Biomimetic UHMWPE/HA scaffolds with rhBMP-2 and erythropoietin for reconstructive surgery
Marina Knyazeva
1
,
Gulbanu Amanbek
2
,
Polina Orlova
3
,
Mikhail Bartov
3
,
Tatyana Grunina
3
,
Aleksey Maksimkin
2
,
Sergey Kaloshkin
2
,
Maria Poponova
3
,
Kirill Nikitin
3
,
Mikhail Krivozubov
3
,
Natalia Strukova
3
,
Natalya Anisimova
4, 5
,
Mikhail Kiselevskiy
4, 5
,
Ronja Scholz
1
,
Frank Walther
1
,
A. Gromov
3
Тип публикации: Journal Article
Дата публикации: 2020-06-01
SJR: —
CiteScore: —
Impact factor: —
ISSN: 09284931, 18730191
PubMed ID:
32279822
Bioengineering
Biomaterials
Mechanics of Materials
Краткое описание
A promising direction for the replacement of expanded bone defects is the development of bioimplants based on synthetic biocompatible materials impregnated with growth factors that stimulate bone remodeling. Novel biomimetic highly porous ultra-high molecular weight polyethylene (UHMWPE)/40% hydroxyapatite (HA) scaffold for reconstructive surgery with the porosity of 85 ± 1% vol. and a diameter of pores in the range of 50–800 μm was developed. The manufacturing process allowed the formation of trabecular-like architecture without additional solvents and thermo-oxidative degradation. Biomimetic UHMWPE/HA scaffold was biocompatible and provided effective tissue ingrowth on a model of critical-sized cranial defects in mice. The combined use of UHMWPE/HA with Bone Morphogenetic Protein-2 (BMP-2) demonstrated intensive mineralized bone formation as early as 3 weeks after surgery. The addition of erythropoietin (EPO) significantly enhanced angiogenesis in newly formed tissues. The effect of EPO of bacterial origin on bone tissue defect healing was demonstrated for the first time. The developed biomimetic highly porous UHMWPE/HA scaffold can be used separately or in combination with rhBMP-2 and EPO for reconstructive surgery to solve the problems associated with difference between implant architecture and trabecular bone, low osteointegration and bioinertness.
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ГОСТ
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Amanbek G. et al. Biomimetic UHMWPE/HA scaffolds with rhBMP-2 and erythropoietin for reconstructive surgery // Materials Science and Engineering C. 2020. Vol. 111. p. 110750.
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Knyazeva M., Amanbek G., Orlova P., Bartov M., Grunina T., Kolesnikov E., Maksimkin A., Kaloshkin S., Poponova M., Nikitin K., Krivozubov M., Strukova N., Anisimova N., Kiselevskiy M., Scholz R., Walther F., Gromov A. Biomimetic UHMWPE/HA scaffolds with rhBMP-2 and erythropoietin for reconstructive surgery // Materials Science and Engineering C. 2020. Vol. 111. p. 110750.
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TY - JOUR
DO - 10.1016/j.msec.2020.110750
UR - https://linkinghub.elsevier.com/retrieve/pii/S0928493119337324
TI - Biomimetic UHMWPE/HA scaffolds with rhBMP-2 and erythropoietin for reconstructive surgery
T2 - Materials Science and Engineering C
AU - Knyazeva, Marina
AU - Amanbek, Gulbanu
AU - Orlova, Polina
AU - Bartov, Mikhail
AU - Grunina, Tatyana
AU - Kolesnikov, Evgeniy
AU - Maksimkin, Aleksey
AU - Kaloshkin, Sergey
AU - Poponova, Maria
AU - Nikitin, Kirill
AU - Krivozubov, Mikhail
AU - Strukova, Natalia
AU - Anisimova, Natalya
AU - Kiselevskiy, Mikhail
AU - Scholz, Ronja
AU - Walther, Frank
AU - Gromov, A.
PY - 2020
DA - 2020/06/01
PB - Elsevier
SP - 110750
VL - 111
PMID - 32279822
SN - 0928-4931
SN - 1873-0191
ER -
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@article{2020_Amanbek,
author = {Marina Knyazeva and Gulbanu Amanbek and Polina Orlova and Mikhail Bartov and Tatyana Grunina and Evgeniy Kolesnikov and Aleksey Maksimkin and Sergey Kaloshkin and Maria Poponova and Kirill Nikitin and Mikhail Krivozubov and Natalia Strukova and Natalya Anisimova and Mikhail Kiselevskiy and Ronja Scholz and Frank Walther and A. Gromov},
title = {Biomimetic UHMWPE/HA scaffolds with rhBMP-2 and erythropoietin for reconstructive surgery},
journal = {Materials Science and Engineering C},
year = {2020},
volume = {111},
publisher = {Elsevier},
month = {jun},
url = {https://linkinghub.elsevier.com/retrieve/pii/S0928493119337324},
pages = {110750},
doi = {10.1016/j.msec.2020.110750}
}