24 research outputs found

    Comparison of conventional BLUP and single-step genomic BLUP evaluations for yearling weight and carcass traits in Hanwoo beef cattle using single trait and multi-trait models

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    [EN] Hanwoo, an important indigenous and popular breed of beef cattle in Korea, shows rapid growth and has high meat quality. Its yearling weight (YW) and carcass traits (backfat thickness, carcass weight- CW, eye muscle area, and marbling score) are economically important for selection of young and proven bulls. However, measuring carcass traits is difficult and expensive, and can only be performed postmortem. Genomic selection has become an appealing procedure for genetic evaluation of these traits (by inclusion of the genomic data) along with the possibility of multi-trait analysis. The aim of this study was to compare conventional best linear unbiased prediction (BLUP) and single-step genomic BLUP (ssGBLUP) methods, using both single-trait (ST-BLUP, ST-ssGBLUP) and multi-trait (MT-BLUP, MT-ssGBLUP) models to investigate the improvement of breeding-value accuracy for carcass traits and YW. The data comprised of 15,279 phenotypic records for YW and 5,824 records for carcass traits, and 1,541 genotyped animals for 34,479 single-nucleotide polymorphisms. Accuracy for each trait and model was estimated only for genotyped animals by five-fold cross-validation. ssGBLUP models (ST-ssGBLUP and MT-ssGBLUP) showed ~19% and ~36% greater accuracy than conventional BLUP models (ST-BLUP and MT-BLUP) for YW and carcass traits, respectively. Within ssGBLUP models, the accuracy of the genomically estimated breeding value for CW increased (19%) when ST-ssGBLUP was replaced with the MT-ssGBLUP model, as the inclusion of YW in the analysis led to a strong genetic correlation with CW (0.76). For backfat thickness, eye muscle area, and marbling score, ST- and MT-ssGBLUP models yielded similar accuracy. Thus, combining pedigree and genomic data via the ssGBLUP model may be a promising way to ensure acceptable accuracy of predictions, especially among young animals, for ongoing Hanwoo cattle breeding programs. MT-ssGBLUP is highly recommended when phenotypic records are limited for one of the two highly correlated genetic traits.Mehrban, H.; Lee, DH.; Naserkheil, M.; Moradi, MH.; Ibáñez-Escriche, N. (2019). Comparison of conventional BLUP and single-step genomic BLUP evaluations for yearling weight and carcass traits in Hanwoo beef cattle using single trait and multi-trait models. PLoS ONE. 1-13. https://doi.org/10.1371/journal.pone.0223352S113Choi, T. J., Alam, M., Cho, C. I., Lee, J. G., Park, B., Kim, S., … Roh, S. H. (2015). Genetic parameters for yearling weight, carcass traits, and primal-cut yields of Hanwoo cattle1. Journal of Animal Science, 93(4), 1511-1521. doi:10.2527/jas.2014-7953Choy, Y. H., Park, B. H., Choi, T. J., Choi, J. G., Cho, K. H., Lee, S. S., … Kim, H. S. 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    α-Helical Peptides on Plasma-Treated Polymers Promote Ciliation of Airway Epithelial Cells

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    Airway respiratory epithelium forms a physical barrier through intercellular tight junctions, which prevents debris from passing through to the internal environment while ciliated epithelial cells expel particulate-trapping mucus up the airway. Polymeric solutions to loss of airway structure and integrity have been unable to fully restore functional epithelium. We hypothesized that plasma treatment of polymers would permit adsorption of α-helical peptides and that this would promote functional differentiation of airway epithelial cells. Five candidate plasma compositions are compared; Air, N2, H2, H2:N2 and Air:N2. X-ray photoelectron spectroscopy shows changes in at% N and C 1s peaks after plasma treatment while electron microscopy indicates successful adsorption of hydrogelating self-assembling fibres (hSAF) on all samples. Subsequently, adsorbed hSAFs support human nasal epithelial cell attachment and proliferation and induce differentiation at an air-liquid interface. Transepithelial measurements show that the cells form tight junctions and produce cilia beating at the normal expected frequency of 10-11 Hz after 28 days in culture. The synthetic peptide system described in this study offers potential superiority as an epithelial regeneration substrate over present “gold-standard” materials, such as collagen, as they are controllable and can be chemically functionalised to support a variety of in vivo environments. Using the hSAF peptides described here in combination with plasma-treated polymeric surfaces could offer a way of improving the functionality and integration of implantable polymers for aerodigestive tract reconstruction and regeneration

    Effect of plasma surface modification on the biocompatibility of UHMWPE

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    In this paper active screen plasma nitriding (ASPN) is used to chemically modify the surface of UHMWPE. This is an unexplored and new area of research. ASPN allows the homogeneous treatment of any shape or surface at low temperature; therefore, it was thought that ASPN would be an effective technique to modify organic polymer surfaces. ASPN experiments were carried out at 120 °C using a dc plasma nitriding unit with a 25% N2 and 75% H2 atmosphere at 2.5 mbar of pressure. UHMWPE samples treated for different time periods were characterized by nanoindentation, FTIR, XPS, interferometry and SEM. A 3T3 fibroblast cell line was used for in vitro cell culture experiments. Nanoindentation of UHMWPE showed that hardness and elastic modulus increased with ASPN treatment compared to the untreated material. FTIR spectra did not show significant differences between the untreated and treated samples; however, some changes were observed at 30 min of treatment in the range of 1500–1700 cm−1 associated mainly with the presence of N−H groups. XPS studies showed that nitrogen was present on the surface and its amount increased with treatment time. Interferometry showed that no significant changes were observed on the surfaces after the treatment. Finally, cell culture experiments and SEM showed that fibroblasts attached and proliferated to a greater extent on the plasma-treated surfaces leading to the conclusion that ASPN surface treatment can potentially significantly improve the biocompatibility behaviour of polymeric materials

    Seaweed polysaccharide-based hydrogels used for the regeneration of articular cartilage

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    This manuscript provides an overview of the in vitro and in vivo studies reported in the literature focusing on seaweed polysaccharides based hydrogels that have been proposed for applications in regenerative medicine, particularly, in the field of cartilage tissue engineering. For a better understanding of the main requisites for these specific applications, the main aspects of the native cartilage structure, as well as recognized diseases that affect this tissue are briefly described. Current available treatments are also presented to emphasize the need for alternative techniques. The following part of this review is centered on the description of the general characteristics of algae polysaccharides, as well as relevant properties required for designing hydrogels for cartilage tissue engineering purposes. An in-depth overview of the most well known seaweed polysaccharide, namely agarose, alginate, carrageenan and ulvan biopolymeric gels, that have been proposed for engineering cartilage is also provided. Finally, this review describes and summarizes the translational aspect for the clinical application of alternative systems emphasizing the importance of cryopreservation and the commercial products currently available for cartilage treatment.Authors report no declarations of interest. Authors thank the Portuguese Foundation for Science and Technology (FCT) for the PhD fellowship of Elena G. Popa (SFRH/BD/64070/2009) and research project (MIT/ECE/0047/2009). The research leading to these results has received funding from the European Union's Seventh Framework Programme (FP7/2007-2013) under grant agreement no REGPOT-CT2012-316331-POLARIS

    The role of electroweak penguin and magnetic dipole QCD penguin on hadronic b Quark Decays

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    This research, works with the effective Hamiltonian and the quark model. Using, the decay rates of matter-antimatter of b quark was investigated. We described the effective Hamiltonian theory which was applied to the calculation of current-current (Q1,2), QCD penguin (Q3,…,6), magnetic dipole (Q8) and electroweak penguin (Q7,…,10) decay rates. The gluonic penguin structure of hadronic decays b→qkg→qkqiqj was studied through the Wilson coefficients of the effective Hamiltonian. The branching ratios of the Tree-Level, effective Hamiltonian, effective Hamiltonian including electroweak penguin, effective Hamiltonian including magnetic dipole and the effective Hamiltonian including electroweak penguin and magnetic dipole b quark decays b→qiqkqj, qi{u,c}, qk{d,s}, qj{u,c} have been calculated. It was shown that, the electroweak penguin and magnetic dipole contributions in b quark decays are small and current-current operators are dominated

    Matter-antimatter asymmetry of b-quark and B-meson decays

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    This thesis works with the Standard Model, the quark model and the Factorization method. We investigate the decay rates of matter-antimatter of b quark and B meson decays. We presented the Standard Model for families of quarks at tree-level b decays b #-># q_iq_kq_j_-_b_a_r, q_i is an element of #left brace#u,c#right brace#, q_k is an element of #left brace#d,s#right brace#, q_j_-_b_a_r is an element of #left brace#u-bar, c-bar#right brace# without QCD correction. The gluonic penguin of hadronic b decays b #-># q_kg #-># q_kq_iq_j_-_b_a_r is studied through the Wilson coefficients of the effective Hamiltonian. Also we obtain the decay rates of tree plus penguin to compare with the effective Hamiltonian by current-current plus penguin operators. We describe effective Hamiltonian theory and apply this theory to the calculation of current-current (Q_1_,_2), QCD penguin (Q_3_,_._._._,_6), magnetic dipole (Q_8) and electroweak penguin (Q'_7_,_._._._,_1_0) decay rates. We defined the simple coefficients d_1_,_._._._,d_6_,_8 according to gluon penguin structure and used in the effective Hamiltonian theory. B mesons are bound states of a quark and a light quark. While the binding is provided by the strong interaction B mesons can decay by the weak interaction. The fact that only B mesons can be studied and not free b quarks complicate the extraction of Standard Model parameters from experimental results. Using the spectator quarks for the structuralization of the spectator model for the calculation of B meson decays. We show, in those decays in which two processes contribute to the same decay mode, that the two processes add coherently. Colour transparency is the basis for the factorization hypothesis, in which amplitudes factorize into products of two colour singlet current matrix elements. This ansatz has been widely used in heavy-quark physics, as it is almost the only way to treat exclusive hadronic decays. So we describe the factorization method for calculation of leptonic, semileptonic and nonleptonic B meson decays as well. We compared the B , D and K mesons and have an isospin analysis of the spectator model for various decays. Also we calculated the decay rates of charm quark, W-exchange and W-annihilation for B and D meson. We show that, the W-annihilation term is small for B and D mesons, but W-exchange term is small for B but larger for D mesons. (author)SIGLEAvailable from British Library Document Supply Centre-DSC:DXN037547 / BLDSC - British Library Document Supply CentreGBUnited Kingdo
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