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July 24, 2026
'Physics Is What the World Is Literally Built On'
Physicist Nina Dzhanayeva, recipient of a Vladimir Potanin Foundation scholarship, focuses her research on nanophotonics. In this interview for the HSE Young Scientists project, she discusses nanowells, scientific intuition, and how physics can help in making frangipane cream puffs.
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‘Science Is Universal-It Knows No Borders
Fuad Aleskerov, Tenured Professor and Director of the International Centre of Decision Choice and Analysis at HSE University, together with his colleagues, has developed methods of network analysis in bibliometrics that have made it possible to identify patterns in the appearance and citation of publications in academic journals, as well as their influence on each other. When one or a number of studies are frequently cited by a wide range of journals, this is an indicator that the research is of high quality. By contrast, extensive cross-citation within a limited group of journals increases the likelihood of identifying a network of predatory publications.

 

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Antibacterial Poly(ε‐CL)/Hydroxyapatite Electrospun Fibers Reinforced by Poly(ε‐CL)‐b‐Poly(Ethylene Phosphoric Acid)

International Journal of Molecular Sciences. 2021. Vol. 22. Article 7690.
Nifant'ev Ilya, Gavrilov D., Tavtorkin A., Chinova M., Besprozvannykh Victoria, Komarov P., Zaitsev V., Podoprigora I., Ivchenko P.

In bone surgery and orthopedics, bioresorbable materials can be helpful in bone repair and countering post‐op infections. Explicit antibacterial activity, osteoinductive and osteoconductive effects are essential to achieving this objective. Nonwoven electrospun (ES) fibers are receiving the close attention of physicians as promising materials for wound dressing and tissue engineering; potentially, in high contrast with dense materials, ES mats hamper regeneration of the bone extracellular matrix to a lesser extent. The use of the compositions of inherently biodegradable polyesters (poly(ε‐caprolactone) PCL, poly(lactoglycolide), etc.), calcium phosphates and antibiotics is
highly prospective, but the task of forming ES fibers from such compositions is complicated by the incompatibility of the main organic and inorganic ingredients, polyesters and calcium phosphates. In the present research we report the synthesis of hydroxyapatite (HAp) nanoparticles with uniform morphology, and demonstrate high efficiency of the block copolymer of PCL and poly(ethylene phosphoric acid) (PEPA) as an efficient compatibilizer for PCL/HAp mixtures that are able to form ES fibers with improved mechanical characteristics. The materials obtained in the
presence of vancomycin exhibited incremental drug release against Staphylococcus aureus (St. aureus).

Research target: Chemistry Medical Technologies
Language: English
Full text
DOI
Keywords: hydroxyapatite
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