Polan, Christina; Brenner, Christina; Herten, Monika; Hilken, Gero; Grabellus, Florian; Meyer, Heinz-Lothar; Burggraf, Manuel; Dudda, Marcel; Jahnen-Dechent, Willi; Wedemeyer, Christian; Kauther, Max Daniel:
Increased UHMWPE Particle-Induced Osteolysis in Fetuin-A-Deficient Mice
In: Journal of Functional Biomaterials, Jg. 14 (2023), Heft 1, Artikel 30
2023Artikel/Aufsatz in ZeitschriftOA Gold
MedizinMedizinische Fakultät » Universitätsklinikum Essen » Zentrum für Orthopädie und Unfallchirurgie » Klinik für Unfall-, Hand- und WiederherstellungschirurgieMedizinische Fakultät » Universitätsklinikum Essen » Zentrales TierlaboratoriumMedizinische Fakultät » Universitätsklinikum Essen » Institut für Pathologie und Neuropathologie
Damit verbunden: 1 Publikation(en)
Titel in Englisch:
Increased UHMWPE Particle-Induced Osteolysis in Fetuin-A-Deficient Mice
Autor*in:
Polan, ChristinaUDE
GND
1175905143
LSF ID
58500
ORCID
0000-0003-2777-4674ORCID iD
Sonstiges
der Hochschule zugeordnete*r Autor*in
korrespondierende*r Autor*in
;
Brenner, Christina;Herten, MonikaUDE
GND
1241122997
LSF ID
60646
LSF ID
62252
ORCID
0000-0001-9697-0287ORCID iD
Sonstiges
der Hochschule zugeordnete*r Autor*in
;
Hilken, GeroUDE
LSF ID
12066
ORCID
0000-0002-3881-796XORCID iD
Sonstiges
der Hochschule zugeordnete*r Autor*in
;
Grabellus, FlorianUDE
LSF ID
12865
Sonstiges
der Hochschule zugeordnete*r Autor*in
;
Meyer, Heinz-LotharUDE
LSF ID
58498
ORCID
0000-0002-3472-4758ORCID iD
Sonstiges
der Hochschule zugeordnete*r Autor*in
;
Burggraf, ManuelUDE
GND
1023993724
LSF ID
58301
ORCID
0000-0002-6191-7360ORCID iD
Sonstiges
der Hochschule zugeordnete*r Autor*in
;
Dudda, MarcelUDE
GND
135917603
LSF ID
58300
ORCID
0000-0001-6641-5506ORCID iD
Sonstiges
der Hochschule zugeordnete*r Autor*in
;
Jahnen-Dechent, Willi;Wedemeyer, Christian;Kauther, Max Daniel
Erscheinungsjahr:
2023
Open Access?:
OA Gold
DuEPublico 2 ID
Notiz:
OA Förderung 2023
Sprache des Textes:
Englisch

Abstract in Englisch:

Particle-induced osteolysis is a major cause of aseptic prosthetic loosening. Implant wear particles stimulate tissue macrophages inducing an aseptic inflammatory reaction, which ultimately results in bone loss. Fetuin-A is a key regulator of calcified matrix metabolism and an acute phase protein. We studied the influence of fetuin-A on particle-induced osteolysis in an established mouse model using fetuin-A-deficient mice. Ten fetuin-A-deficient (Ahsg−/−) mice and ten wild-type animals (Ahsg+/+) were assigned to test group receiving ultra-high molecular weight polyethylene (UHMWPE) particle implantation or to control group (sham surgery). After 14 days, bone metabolism parameters RANKL, osteoprotegerin (OPG), osteocalcin (OC), alkaline phosphatase (ALP), calcium, phosphate, and desoxypyridinoline (DPD) were examined. Bone volume was determined by microcomputed tomography (μCT); osteolytic regions and osteoclasts were histomorphometrically analyzed. After particle treatment, bone resorption was significantly increased in Ahsg−/− mice compared with corresponding Ahsg+/+ wild-type mice (p = 0.007). Eroded surface areas in Ahsg−/− mice were significantly increased (p = 0.002) compared with Ahsg+/+ mice, as well as the number of osteoclasts compared with control (p = 0.039). Fetuin-A deficiency revealed increased OPG (p = 0.002), and decreased levels of DPD (p = 0.038), OC (p = 0.036), ALP (p < 0.001), and Ca (p = 0.001) compared with wild-type animals. Under osteolytic conditions in Ahsg−/− mice, OPG was increased (p = 0.013), ALP (p = 0.015) and DPD (p = 0.012) were decreased compared with the Ahsg+/+ group. Osteolytic conditions lead to greater bone loss in fetuin-A-deficient mice compared with wild-type mice. Reduced fetuin-A serum levels may be a risk factor for particle-induced osteolysis while the protective effect of fetuin-A might be a future pathway for prophylaxis and treatment.