Accelerated bone regeneration through rational design of magnesium phosphate cements
Friederike Kaiser
1
,
Lena Schröter
2
,
Svenja Stein
2
,
Benjamin Thilo Krüger
2
,
Jan Weichhold
1
,
Philipp Stahlhut
1
,
Anita Ignatius
2
,
Uwe Gbureck
1
Тип публикации: Journal Article
Дата публикации: 2022-06-01
scimago Q1
wos Q1
БС1
SJR: 2.007
CiteScore: 17.8
Impact factor: 9.6
ISSN: 17427061, 18787568
PubMed ID:
35443213
Biochemistry
Molecular Biology
General Medicine
Biotechnology
Biomaterials
Biomedical Engineering
Краткое описание
Results of several studies during past years suggested that magnesium phosphate cements (MPCs) not only show excellent biocompatibility and osteoconductivity, but they also provide improved regeneration capacity due to higher solubility compared to calcium phosphates. These findings also highlighted that chemical similarity of bone substitutes to the natural bone tissue is not a determinant factor in the success of regenerative strategies. The aim of this study was to further improve the degradation speed of MPCs for a fast bone ingrowth within a few months. We confirmed our hypothesis, that decreasing the powder-liquid ratio (PLR) of cement results in an increased content of highly soluble phases such as struvite (MgNH4PO4⋅6H2O) as well as K-struvite (MgKPO4⋅6H2O). Promising compositions with a low PLR of 1 g ml-1 were implanted in partially-loaded tibia defects in sheep. Both cements were partially degraded and replaced by bone tissue after 4 months. The degradation speed of the K-struvite cement was significantly higher compared to the struvite cement, initially resulting in the formation of a cell-rich resorption zone at the surface of some implants, as determined by histology. Overall, both MPCs investigated in this study seem to be promising as an alternative to the clinically well-established, but slowly degrading calcium phosphate cements, depending on defect size and desired degradation rate. Whereas the K-struvite cement might require further modification towards a slower resorption and reduced inflammatory response in vivo, the struvite cement appears promising for the treatment of bone defects due to its continuous degradation with simultaneous new bone formation. STATEMENT OF SIGNIFICANCE: Cold setting bone cements are used for the treatment of bone defects that exceed a critical size and cannot heal on their own. They are applied pasty into the bone defect and harden afterwards so that the shape adapts to the individual defect. Magnesium phosphates such as magnesium ammonium phosphate hexahydrate (struvite) belong to a new class of these cold setting bone cements. They degrade much faster than the clinically established calcium phosphates. In this study, a magnesium phosphate that has hardly been investigated so far was implanted into partially-loaded defects in sheeps: Potassium magnesium phosphate hexahydrate. This showed even faster resorption compared to the struvite cement: after 4 months, 63% of the cement was already degraded.
Найдено
Ничего не найдено, попробуйте изменить настройки фильтра.
Найдено
Ничего не найдено, попробуйте изменить настройки фильтра.
Топ-30
Журналы
|
1
2
3
4
5
|
|
|
Materials
5 публикаций, 9.62%
|
|
|
Ceramics International
2 публикации, 3.85%
|
|
|
Advanced healthcare materials
2 публикации, 3.85%
|
|
|
Journal of Functional Biomaterials
2 публикации, 3.85%
|
|
|
Materials and Design
2 публикации, 3.85%
|
|
|
Biomaterials Advances
2 публикации, 3.85%
|
|
|
Acta Biomaterialia
2 публикации, 3.85%
|
|
|
Scientific Reports
2 публикации, 3.85%
|
|
|
Frontiers in Pharmacology
2 публикации, 3.85%
|
|
|
Journal of the American Ceramic Society
2 публикации, 3.85%
|
|
|
Frontiers in Bioengineering and Biotechnology
1 публикация, 1.92%
|
|
|
Advanced Engineering Materials
1 публикация, 1.92%
|
|
|
Nanoscale
1 публикация, 1.92%
|
|
|
Journal of Building Engineering
1 публикация, 1.92%
|
|
|
Mendeleev Communications
1 публикация, 1.92%
|
|
|
Chemical Engineering Journal
1 публикация, 1.92%
|
|
|
Journal of Biomaterials Applications
1 публикация, 1.92%
|
|
|
Colloids and Surfaces A: Physicochemical and Engineering Aspects
1 публикация, 1.92%
|
|
|
Biomedical Materials (Bristol)
1 публикация, 1.92%
|
|
|
Interdisciplinary Materials
1 публикация, 1.92%
|
|
|
Materials Today Advances
1 публикация, 1.92%
|
|
|
ACS Biomaterials Science and Engineering
1 публикация, 1.92%
|
|
|
ACS applied materials & interfaces
1 публикация, 1.92%
|
|
|
International Journal of Applied Ceramic Technology
1 публикация, 1.92%
|
|
|
Advanced Materials Technologies
1 публикация, 1.92%
|
|
|
Dental Materials
1 публикация, 1.92%
|
|
|
Bio-Medical Materials and Engineering
1 публикация, 1.92%
|
|
|
Advanced Functional Materials
1 публикация, 1.92%
|
|
|
Journal of Orthopaedic Translation
1 публикация, 1.92%
|
|
|
1
2
3
4
5
|
Издатели
|
2
4
6
8
10
12
14
16
|
|
|
Elsevier
16 публикаций, 30.77%
|
|
|
Wiley
11 публикаций, 21.15%
|
|
|
MDPI
9 публикаций, 17.31%
|
|
|
Frontiers Media S.A.
3 публикации, 5.77%
|
|
|
SAGE
3 публикации, 5.77%
|
|
|
Springer Nature
3 публикации, 5.77%
|
|
|
American Chemical Society (ACS)
2 публикации, 3.85%
|
|
|
Royal Society of Chemistry (RSC)
1 публикация, 1.92%
|
|
|
OOO Zhurnal "Mendeleevskie Soobshcheniya"
1 публикация, 1.92%
|
|
|
IOP Publishing
1 публикация, 1.92%
|
|
|
Pleiades Publishing
1 публикация, 1.92%
|
|
|
2
4
6
8
10
12
14
16
|
- Мы не учитываем публикации, у которых нет DOI.
- Статистика публикаций обновляется еженедельно.
Вы ученый?
Создайте профиль, чтобы получать персональные рекомендации коллег, конференций и новых статей.
Метрики
52
Всего цитирований:
52
Цитирований c 2025:
17
(32.7%)
Цитировать
ГОСТ |
RIS |
BibTex
Цитировать
ГОСТ
Скопировать
Kaiser F. et al. Accelerated bone regeneration through rational design of magnesium phosphate cements // Acta Biomaterialia. 2022. Vol. 145. pp. 358-371.
ГОСТ со всеми авторами (до 50)
Скопировать
Kaiser F., Schröter L., Stein S., Krüger B. T., Weichhold J., Stahlhut P., Ignatius A., Gbureck U. Accelerated bone regeneration through rational design of magnesium phosphate cements // Acta Biomaterialia. 2022. Vol. 145. pp. 358-371.
Цитировать
RIS
Скопировать
TY - JOUR
DO - 10.1016/j.actbio.2022.04.019
UR - https://doi.org/10.1016/j.actbio.2022.04.019
TI - Accelerated bone regeneration through rational design of magnesium phosphate cements
T2 - Acta Biomaterialia
AU - Kaiser, Friederike
AU - Schröter, Lena
AU - Stein, Svenja
AU - Krüger, Benjamin Thilo
AU - Weichhold, Jan
AU - Stahlhut, Philipp
AU - Ignatius, Anita
AU - Gbureck, Uwe
PY - 2022
DA - 2022/06/01
PB - Elsevier
SP - 358-371
VL - 145
PMID - 35443213
SN - 1742-7061
SN - 1878-7568
ER -
Цитировать
BibTex (до 50 авторов)
Скопировать
@article{2022_Kaiser,
author = {Friederike Kaiser and Lena Schröter and Svenja Stein and Benjamin Thilo Krüger and Jan Weichhold and Philipp Stahlhut and Anita Ignatius and Uwe Gbureck},
title = {Accelerated bone regeneration through rational design of magnesium phosphate cements},
journal = {Acta Biomaterialia},
year = {2022},
volume = {145},
publisher = {Elsevier},
month = {jun},
url = {https://doi.org/10.1016/j.actbio.2022.04.019},
pages = {358--371},
doi = {10.1016/j.actbio.2022.04.019}
}