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141.
Hilal M Rodríguez-Montelongo L Rosa M Gallardo M González JA Interdonato R Rapisarda VA Prado FE 《Photochemistry and photobiology》2008,84(6):1480-1486
Effects of solar and supplemental UV-B radiation on UV-B-absorbing compounds and malondialdehyde (MDA) accumulations in the peel of lemons collected in summer and winter were analyzed. UV-B-absorbing compounds were higher in flavedo than in albedo tissue in both seasons; however, the highest values were observed in summer. These compounds were also higher in outer than in inner flavedo surface. Lemons were categorized as sun-, semisun- and shaded-lemon according to localization inside the tree canopy. Depending on-tree localization UV-B-absorbing compounds were higher in flavedo of sun-lemon than in semisun- and shaded-lemon. Supplementary UV-B radiation (22 kJ m(-2) day(-1) UV-BBE) induced UV-B-absorbing compound synthesis in on-tree and postharvest lemons. Two minutes of supplemental UV-B irradiation in summer lemons produced a strong increment (300%) of UV-B-absorbing compound content, whereas in winter lemons a slight increase (30%) was observed only after 3 min of irradiation. By contrast, UV-B-absorbing compound accumulation was not observed in albedo. MDA accumulation showed approximately a similar trend of UV-B-absorbing compounds. According to our results, solar UV-B was not required for UV-B-absorbing compound accumulation in lemon peel. Relationships between UV-B-absorbing compounds, MDA, reactive oxygen species and pathogen protection are also discussed. 相似文献
142.
Botella P Ortega I Quesada M Madrigal RF Muniesa C Fimia A Fernández E Corma A 《Dalton transactions (Cambridge, England : 2003)》2012,41(31):9286-9296
Combined chemo and photothermal therapy in in vitro testing has been achieved by means of multifunctional nanoparticles formed by plasmonic gold nanoclusters with a protecting shell of porous silica that contains an antitumor drug. We propose a therapeutic nanoplatform that associates the optical activity of small gold nanoparticles aggregates with the cytotoxic activity of 20(S)-camptothecin simultaneously released for the efficient destruction of cancer cells. For this purpose, a method was used for the controlled assembly of gold nanoparticles into stable clusters with a tailored absorption cross-section in the vis/NIR spectrum, which involves aggregation in alkaline medium of 15 nm diameter gold colloids protected with a thin silica layer. Clusters were further encapsulated in an ordered homogeneous mesoporous silica coating that provides biocompatibility and stability in physiological fluids. After internalization in 42-MG-BA human glioma cells, these protected gold nanoclusters were able to produce effective photothermolysis under femtosecond pulse laser irradiation of 790 nm. Cell death occurred by combination of a thermal mechanism and mechanical disruption of the membrane cell due to induced generation of micrometer-scale bubbles by vaporizing the water inside the channels of the mesoporous silica coating. Moreover, the incorporation of 20(S)-camptothecin within the pores of the external shell, which was released during the process, provoked significant cell death increase. This therapeutic model could be of interest for application in the treatment and suppression of non-solid tumors. 相似文献
143.
Sabín J Prieto G Ruso JM Hidalgo-Alvarez R Sarmiento F 《The European physical journal. E, Soft matter》2006,20(4):401-408
Dynamic light scattering and electrophoretic mobility measurements have been used to characterize the size, size distribution
and zeta potentials (ζ-potentials) of egg yolk phosphatidylcholine (EYPC) liposomes in the presence of monovalent ions ( Na+ and K+). To study the stability of liposomes the Derjaguin-Landau-Verwey-Overbeek (DLVO) theory has been extended by introducing
the hydrated radius of the adsorbed ions onto the liposome surfaces. The decrease of liposome size is explained on the basis
of the membrane impermeability to some ions which generate osmotic forces, which leads to evacuate water from liposome inside. 相似文献
144.
Manuel Quesada-Pérez Roque Hidalgo-Álvarez Alberto Martín-Molina 《Colloid and polymer science》2010,288(2):151-158
In this work, the role of ionic dispersion forces in specific ion effects is evaluated through Monte Carlo simulations in
the primitive model. More specifically, we assess the effect of such forces on the diffuse potential, since this property
is essential to understand the electrokinetic behavior of colloids. In this way, ion specificity arises naturally since ion
dispersion forces depend on ionic polarizability, which differs for ions with the same valence. This property is included
in the primitive model by means of the Lifshitz theory. The results for different ions are summarized with the help of a nondimensional
parameter characterizing the relative weight of ionic van der Waals interactions. Our data reveal that for small ions with
high polarizability the ionic dispersion forces can considerably contribute to the specificity of the diffuse potential. In
any case, the specific ion effects due to ion polarizability are strongly influenced by ion size. 相似文献
145.
Fernando Vereda Dr. Juan de Vicente Prof. Roque Hidalgo‐Álvarez Prof. 《Chemphyschem》2009,10(8):1165-1179
Anisotropy counts: A brief review of the main physical properties of elongated magnetic particles (EMPs) is presented. The most important characteristic of an EMP is the additional contribution of shape anisotropy to the total anisotropy energy of the particle, when compared to spherical magnetic particles. The electron micrograph shows Ni‐ferrite microrods fabricated by the authors.