A sub 20 nm metal-conjugated molecule junction acting as a nitrogen dioxide sensor Janus MoSeTe material for potential applications in optoelectronic devices First-principles study of crystal-face specificity in surface properties of Fe-rich
2013-06-17
DOI https://doi.org/10.1007/978-94-007-0585-2_4; Publisher Name Springer, Dordrecht; Print ISBN 978-94-007-0584-5; Online ISBN 978-94-007-0585-2; eBook Packages Physics and Astronomy Physics and Astronomy (R0) Correlations exist between the abundance of S100 proteins and disease pathologies. Indeed, this is evidenced by the heterodimeric S100 protein complex S100A8/A9 which has been shown to be involved in inflammatory and neoplastic disorders. However, S100A8/A9 appears as a Janus-faced molecule in this context. On the one hand, it is a powerful apoptotic agent produced by immune cells, making it a The guanine nucleotide exchange factor Tiam1: A Janus-faced molecule in cellular signaling. Author links open overlay panel P. Boissier U. Huynh-Do.
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In fact, S100A8/A9 promotes apoptosis in a number of cancer cells. As of 2018-12-16 this article begins, 'A Janus molecule (or Janus-faced molecule) is a molecule which can represent both beneficial and toxic effects.' Is this a definition or a description of a property? Selenium compounds are considered "Janus compounds", i.e., products with a double face, because of their contrasting behavior that is dose dependent. At low doses, organoselenium has beneficial effects, whereas high doses are toxic. Wood W.G., Igbavboa U., Eckert G.P., Müller W.E. (2007) Cholesterol—A Janus-Faced Molecule in the Central Nervous System. In: Lajtha A., Reith M.E.A. (eds) Handbook of Neurochemistry and Molecular Neurobiology.
Figure 1: All-cis 1,2,3,4,5,6-hexafluorocyclohexane 1 is a facially polarized, 'Janus-headed' molecule that can be made in six steps from compound 2.
Janus-like, Asymmetric graphene Nanosheets for Ultrafiltration and Sieving monolayers having different chemical functionalization on different faces of the sheet. conformation and optoelectronic properties of the diffusing molecules.
An estimated 15% of animals are venomous, with representatives spread across the majority of animal lineages. Animals use venoms for various purposes, such as prey capture and predator deterrence. Humans have always been fascinated by venomous animals in a Janus-faced way. On the one hand, humans have a deeply rooted fear of venomous animals.
Janus is depicted as having two faces; one facing the past and one facing the future. However, S100A8/A9 appears as a Janus-faced molecule in this Accepted 19 August 2009 context.
On the other hand, H₂S delivery based clinical therapies are being developed to combat inflammation, visceral p …
A rare disk-like single-molecule magnet (SMM) exclusively bridged by end-on azides with a spin ground state of S = 14 was prepared by the reaction of a divalent FeII precursor with Me3SiN3 under basic conditions. AC magnetic susceptibility studies revealed unusual, “Janus”-faced SMM behavior for the dried a
Diphenyl Diselenide a Janus-Faced Molecule. J. Br az. Chem.
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Springer, Boston, MA. https://doi.org/10.1007/978-0-387-30380-2_7.
On one hand, several toxic functions have been attributed to H₂S and exposure to high levels of this gas is extremely hazardous to health. On the other hand, H₂S delivery based clinical therapies are being developed to combat inflammation, visceral p …
S100A8/A9 appears as a Janus-faced molecule.
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16 May 2020 Dubbed “Janus spheres” for the two-faced Roman god, the motions of in which each decomposition of a hydrogen peroxide molecule on its
On the other hand, H₂S delivery based clinical therapies are being developed to combat inflammation, visceral p … A rare disk-like single-molecule magnet (SMM) exclusively bridged by end-on azides with a spin ground state of S = 14 was prepared by the reaction of a divalent FeII precursor with Me3SiN3 under basic conditions. AC magnetic susceptibility studies revealed unusual, “Janus”-faced SMM behavior for the dried a Diphenyl Diselenide a Janus-Faced Molecule. J. Br az. Chem. Soc. 2058.