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September 22, 2026
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A researcher at HSE University analysed data on 1,539 doctoral students from 161 Russian universities to identify which features of a thesis topic are associated with academic success and engagement. The most important factor was found to be personal interest in the research topic, which was associated with almost all key aspects of doctoral programme experience—from engaging with the academic supervisor to research activity and confidence about successfully defending the thesis. The findings have been published in Higher Education.
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Crystalline Micro-Sized Carbonated Apatites: Chemical Anisotropy of the Crystallite Surfaces, Biocompatibility, Osteoconductivity, and Osteoinductive Effect Enhanced by Poly(ethylene phosphoric acid)

ACS Applied Bio Materials. 2023. Vol. 6. No. 11. P. 5067–5077.
Ilya E. Nifant’ev, Tavtorkin A., Maria P. Ryndyk, Gavrilov D., Lukina Y., Bionyshev-Abramov L., Serejnikova N., Smolentsev D., Ivchenko P.

Carbonated hydroxyapatites (CAp) are very close to natural bone apatite in chemical composition and are regarded as a prospective bone mineral substitute for bone surgery and orthopedics. However, until now, the
studies and applications of CAp were limited because of the amorphous nature of the synthetic CAp. In the present work, microsized highly crystalline carbonated apatites with uniform hexagonal (hCAp) or platelike (pCAp) morphology have been studied for the first time in vitro and in vivo, comparing against commercial hydroxyapatite (HAp) and β-tricalcuim phosphate (βTCP). In vitro experiments on dissolution of those calcium phosphate ceramics (CPCs) in acetate (pH 5.5) and Tris (pH 7.3) buffer solutions showed the following rank order of the dissolution rates: βTCP > hCAp > pCAp > HAp. The higher dissolution rate of hCAp in comparison with pCAp is explained by chemical anisotropy of the crystallite surfaces, which was proven by SEM studies of the changes in the morphology of hCAp and pCAp crystallites during hydrolysis. A 5-week experiment on subcutaneous implantation of CPC species showed the following rank order of bioresorption rates: βTCP > pCAp > hCAp > HAp. pCAp matrixes exhibited the highest biocompatibility, confirmed by histomorphological analysis. Three-month bone regeneration experiments involving a rat tibial defect model were conducted with 250−500 μm granules of pCAp and pCAp-PEPA [pCAp, pretreated with 2 wt % poly(ethylene phosphoric acid)]. Notably, pCAp-PEPA implants were resorbed at higher rates and induced the formation of more mature osseous tissue, a compact bone with Haversian systems.

Research target: Chemistry Medical Technologies Basic Medicine
Language: English
DOI
Text on another site
Keywords: carbonated apatitebiocompatibilitybone mineral substitutebioresorptioncalcium phosphate ceramics
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Added: March 1, 2026
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Powders of copper-, zinc-, manganese-substituted tricalcium phosphates (TCP) are synthesized; the composition and structure of the obtained compounds are studied. It is shown how copper, zinc, and manganese ions affect the phase composition and microstructure of substituted TCP powders. Composite materials based on a blend of polyvinylpyrrolidone with alginate (PVP:ALG) containing copper-, zinc-, and manganese-substituted ...
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