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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.
July 20, 2026
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A team of Russian researchers, including scientists from HSE University–St Petersburg, has developed the first open multimodal dataset containing recordings of brain activity, heart function, and video observations to help researchers understand what happens in the human brain during deep concentration. In the future, the dataset could accelerate the development of neural interfaces, rehabilitation technologies, and AI systems. The article has been published in Scientific Data.
July 20, 2026
‘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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Cell Sheets from Adipose-Derived Mesenchymal Stromal Accelerate Healing and Angiogenesis

Molecular Therapy. 2018. Vol. 26. No. 5. Article 466.
Makarevich P., Alexandrushkina N., Dergilev K., Shevchenko E., Maria Boldyreva, Nimiritsky P., Grigorieva O., Efimenko A., Hu Y., Parfyonova Y., Tkachuk V.

Cell sheet (CS) technology has advantages for application in regenerative medicine as far as it allows effective and feasible delivery cells for therapeutic application.Cell sheets are minimal tissueengineered constructs that consist of viable cells and extracellular matrix proteins forming a solid multilayered structure. Their expressed therapeutic potential relies on better survival after delivery compared to injection of dispersed cells. This approach has been in our field of interest during last years and we have developed CS application from adult stem cells - mesenchymal (MSC) and c-kit+ cardiac stem cells (CSC) for stimulation of angiogenesis in ischemic skeletal muscle and infarcted myocardium, induction of wound healing and other clinically relevant models. Starting from wound healing in a rat model of deep defect of soft tissues we found that delivery of constructs from adipose-derived MSC significantly accelerated wound healing compared to suspended cells accompanied by higher engraftment rate of CS-delivered MSC compared to dispersed.We also successfully adopted the concept of gene delivery application to modify cells for sake of new therapeutic methods. Using viral delivery of growth factors allows to enhance MSC paracrine and regenerative potential for increased efficacy and better safety. Mostly, these methods utilize the crucial role of paracrine stimuli generated by stem cells during tissue repair or regeneration. Over last decade we have been elaborating to develop strategies using viral vectors to increase production of growth factors and “tune-up” the cells pro-regenerative capacity. Using adenoassociated viruses (AAV) and baculovirus we managed express growth factors in MSC and CSC. Developed methods of viral delivery to express VEGF165 allowed to increase pro-angiogenic potential of cells and induce effective angiogenesis in ischemic tissue of experimental animals rendering effect that was significantly higher compared to GFP-treated or un-modified cells. Indeed, using nude mice to evaluate human MSC impact on recovery of blood flow, we found that VEGFexpressing MSCs had better survival and resulted in higher perfusion and blood vessel counts at experiment’s endpoint.However, viral modification of constructs resulted in even better functional outcome in animal models of ischemia compared to untreated cells or injected dispersed. Furthermore, a large subset of data was obtained indicating graft/host interactions, vascularization of implanted construct and limited cell proliferation within the tissue layer. Overall our set of studies summarizes efforts to develop a next-level cell therapeutic combining feasible and effective delivery technique with viral modification as a way to enhance paracrine modality known to be crucial for MSC and their regenerative potential in numerous lesions affecting human population.

Study was supported by RFBR grant #17-04-01452 (cell culture and in vitro assays), partially- by RSF grant #16-45-03007 (animal test and histology) and used biomaterial biomaterial collected and preserved in the frame of the project “Scientific basis for national bank-depositary of living systems” (RSF agreement #14-50-00029) using the equipment purchased as a part of Lomonosov Moscow State University Program of Development.

Research target: Basic Medicine Medical Biotechnologies
Language: English
DOI
Keywords: cell sheetangiogenesis
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