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      Wearable and Stretchable Strain Sensors: Materials, Sensing Mechanisms, and Applications

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          Ror2 signaling regulates Golgi structure and transport through IFT20 for tumor invasiveness

          Signaling through the Ror2 receptor tyrosine kinase promotes invadopodia formation for tumor invasion. Here, we identify intraflagellar transport 20 (IFT20) as a new target of this signaling in tumors that lack primary cilia, and find that IFT20 mediates the ability of Ror2 signaling to induce the invasiveness of these tumors. We also find that IFT20 regulates the nucleation of Golgi-derived microtubules by affecting the GM130-AKAP450 complex, which promotes Golgi ribbon formation in achieving polarized secretion for cell migration and invasion. Furthermore, IFT20 promotes the efficiency of transport through the Golgi complex. These findings shed new insights into how Ror2 signaling promotes tumor invasiveness, and also advance the understanding of how Golgi structure and transport can be regulated.
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            Double-slit photoelectron interference in strong-field ionization of the neon dimer

            Wave-particle duality is an inherent peculiarity of the quantum world. The double-slit experiment has been frequently used for understanding different aspects of this fundamental concept. The occurrence of interference rests on the lack of which-way information and on the absence of decoherence mechanisms, which could scramble the wave fronts. Here, we report on the observation of two-center interference in the molecular-frame photoelectron momentum distribution upon ionization of the neon dimer by a strong laser field. Postselection of ions, which are measured in coincidence with electrons, allows choosing the symmetry of the residual ion, leading to observation of both, gerade and ungerade, types of interference.
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              Occurrence of the potent mutagens 2- nitrobenzanthrone and 3-nitrobenzanthrone in fine airborne particles

              Polycyclic aromatic compounds (PACs) are known due to their mutagenic activity. Among them, 2-nitrobenzanthrone (2-NBA) and 3-nitrobenzanthrone (3-NBA) are considered as two of the most potent mutagens found in atmospheric particles. In the present study 2-NBA, 3-NBA and selected PAHs and Nitro-PAHs were determined in fine particle samples (PM 2.5) collected in a bus station and an outdoor site. The fuel used by buses was a diesel-biodiesel (96:4) blend and light-duty vehicles run with any ethanol-to-gasoline proportion. The concentrations of 2-NBA and 3-NBA were, on average, under 14.8 µg g−1 and 4.39 µg g−1, respectively. In order to access the main sources and formation routes of these compounds, we performed ternary correlations and multivariate statistical analyses. The main sources for the studied compounds in the bus station were diesel/biodiesel exhaust followed by floor resuspension. In the coastal site, vehicular emission, photochemical formation and wood combustion were the main sources for 2-NBA and 3-NBA as well as the other PACs. Incremental lifetime cancer risk (ILCR) were calculated for both places, which presented low values, showing low cancer risk incidence although the ILCR values for the bus station were around 2.5 times higher than the ILCR from the coastal site.
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                Author and article information

                Contributors
                (View ORCID Profile)
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                Journal
                Advanced Intelligent Systems
                Advanced Intelligent Systems
                Wiley
                2640-4567
                2640-4567
                August 2020
                June 11 2020
                August 2020
                : 2
                : 8
                : 2000039
                Affiliations
                [1 ]Aroa Biosurgery Limited Auckland 2022 New Zealand
                [2 ]Locomotion in Biorobotic and Somatic Systems GroupMax-Planck Institute for Intelligent Systems Stuttgart 70569 Germany
                [3 ]School of EngineeringInstitute for Materials and ProcessesThe University of Edinburgh Robert Stevenson Road Edinburgh EH9 3FB UK
                [4 ]School of EngineeringInstitute for Integrated Micro and Nano SystemsSMC EH9 3FF Edinburgh UK
                [5 ]Department of Mechanical EngineeringKorea Advanced Institute of Science & Technology (KAIST) 291 Daehak‐ro, Yuseong‐gu Daejeon 34141 South Korea
                [6 ]Physical Intelligence DepartmentMax-Planck Institute for Intelligent Systems Stuttgart 70569 Germany
                [7 ]Institute of Mechanical, Process and Energy EngineeringHeriot-Watt University Edinburgh EH14 4AS UK
                Article
                10.1002/aisy.202000039
                857be194-e796-46ca-be80-aefef2a9b29b
                © 2020

                http://creativecommons.org/licenses/by/4.0/

                http://doi.wiley.com/10.1002/tdm_license_1.1

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