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Dual-Functional Implant Based on Gellan-Xanthan Hydrogel with Diopside, BMP-2 and Lysostaphin for Bone Defect Repair and Control of Staphylococcal Infection.
Karyagina, Anna S; Grishin, Alexander V; Kudinova, Alina G; Bulygina, Inna N; Koudan, Elizaveta V; Orlova, Polina A; Datsenko, Vera P; Zhulina, Anna V; Grunina, Tatyana M; Poponova, Maria S; Krivozubov, Mikhail S; Gromova, Maria S; Strukova, Natalia V; Generalova, Maria S; Nikitin, Kirill E; Shchetinin, Igor V; Luchnikov, Lev O; Zaitseva, Svetlana V; Kirsanova, Maria A; Statnik, Eugene S; Senatov, Fedor S; Lunin, Vladimir G; Gromov, Alexander V.
Afiliación
  • Karyagina AS; Gamaleya National Research Center for Epidemiology and Microbiology, Ministry of Healthcare of the Russian Federation, Moscow, 123098, Russia.
  • Grishin AV; All-Russia Research Institute of Agricultural Biotechnology, Russian Academy of Sciences, Moscow, 127550, Russia.
  • Kudinova AG; Belozersky Institute of Physico-Chemical Biology, Lomonosov Moscow State University, Moscow, 119992, Russia.
  • Bulygina IN; Institute of Biomedical Engineering, National University of Science and Technology "MISIS", Moscow, 119049, Russia.
  • Koudan EV; Gamaleya National Research Center for Epidemiology and Microbiology, Ministry of Healthcare of the Russian Federation, Moscow, 123098, Russia.
  • Orlova PA; All-Russia Research Institute of Agricultural Biotechnology, Russian Academy of Sciences, Moscow, 127550, Russia.
  • Datsenko VP; Gamaleya National Research Center for Epidemiology and Microbiology, Ministry of Healthcare of the Russian Federation, Moscow, 123098, Russia.
  • Zhulina AV; Gamaleya National Research Center for Epidemiology and Microbiology, Ministry of Healthcare of the Russian Federation, Moscow, 123098, Russia.
  • Grunina TM; Institute of Biomedical Engineering, National University of Science and Technology "MISIS", Moscow, 119049, Russia.
  • Poponova MS; Institute of Biomedical Engineering, National University of Science and Technology "MISIS", Moscow, 119049, Russia.
  • Krivozubov MS; Gamaleya National Research Center for Epidemiology and Microbiology, Ministry of Healthcare of the Russian Federation, Moscow, 123098, Russia.
  • Gromova MS; Gamaleya National Research Center for Epidemiology and Microbiology, Ministry of Healthcare of the Russian Federation, Moscow, 123098, Russia.
  • Strukova NV; Gamaleya National Research Center for Epidemiology and Microbiology, Ministry of Healthcare of the Russian Federation, Moscow, 123098, Russia.
  • Generalova MS; Gamaleya National Research Center for Epidemiology and Microbiology, Ministry of Healthcare of the Russian Federation, Moscow, 123098, Russia.
  • Nikitin KE; All-Russia Research Institute of Agricultural Biotechnology, Russian Academy of Sciences, Moscow, 127550, Russia.
  • Shchetinin IV; Gamaleya National Research Center for Epidemiology and Microbiology, Ministry of Healthcare of the Russian Federation, Moscow, 123098, Russia.
  • Luchnikov LO; Gamaleya National Research Center for Epidemiology and Microbiology, Ministry of Healthcare of the Russian Federation, Moscow, 123098, Russia.
  • Zaitseva SV; Gamaleya National Research Center for Epidemiology and Microbiology, Ministry of Healthcare of the Russian Federation, Moscow, 123098, Russia.
  • Kirsanova MA; Gamaleya National Research Center for Epidemiology and Microbiology, Ministry of Healthcare of the Russian Federation, Moscow, 123098, Russia.
  • Statnik ES; Gamaleya National Research Center for Epidemiology and Microbiology, Ministry of Healthcare of the Russian Federation, Moscow, 123098, Russia.
  • Senatov FS; Gamaleya National Research Center for Epidemiology and Microbiology, Ministry of Healthcare of the Russian Federation, Moscow, 123098, Russia.
  • Lunin VG; Material Science Department, National University of Science and Technology "MISIS", Moscow, 119049, Russia.
  • Gromov AV; LASE - Laboratory of Advanced Solar Energy, National University of Science and Technology "MISIS", Moscow, 119049, Russia.
Macromol Biosci ; : e2400205, 2024 Aug 14.
Article en En | MEDLINE | ID: mdl-39140453
ABSTRACT
A new dual-functional implant based on gellan-xanthan hydrogel with calcium-magnesium silicate ceramic diopside and recombinant lysostaphin and bone morphogenetic protein 2 (BMP-2)-ray is developed. In this composite, BMP-2 is immobilized on microparticles of diopside while lysostaphin is mixed directly into the hydrogel, providing sustained release of BMP-2 to allow gradual bone formation and rapid release of lysostaphin to eliminate infection immediately after implantation. Introduction of diopside of up to 3% (w/v) has a negligible effect on the mechanical properties of the hydrogel but provides a high sorption capacity for BMP-2. The hydrogels show good biocompatibility and antibacterial activity. Lysostaphin released from the implants over a 3 h period efficiently kills planktonic cells and completely destroys 24 h pre-formed biofilms of Staphylococcus aureus. Furthermore, in vivo experiments in a mouse model of critically-sized cranial defects infected with S. aureus show a complete lack of osteogenesis when implants contain only BMP-2, whereas, in the presence of lysostaphin, complete closure of the defect with newly formed mineralized bone tissue is observed. Thus, the new implantable gellan-xanthan hydrogel with diopside and recombinant lysostaphin and BMP-2 shows both osteogenic and antibacterial properties and represents a promising material for the treatment and/or prevention of osteomyelitis after bone trauma.
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Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Macromol Biosci Asunto de la revista: BIOQUIMICA Año: 2024 Tipo del documento: Article País de afiliación: Rusia

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Macromol Biosci Asunto de la revista: BIOQUIMICA Año: 2024 Tipo del documento: Article País de afiliación: Rusia