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Molecular patterns of oligopeptide hydrocarbons on graphite.
Barinov, Nikolay A; Tolstova, Anna P; Bersenev, Egor A; Ivanov, Dmitry A; Dubrovin, Evgeniy V; Klinov, Dmitry V.
Afiliação
  • Barinov NA; Federal Research and Clinical Center of Physical-Chemical Medicine of Federal Medical Biological Agency, Malaya Pirogovskaya 1a, Moscow 119435 Russian Federation; Sirius University of Science and Technology, 1 Olympic Ave, 354340, Sochi, Russian Federation.
  • Tolstova AP; Engelhardt Institute of Molecular Biology, Vavilova 32, 119991, Moscow, Russian Federation.
  • Bersenev EA; Moscow Institute of Physics and Technology, Institutskiy Per. 9, Dolgoprudny 141700, Russian Federation; Institute of Problems of Chemical Physics, Russian Academy of Sciences, Chernogolovka 142432, Russian Federation.
  • Ivanov DA; Sirius University of Science and Technology, 1 Olympic Ave, 354340, Sochi, Russian Federation; Institut de Sciences des Matériaux de Mulhouse-IS2M, CNRS UMR 7361, 15, rue Jean Starcky, F-68057 Mulhouse, France.
  • Dubrovin EV; Federal Research and Clinical Center of Physical-Chemical Medicine of Federal Medical Biological Agency, Malaya Pirogovskaya 1a, Moscow 119435 Russian Federation; Lomonosov Moscow State University, Leninskie Gory 1 Bld. 2, 119991 Moscow, Russian Federation. Electronic address: dubrovin@polly.phys.ms
  • Klinov DV; Federal Research and Clinical Center of Physical-Chemical Medicine of Federal Medical Biological Agency, Malaya Pirogovskaya 1a, Moscow 119435 Russian Federation; Sirius University of Science and Technology, 1 Olympic Ave, 354340, Sochi, Russian Federation. Electronic address: dmitry.klinov@niifhm.r
Colloids Surf B Biointerfaces ; 206: 111921, 2021 Oct.
Article em En | MEDLINE | ID: mdl-34157520
ABSTRACT
Graphitic materials including graphene, carbon nanotubes and fullerenes, are promising for use in nanotechnology and biomedicine. Non-covalent functionalization by peptides and other organic molecules allows changing the properties of graphitic surfaces in a controlled manner and represents a big potential for fundamental research and applications. Recently described oligopeptide-hydrocarbon derivative N,N'-(decane-1,10-diyl)bis(tetraglycineamide) (GM) is highly prospective for the development of graphitic interfaces in biosensor application as well as in structural biology for improving the quality of high-resolution atomic force microscopy (AFM) visualization of individual biomacromolecules. However, molecular organization of GM on graphitic surfaces is still unknown. In this work, the molecular model of GM at the water/highly oriented pyrolytic graphite (HOPG) interface has been developed basing on the high-resolution AFM and full-atom molecular modeling data. This model explains two periodicities observed in AFM images by GM self-assembly on a HOPG surface with formation of the stacks with the lateral shifts. The obtained results reveal the particular patterns and dynamics of GM molecules adsorbed on graphite and unravel the puzzle of peptide self-assembly on graphitic surfaces.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Nanotubos de Carbono / Grafite Tipo de estudo: Observational_studies Idioma: En Revista: Colloids Surf B Biointerfaces Assunto da revista: QUIMICA Ano de publicação: 2021 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Nanotubos de Carbono / Grafite Tipo de estudo: Observational_studies Idioma: En Revista: Colloids Surf B Biointerfaces Assunto da revista: QUIMICA Ano de publicação: 2021 Tipo de documento: Article