@article{3289, abstract = {Viral manipulation of transduction pathways associated with key cellular functions such as survival, response to microbial infection, and cytoskeleton reorganization can provide the supportive milieu for a productive infection. Here, we demonstrate that vaccinia virus (VACV) infection leads to activation of the stress-activated protein kinase (SAPK)/extracellular signal-regulated kinase (ERK) 4/7 (MKK4/7)-c-Jun N-terminal protein kinase 1/2 (JNK1/2) pathway; further, the stimulation of this pathway requires postpenetration, prereplicative events in the viral replication cycle. Although the formation of intracellular mature virus (IMV) was not affected in MKK4/7- or JNK1/2-knockout (KO) cells, we did note an accentuated deregulation of microtubule and actin network organization in infected JNK1/2-KO cells. This was followed by deregulated viral trafficking to the periphery and enhanced enveloped particle release. Furthermore, VACV infection induced alterations in the cell contractility and morphology, and cell migration was reduced in the JNK-KO cells. In addition, phosphorylation of proteins implicated with early cell contractility and cell migration, such as microtubule-associated protein 1B and paxillin, respectively, was not detected in the VACV-infected KO cells. In sum, our findings uncover a regulatory role played by the MKK4/7-JNK1/2 pathway in cytoskeleton reorganization during VACV infection. }, author = {Pereira, Anna and Leite, Flávia and Brasil, Bruno and Soares Martins, Jamaria and Torres, Alice and Pimenta, Paulo and Souto Padrón, Thais and Tranktman, Paula and Ferreira, Paulo and Kroon, Erna and Bonjardim, Cláudio}, journal = {Journal of Virology}, number = {1}, pages = {172 -- 184}, publisher = {ASM}, title = {{A vaccinia virus-driven interplay between the MKK4/7-JNK1/2 pathway and cytoskeleton reorganization}}, doi = {10.1128/JVI.05638-11}, volume = {86}, year = {2012}, } @article{3310, abstract = {The theory of persistent homology opens up the possibility to reason about topological features of a space or a function quantitatively and in combinatorial terms. We refer to this new angle at a classical subject within algebraic topology as a point calculus, which we present for the family of interlevel sets of a real-valued function. Our account of the subject is expository, devoid of proofs, and written for non-experts in algebraic topology.}, author = {Bendich, Paul and Cabello, Sergio and Edelsbrunner, Herbert}, journal = {Pattern Recognition Letters}, number = {11}, pages = {1436 -- 1444}, publisher = {Elsevier}, title = {{A point calculus for interlevel set homology}}, doi = {10.1016/j.patrec.2011.10.007}, volume = {33}, year = {2012}, } @article{338, abstract = {The ample chemical and structural freedom of quaternary compounds permits engineering materials that fulfill the requirements of a wide variety of applications. In this work, the mechanisms to achieve unprecedented size, shape, and composition control in quaternary nanocrystals are detailed. The described procedure allows obtaining tetrahedral and penta-tetrahedral quaternary nanocrystals with tuned size distributions and controlled compositions from a plethora of I 2-II-IV-VI 4 semiconductors.}, author = {Ibáñez, Maria and Zamani, Reza and Li, Wenhua and Shavel, Alexey and Arbiol, Jordi and Morante, Joan and Cabot, Andreu}, journal = {Crystal Growth and Design }, number = {3}, pages = {1085 -- 1090}, publisher = {American Chemical Society (ACS)}, title = {{Extending the nanocrystal synthesis control to quaternary compositions}}, doi = {10.1021/cg201709c}, volume = {12}, year = {2012}, } @article{339, abstract = {A high-yield and upscalable colloidal synthesis route for the production of quaternary I 2-II-IV-VI 4 nanocrystals, particularly stannite Cu 2+xCd 1-xSnSe 4, with narrow size distribution and precisely controlled composition is presented. It is also shown here how the diversity of valences in the constituent elements allows an effective control of their electrical conductivity through the adjustment of the cation ratios. At the same time, while the crystallographic complexity of quaternary chalcogenides is associated with intrinsically low thermal conductivities, the reduction of the lattice dimensions to the nanoscale further reduces the materials thermal conductivity. In the specific case of the stannite crystal structure, a convenient slab distribution of the valence band maximum states permits a partial decoupling of the p-type electrical conductivity from both the Seebeck coefficient and the thermal conductivity. Combining these features, we demonstrate how an initial optimization of the nanocrystals Cd/Cu ratio allowed us to obtain low-temperature solution-processed materials with ZT values up to 0.71 at 685 K.}, author = {Ibáñez, Maria and Cadavid, Doris and Zamani, Reza and García Castelló, Nuria and Izquierdo Roca, Victora and Li, Wenhua and Fairbrother, Andrew and Prades, Joan and Shavel, Alexey and Arbiol, Jordi and Pérez Rodríguez, Alejandro and Morante, Joan and Cabot, Andreu}, journal = {Chemistry of Materials}, number = {3}, pages = {562 -- 570}, publisher = {American Chemical Society}, title = {{Composition control and thermoelectric properties of quaternary chalcogenide nanocrystals: The case of stannite Cu2CdSnSe4}}, doi = {10.1021/cm2031812}, volume = {24}, year = {2012}, } @article{340, abstract = {A procedure for the continuous production of Cu 2ZnSnS 4 (CZTS) nanoparticles with controlled composition is presented. CZTS nanoparticles were prepared through the reaction of the metals' amino complexes with elemental sulfur in a continuous-flow reactor at moderate temperatures (300-330 °C). High-resolution transmission electron microscopy and X-ray diffraction analysis showed the nanocrystals to have a crystallographic structure compatible with that of the kesterite. Chemical characterization of the materials showed the presence of the four elements in each individual nanocrystal. Composition control was achieved by adjusting the solution flow rate through the reactor and the proper choice of the nominal precursor concentration within the flowing solution. Single-particle analysis revealed a composition distribution within each sample, which was optimized at the highest synthesis temperatures used. }, author = {Shavel, Alexey and Cadavid, Doris and Ibáñez, Maria and Carrete, Alex and Cabot, Andreu}, journal = {Journal of the American Chemical Society}, number = {3}, pages = {1438 -- 1441}, publisher = {ACS}, title = {{Continuous production of Cu inf 2 inf ZnSnS inf 4 inf nanocrystals in a flow reactor}}, doi = {10.1021/ja209688a}, volume = {134}, year = {2012}, }