948 resultados para lotus embryo
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El presente trabajo surge del análisis del Informe Warnock y muestra cómo el Informe influyó en diferentes legislaciones, al tiempo que describe su impacto y la nueva forma de ver y conocer, a partir de éste, ciertos temas por parte del ciudadano común. Se analizará cada uno de los temas, por demás controvertidos, planteados en el Informe, entre los que se pueden enumerar los siguientes: inicio de la vida humana, tratamientos de fertilización asistida, donantes anónimos, criopreservación de embriones y alquiler de vientres. El Informe Warnock fue tomado como referencia para la redacción de distintas normas legales en todo el mundo. De allí su trascendencia, que marca hasta hoy un antes y un después en la sociedad científica en general y en la sociedad civil en particular.
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Resumen: Ciertamente, ningún dato biológico es por sí mismo suficiente para describir el milagro de la vida. Sin embargo, cuando la ciencia es entendida como un servicio a la humanidad, los científicos son capaces de brindarnos los conocimientos necesarios y suficientes para percibir una presencia personal desde el primer instante de la vida de cada embrión humano.
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Resumen: El texto analiza las afirmaciones defendidas sobre el estatuto entitativo del embrión y de la solución ética a la cuestión de la legitimidad del aborto provocado, en un trabajo del jurista y pensador italiano, Luigi Ferrajoli, defensor de lo que puede denominarse el bioderecho “liberal”, con una posición decisivamente tomada en favor de la eticidad del aborto. Se advierte que cada uno de sus argumentos parte de una premisa: considerar las afirmaciones de la Iglesia Católica como inexorablemente erróneas, especialmente en lo atinente a la relación entre moral y derecho. La consecuencia más grave de este tipo de argumentación es la deriva anti-humanista del pensamiento contemporáneo con la consiguiente pérdida de toda racionalidad lógica.
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El Informe Warnock aborda parte de los problemas que surgen a partir del diagnóstico de esterilidad, tanto para los individuos como para toda la sociedad. Justifica el recurso de técnicas para solucionar la imposibilidad de concebir. Se describen los distintos procedimientos dando las recomendaciones para cada una de las técnicas empleadas hasta el momento: inseminación artificial (homóloga y heteróloga), fecundación in vitro, donación de óvulos y embriones, útero subrogado. Aborda el uso extendido de las técnicas de tratamiento de la esterilidad para otros fines: evitar la transmisión de enfermedades hereditarias y selección de sexo. Asimismo, realiza sugerencias para una práctica correcta en todos los procedimientos y propone seguimientos y revisiones. En paralelo al análisis exhaustivo de la Comisión Warnock, se actualizan los datos procedimentales, evaluando los aspectos éticos y la eficiencia de algunas técnicas.
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Resumen: El artículo aborda el tema del estatus jurídico del ser humano en estado embrionario en el proyecto de nuevo Código Civil y Comercial presentado en 2012. Se parte de la cuestión de que el orden jurídico no crea la personalidad, sino que la reconoce en el ser humano por el solo hecho de serlo y se analiza el Código Civil de Vélez Sársfield en sus diversas interpretaciones. Se concluye que a la luz de la Constitución Nacional y el resto del derecho positivo vigente el ser humano en estado embrionario o fetal, desde el momento mismo de su concepción, goza de todos los derechos reconocidos y garantizados por el orden jurídico. En ese marco, se analiza el Artículo 19 del proyecto y se observa que realiza una arbitraria e injusta discriminación al establecer dos momentos para el comienzo de la existencia de la persona. Además, la redacción deja en una indefinición jurídica al ser humano fecundado y concebido extrauterinamente antes de su implantación. También se analiza el tema en relación con la propuesta de articulado referido al cuerpo humano (Art. 17). Se considera el peligro de cosificación y atentado contra la dignidad humana que encierra la propuesta.
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Resumen: En los últimos 30 años han ocurrido grandes avances en el área de la medicina reproductiva, no solo respecto a los desarrollos científicotécnicos, sino que también han surgido una gran cantidad de cuestionamientos éticos, legales y sociales vinculados a la definición del concepto de dificultad en la concepción; del estatuto de embrión y la posibilidad de su manipulación; y la conformación de familias por la intervención de terceras personas, ya sea por la dación de gametas, embriones, o la subrogación de úteros. En este trabajo se presentará una revisión de los aspectos ético morales vinculados a las técnicas de fertilización asistida y su repercusión en la sociedad.
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El Informe Warnock, basado en una filosofía utilitarista, presenta principios que muestran el ideal moral social en relación con la manipulación y destrucción de embriones humanos hasta el día 14 de fecundación (pre-embrión), donde la ley es independiente de las creencias. El Personalismo, basado en la ley moral natural, presenta una concepción filosófica basada en valores fundamentales: el derecho a la vida desde la concepción y la dignidad del ser humano.
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The toxicity of sediments in Sabine Lake, Texas, and adjoining Intracoastal Waterway canals was determined as part of bioeffects assessment studies managed by NOAA’s National Status and Trends Program. The objectives of the survey were to determine: (1) the incidence and degree of toxicity of sediments throughout the study area; (2) the spatial patterns (or gradients) in chemical contamination and toxicity, if any, throughout the study area; (3) the spatial extent of chemical contamination and toxicity; and (4) the statistical relationships between measures of toxicity and concentrations of chemicals in the sediments. Surficial sediment samples were collected during August, 1995 from 66 randomly-chosen locations. Laboratory toxicity tests were performed as indicators of potential ecotoxicological effects in sediments. A battery of tests was performed to generate information from different phases (components) of the sediments. Tests were selected to represent a range in toxicological endpoints from acute to chronic sublethal responses. Toxicological tests were conducted to measure: reduced survival of adult amphipods exposed to solid-phase sediments; impaired fertilization success and abnormal morphological development in gametes and embryos, respectively, of sea urchins exposed to pore waters; reduced metabolic activity of a marine bioluminescent bacteria exposed to organic solvent extracts; and induction of a cytochrome P-450 reporter gene system in exposures to solvent extracts of the sediments. Chemical analyses were performed on portions of each sample to quantify the concentrations of trace metals, polynuclear aromatic hydrocarbons, and chlorinated organic compounds. Correlation analyses were conducted to determine the relationships between measures of toxicity and concentrations of potentially toxic substances in the samples. Based upon the compilation of results from chemical analyses and toxicity tests, the quality of sediments in Sabine Lake and vicinity did not appear to be severely degraded. Chemical concentrations rarely exceeded effects-based numerical guidelines, suggesting that toxicant-induced effects would not be expected in most areas. None of the samples was highly toxic in acute amphipod survival tests and a minority (23%) of samples were highly toxic in sublethal urchin fertilization tests. Although toxic responses occurred frequently (94% of samples) in urchin embryo development tests performed with 100% pore waters, toxicity diminished markedly in tests done with diluted pore waters. Microbial bioluminescent activity was not reduced to a great degree (no EC50 <0.06 mg/ml) and cytochrome P-450 activity was not highly induced (6 samples exceeded 37.1 ug/g benzo[a]pyrene equivalents) in tests done with organic solvent extracts. Urchin embryological development was highly correlated with concentrations of ammonia and many trace metals. Cytochrome P450 induction was highly correlated with concentrations of a number of classes of organic compounds (including the polynuclear aromatic hydrocarbons and chlorinated compounds). (PDF contains 51 pages)
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A five months survey was conducted to identify the aquatic macrophytes in fishponds and reservoirs in Makurdi (Benue State, Nigeria) between August and December 1999. A total of 3-prominent aquatic macrophytes were identified: Ipomoea aquatica, Nymphae lotus and Echinochloa pyramidalis at two-study sites (site 1, receives organic manure effluent from a cattle ranch, site 2, receives inorganic fertilizer through application). Ipomoea aquatica were found restricted to site l, while Nymphae lotus and Echinochloa pyramidalis were found associated with site 2. Analysis of the results indicates high level of ammonia-nitrogen at site 1 compared to site 2. Mineral analysis of the plant tissues indicate high level of iron in Ipomoea aquatica and Nymphae lotus. Mineral concentration were found to be significantly higher (P,L, 0.05) in Ipomoea aquatica and Nymphae lotus when compared with concentration in Echinochloa pyramidalis
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The embryonic development in Clarias gariepinus was studied under laboratory conditions. The developmental stages of eggs starting from first cleavage were examined microscopically. Photomicroscope was used to take important stages of segmentation, blastulation, differentiation of embryo and hatching. The films of the photograph were developed and printed for each stage produced. The accurate timing and detailed description of each stage was done. The results show that the blastodisc (Polar cap) appeared about 35 minutes after fertilization and the first cleavage dividing the blastodisc into two blastomeres occurs 15 minutes after polar cap formation. Details of the developmental stages of embryos and the timing from one stage to the other were described. The larva shook off the shell and emerged completely from the egg case about 22 hours after fertilization at a water temperature of 25.1 degree C. The accurate determination of the time of initiation of first mitosis is of great importance in fish culture and breeding especially in the production of tetraploids
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A five months survey was conducted to identify the aquatic macrophytes in fishponds and reservoirs in Makurdi (Benue State, Nigeria) between August and December 1999. A total of 3-prominent aquatic macrophytes were identified: Ipomoea aquatica, Nymphae lotus and Echinochloa pyramidalis at two-study sites (site 1, receives organic manure effluent from a cattle ranch, site 2, receives inorganic fertilizer through application). Ipomoea aquatica were found restricted to site l, while Nymphae lotus and Echinochloa pyramidalis were found associated with site 2. Analysis of the results indicates high level of ammonia-nitrogen at site 1 compared to site 2. Mineral analysis of the plant tissues indicate high level of iron in Ipomoea aquatica and Nymphae lotus. Mineral concentration were found to be significantly higher (P,L, 0.05) in Ipomoea aquatica and Nymphae lotus when compared with concentration in Echinochloa pyramidalis
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Diploid meiotic gynogenesis was induced in African catfish, Heterobranchus longifilis by injection of 0.5ml/kg ovaprim on the breeders, followed by application of UV light irradiation on the spermatozoa and temperature shocking of activated eggs. Diploidy was restored by shocking haploid activated eggs at 5 degree C for 40 minutes. The normal control spermatozoa did not receive any UV irradiation nor temperature shock, while the haploid control spermatozoa were irradiated, but did not receive cold shock. The percentage hatchability in the treated group was 25%, while in the control it was 53%. Less than 15 fingerlings had morphological aberrations. After two weeks of indoor rearing, the survival percentage of the treated group was 45% in the control experiment. Cytogenetic analysis of chromosomes revealed 25 chromosomes in the haploid embryo and 50 chromosomes each in diploid gynogenesis and normal diploid control
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Triploid was induced in African Catfish (Heterobranchus longifilis) by cold shocking activated eggs at 5 degree C for forty minutes starting 3-4 minutes after fertilization. Triploidy was confirmed from mitotic chromosomes prepared from embryo which showed 100% triploidy in the cold shocking treatment and 100% diploidy in the control treatment
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Studies on development of H. longifilis (Curvier and Valenciennes, 1840) were conducted at a temperature of 25EC ( 1Ec) in aquaria tanks continuous development were monitored with the use of wild Heerbrugy photomacroscope and length of yolk and larva were monitored using Stereo Olympus microscope with ocular micrometer. The division into animal and vegetal poles was observed 22 minutes after activation. The first cleavage occurred 65 minutes after activation while the second division which was perpendicular to the first line of division occurred 74 minutes after activation. This was quickly followed by the third and fourth cleavage at 80th and 82nd minutes after activation respectively. Morular stage was reached at 4 hours 20 minutes with formation of optic bud at 14 hours 35 minutes. (DBO) Developing embryo hatched after 27 hours of activation at a mean length of 6.63 and mean yolk length of 2.17. Yolk size decrease at an average rate of 38.5 % till the 5th day of total absorption. Growth of larvae proceeded faster in tail-anus region than in anus-snout portion of the body. The rate of yolk absorption and larva development (survival) as monitored in this work gives important information in Research and development programme for H. longifilis larva - an important aspect of Research development and implementation of appropriate technologies in small scale fisheries
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Life is the result of the execution of molecular programs: like how an embryo is fated to become a human or a whale, or how a person’s appearance is inherited from their parents, many biological phenomena are governed by genetic programs written in DNA molecules. At the core of such programs is the highly reliable base pairing interaction between nucleic acids. DNA nanotechnology exploits the programming power of DNA to build artificial nanostructures, molecular computers, and nanomachines. In particular, DNA origami—which is a simple yet versatile technique that allows one to create various nanoscale shapes and patterns—is at the heart of the technology. In this thesis, I describe the development of programmable self-assembly and reconfiguration of DNA origami nanostructures based on a unique strategy: rather than relying on Watson-Crick base pairing, we developed programmable bonds via the geometric arrangement of stacking interactions, which we termed stacking bonds. We further demonstrated that such bonds can be dynamically reconfigurable.
The first part of this thesis describes the design and implementation of stacking bonds. Our work addresses the fundamental question of whether one can create diverse bond types out of a single kind of attractive interaction—a question first posed implicitly by Francis Crick while seeking a deeper understanding of the origin of life and primitive genetic code. For the creation of multiple specific bonds, we used two different approaches: binary coding and shape coding of geometric arrangement of stacking interaction units, which are called blunt ends. To construct a bond space for each approach, we performed a systematic search using a computer algorithm. We used orthogonal bonds to experimentally implement the connection of five distinct DNA origami nanostructures. We also programmed the bonds to control cis/trans configuration between asymmetric nanostructures.
The second part of this thesis describes the large-scale self-assembly of DNA origami into two-dimensional checkerboard-pattern crystals via surface diffusion. We developed a protocol where the diffusion of DNA origami occurs on a substrate and is dynamically controlled by changing the cationic condition of the system. We used stacking interactions to mediate connections between the origami, because of their potential for reconfiguring during the assembly process. Assembling DNA nanostructures directly on substrate surfaces can benefit nano/microfabrication processes by eliminating a pattern transfer step. At the same time, the use of DNA origami allows high complexity and unique addressability with six-nanometer resolution within each structural unit.
The third part of this thesis describes the use of stacking bonds as dynamically breakable bonds. To break the bonds, we used biological machinery called the ParMRC system extracted from bacteria. The system ensures that, when a cell divides, each daughter cell gets one copy of the cell’s DNA by actively pushing each copy to the opposite poles of the cell. We demonstrate dynamically expandable nanostructures, which makes stacking bonds a promising candidate for reconfigurable connectors for nanoscale machine parts.