Search Results - "Bulygina, Inna"

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  1. 1

    In vitro evaluation of doxorubicin release from diopside particles on MG-63 and HF spheroids as a 3D model of tumor and healthy tissues by Bulygina, Inna N., Karshieva, Saida Sh, Permyakova, Elizaveta S., Korol, Artem A., Kolesnikov, Evgeny A., Choudhary, Rajan, Senatov, Fedor S., Koudan, Elizaveta V.

    Published in Toxicology in vitro (01-06-2024)
    “…Local drug delivery systems based on bioceramics ensure safe and effective treatment of bone defects and anticancer therapy. A promising drug delivery scaffold…”
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    Journal Article
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  3. 3

    Mechanical, Structural, and Biological Characteristics of Polylactide/Wollastonite 3D Printed Scaffolds by Choudhary, Rajan, Bulygina, Inna, Lvov, Vladislav, Zimina, Anna, Zhirnov, Sergey, Kolesnikov, Evgeny, Leybo, Denis, Anisimova, Natalya, Kiselevskiy, Mikhail, Kirsanova, Maria, Senatov, Fedor

    Published in Polymers (20-09-2022)
    “…The present work aimed to study the synergistic response of bioresorbable polylactide/bioactive wollastonite scaffolds towards mechanical stability,…”
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  4. 4

    Is Patient‐Specific Instrumentation Accurate and Necessary for Open‐Wedge High Tibial Osteotomy? A Meta‐Analysis by Pang, Ran, Jiang, Zhaohui, Xu, Chunlei, Shi, Wei, Zhang, Xinglong, Wan, Xin, Bahat, Daniel, Li, Hui, Senatov, Fedor, Bulygina, Inna, Wang, Hu, Zhang, Huafeng, Li, Zhijun

    Published in Orthopaedic surgery (01-02-2023)
    “…The purpose of this meta‐analysis was to identify if patient‐specific instrumentation (PSI) could increase the accuracy of the correction in high tibial…”
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  5. 5

    Antibacterial and Anti-Biofilm Properties of Diopside Powder Loaded with Lysostaphin by Kudinova, Alina, Grishin, Alexander, Grunina, Tatiana, Poponova, Maria, Bulygina, Inna, Gromova, Maria, Choudhary, Rajan, Senatov, Fedor, Karyagina, Anna

    Published in Pathogens (Basel) (23-01-2023)
    “…Diopside-based ceramic is a perspective biocompatible material with numerous potential applications in the field of bone prosthetics. Implantable devices and…”
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  6. 6

    Impact of CoFe2O4 Magnetic Nanoparticles on the Physical and Mechanical Properties and Shape Memory Effect of Polylactide by Anna Zimina, Aleksey Nikitin, Vladislav Lvov, Inna Bulygina, Polina Kovaleva, Stepan Vodopyanov, Mikhail Zadorozhnyy, Elizaveta Peshkina, Saida Karshieva, Rajan Choudhary, Maxim Abakumov, Fedor Senatov

    Published in Journal of composites science (01-02-2024)
    “…The acceleration in advancements of smart materials and non-contact controlled devices in the field of 4D printing is facilitated by the use of magnetically…”
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  7. 7

    Designing of porous PMMA/diopside bone cement for non-load bearing applications by Choudhary, Rajan, Venkatraman, Senthil Kumar, Bulygina, Inna, Senatov, Fedor, Kaloshkin, Sergey, Swamiappan, Sasikumar

    Published in Journal of Asian Ceramic Societies (02-07-2020)
    “…The objective of the current study was to design a bioactive and mechanically stable ceramic/polymer cement for repairing bone defects. Solvent casting method…”
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  8. 8

    Impact of forsterite addition on mechanical and biological properties of composites by Choudhary, Rajan, Venkatraman, Senthil Kumar, Bulygina, Inna, Chatterjee, Ankita, Abraham, Jayanthi, Senatov, Fedor, Kaloshkin, Sergey, Ilyasov, Artem, Abakumov, Maxim, Knyazeva, Marina, Kukui, Dimitri, Walther, Frank, Swamiappan, Sasikumar

    Published in Journal of Asian Ceramic Societies (01-10-2020)
    “…The objective of designing a biocompatible and mechanically stable scaffold for hard tissue regeneration was achieved by fabricating diopside/forsterite…”
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  9. 9

    Realization of the shape memory effect in a composite material PLA/Diopside with different supramolecular structures by Kovaleva, Polina, Bulygina, Inna, Cheremnykh, Anna, Statnik, Eugene, Ivantsova, Ekaterina, Sadykova, Iuliia, Zadorozhnyy, Mikhail, Korol, Artem, Senatov, Fedor

    Published in Polymer (Guilford) (17-12-2024)
    “…This study explores the realization of the shape memory effect (SME) in composite materials composed of polylactide (PLA) filled with diopside particles…”
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  10. 10

    Biomimetic scaffold fabricated with a mammalian trabecular bone template by Bulygina, Inna, Senatov, Fedor, Choudhary, Rajan, Kolesnikov, Evgeniy, Kaloshkin, Sergey, Scholz, Ronja, Knyazeva, Marina, Walther, Frank, Anisimova, Natalya, Kiselevskiy, Mikhail

    Published in Polymer degradation and stability (01-02-2020)
    “…This study proposes the method of ultra-high molecular weight polyethylene (UHMWPE) biomimetic scaffold fabrication. Anisotropy is considered to be a…”
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  11. 11

    Biomimetic scaffold fabricated with a mammalian trabecular bone template1 by Bulygina, Inna, Senatov, Fedor, Choudhary, Rajan, Kolesnikov, Evgeniy, Kaloshkin, Sergey, Scholz, Ronja, Knyazeva, Marina, Walther, Frank, Anisimova, Natalya, Kiselevskiy, Mikhail

    Published in Polymer degradation and stability (01-02-2020)
    “…This study proposes the method of ultra-high molecular weight polyethylene (UHMWPE) biomimetic scaffold fabrication. Anisotropy is considered to be a…”
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    Journal Article
  12. 12

    Effect of Formulation on the Release Kinetics of the Antibiotics from Biocompatible Ceramics by Vijayakumar, Naveensubramaniam, Bulygina, Inna, Lvov, Vlad, Choudhary, Rajan, Venkatraman, Senthil Kumar, Senatov, Fedor, Kaloshkin, Sergey, Swamiappan, Sasikumar

    Published in Trends in biomaterials & artificial organs (24-02-2022)
    “…Release kinetics of a drug from the ceramic drug delivery carrier depends on various parameters such as nature of the ceramic, binder, porosity of the…”
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  13. 13
  14. 14

    Biomineralization, dissolution and cellular studies of silicate bioceramics prepared from eggshell and rice husk by Choudhary, Rajan, Venkatraman, Senthil Kumar, Bulygina, Inna, Senatov, Fedor, Kaloshkin, Sergey, Anisimova, Natalya, Kiselevskiy, Mikhail, Knyazeva, Marina, Kukui, Dimitri, Walther, Frank, Swamiappan, Sasikumar

    Published in Materials Science & Engineering C (01-01-2021)
    “…The current investigation aims to replace the synthetic starting materials with biowaste to synthesize and explore three different silicate bioceramics. Pure…”
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