabalho, contrasta com a relativa ao segundo período 125.4. Levando apenas em conta os acidentes médios ou graves, não mais se aponta a diferença verificada: tocam, realmente, aos dois quadrimestres, as taxas de 17.2 e 19.7. É muito nítida, porém, a variação no pertinente aos acidentes leves - 119.6 e 105.8, sôbre os quais, segundo Osborne e Vernon, parece clara a influência da temperatura ambiente: de fato, nas verificações desses investigadores, a frequência relativa de acidentes subiu de 102 para 122, quando a temperatura ascendeu de 20°4 C a 25°2 C. No Rio de Janeiro, a temperatura media, no quadrimestre mais quente, foi dc 25°. 2 C e, no mais frio, de 20°.4 C, idênticos os valores aos dos dados de Osborne e Vernon, como pràticamente também o são as taxas de acidentes leves, aqui e ali observadas em função de tais variações. Não se mostrando de todo satisfatórios os dados de 123 das 209 fotometrias realizadas na Imprensa Nacional (59%), apontam os autores tornar-se difícil aquilatar a responsabilidade exata da deficiência de iluminamento, nos acidentes ocorridos. Salientam, todavia, que, mau grado a construção do edifício e as instalações de iluminação artificial terem sido projetadas por técnicos nesses assuntos, a verdade é que os esperados benefícios se viram prejudicados: em parte, pela colocação, nem sempre a mais satisfatória, de máquinas e operários: também, porque muitos dos pontos de luz artificial estão inaproveitados e, ainda, por não ter sido feita de maneira adequada a substituição de unidades defeituosas. Há a consignar, ademais, o descuido, por vezes grande, na limpeza dessas unidades e das superfícies transmissoras de luz natural e a ocorrência de ofuscamento para os operários em diversas situações...
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Foram analisadas 326 amostras de fezes diarréicas provenientes de crianças entre 0 a 5 anos, internadas em dois hospitais de reidratação do Recife, Pernambuco. Foi introduzido o meio de Cary & Blair a 4 -C para transporte das fezes, não havendo diferença no percentual de isolamento quando o material permaneceu no meio de transporte entre 3 a 7 dias. Dos exames, 19,02% estavam positivos para um ou mais dos agentes bacterianos pesquisados, tendo sido encontrados 26 Salmonella de 3 espécies, 21 Escherichia coli enteroinvasiva, 10 Shigella de 3 sorotipos e 1 Yersisnia enterocolitica.
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Accidental transmission of Chagas' disease to man by blood transfusion is a serious problem in Latin-America. This paper describes the testing of several synthetic, semi-synthetic, and natural compounds for their activity against blood trypomastigotes in vitro at 4-C. The compounds embody several types of chemical structures: benzoquinone, naphthoquinone, anthracenequinone, phenanthrenequinone, imidazole, piperazine, quinoline, xanthene, and simple benzenic and naphthalenic derivates. Some of them are for the first time tested against Trypanosoma cruzi. The toxic effect these compounds on this parasite was done by two quite distinct sets of experiments. In one set, the compounds were added to infected blood as ethanolic solution. In this situation the most active one was a furan-1, 2-naphthoquinone, in the same range as gentian violet, a new fact to be considered in the assessment of structure-activity relationships in this class of compounds. In other set, we tentatively evaluated the biological activity of water insoluble compounds by adding them in a pure form without solvent into infected blood. In this way some appear to be very active and it was postulated that the effectiveness of such compounds must result from interactions between them and specific blood components.
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BACKGROUND: Antiretroviral compounds have been predominantly studied in human immunodeficiency virus type 1 (HIV-1) subtype B, but only ~10% of infections worldwide are caused by this subtype. The analysis of the impact of different HIV subtypes on treatment outcome is important. METHODS: The effect of HIV-1 subtype B and non-B on the time to virological failure while taking combination antiretroviral therapy (cART) was analyzed. Other studies that have addressed this question were limited by the strong correlation between subtype and ethnicity. Our analysis was restricted to white patients from the Swiss HIV Cohort Study who started cART between 1996 and 2009. Cox regression models were performed; adjusted for age, sex, transmission category, first cART, baseline CD4 cell counts, and HIV RNA levels; and stratified for previous mono/dual nucleoside reverse-transcriptase inhibitor treatment. RESULTS: Included in our study were 4729 patients infected with subtype B and 539 with non-B subtypes. The most prevalent non-B subtypes were CRF02_AG (23.8%), A (23.4%), C (12.8%), and CRF01_AE (12.6%). The incidence of virological failure was higher in patients with subtype B (4.3 failures/100 person-years; 95% confidence interval [CI], 4.0-4.5]) compared with non-B (1.8 failures/100 person-years; 95% CI, 1.4-2.4). Cox regression models confirmed that patients infected with non-B subtypes had a lower risk of virological failure than those infected with subtype B (univariable hazard ratio [HR], 0.39 [95% CI, .30-.52; P < .001]; multivariable HR, 0.68 [95% CI, .51-.91; P = .009]). In particular, subtypes A and CRF02_AG revealed improved outcomes (multivariable HR, 0.54 [95% CI, .29-.98] and 0.39 [95% CI, .19-.79], respectively). CONCLUSIONS: Improved virological outcomes among patients infected with non-B subtypes invalidate concerns that these individuals are at a disadvantage because drugs have been designed primarily for subtype B infections.