Alendronate enhances osseointegration in a murine implant model.


Journal

Journal of orthopaedic research : official publication of the Orthopaedic Research Society
ISSN: 1554-527X
Titre abrégé: J Orthop Res
Pays: United States
ID NLM: 8404726

Informations de publication

Date de publication:
04 2021
Historique:
revised: 25 08 2020
received: 18 04 2020
accepted: 08 09 2020
pubmed: 12 9 2020
medline: 18 5 2021
entrez: 11 9 2020
Statut: ppublish

Résumé

Administration of bisphosphonates following total joint arthroplasty might be beneficial to reduce aseptic loosening. However, their effects on peri-implant bone formation and bone-implant interface strength have not been investigated yet. We used a physiologically loaded mouse implant model to investigate the short-term effects of postoperative systemic alendronate on osseointegration. A titanium implant with a rough surface was inserted in the proximal tibiae of 17-week-old female C57BL/6 mice (n = 44). Postimplantation mice were given alendronate (73 μg/kg/days, n = 22) or vehicle (n = 22) 5 days/week. At 7- and 14-day postimplantation, histology and histomorphometry were conducted. At 28 days, microcomputed tomography and biomechanical testing were performed (n = 10/group). Postoperative alendronate treatment enhanced osseointegration, increasing maximum pullout load by 45% (p < .001) from 19.1 ± 4.5 N in the control mice to 27.6 ± 4.9 N in the treated mice, at day 28 postimplantation. Alendronate treatment increased the bone volume fraction by 139% (p < .001) in the region distal to the implant and 60% (p < .05) in the peri-implant region. At 14-day postimplantation, alendronate treatment decreased the number of osteoclasts per bone perimeter (p < .05) and increased bone volume fraction (p < .01) when compared with the control group. Postimplantation, short-term alendronate treatment enhanced osseointegration as demonstrated by increased bone mass, trabecular bone thickness, and maximum pullout load. Alendronate decreased peri-implant osteoclasts while preserving peri-implant osteoblasts and endothelial cells, in turn, increasing bone volume fraction. This data supports the postoperative clinical use of bisphosphonates, especially in patients with high risks of aseptic loosening.

Identifiants

pubmed: 32915488
doi: 10.1002/jor.24853
pmc: PMC8672942
mid: NIHMS1760825
doi:

Substances chimiques

Bone Density Conservation Agents 0
Bone Substitutes 0
Diphosphonates 0
Alendronate X1J18R4W8P

Types de publication

Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

Langues

eng

Sous-ensembles de citation

IM

Pagination

719-726

Subventions

Organisme : CSR NIH HHS
ID : R01 AR075585
Pays : United States
Organisme : NIH HHS
ID : DP5 OD021351
Pays : United States
Organisme : NIAMS NIH HHS
ID : R01 AR075585
Pays : United States
Organisme : NCATS NIH HHS
ID : UL1 TR002384
Pays : United States
Organisme : CSR NIH HHS
ID : DP5OD021351
Pays : United States
Organisme : NCATS NIH HHS
ID : UL1 TR000457
Pays : United States

Informations de copyright

© 2020 Orthopaedic Research Society. Published by Wiley Periodicals LLC.

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Auteurs

Klemens Vertesich (K)

Arthroplasty Research Laboratory, Hospital for Special Surgery, New York, New York, USA.
Department of Orthopaedics and Trauma Surgery, Medical University of Vienna, Vienna, Austria.

Branden R Sosa (BR)

Arthroplasty Research Laboratory, Hospital for Special Surgery, New York, New York, USA.

Yingzhen Niu (Y)

Arthroplasty Research Laboratory, Hospital for Special Surgery, New York, New York, USA.
Department of Orthopaedics, The Third Hospital of Hebei Medical University, Shijiazhuang, China.

Gang Ji (G)

Arthroplasty Research Laboratory, Hospital for Special Surgery, New York, New York, USA.
Department of Orthopaedics, The Third Hospital of Hebei Medical University, Shijiazhuang, China.

Vincentius Suhardi (V)

Arthroplasty Research Laboratory, Hospital for Special Surgery, New York, New York, USA.

Kathleen Turajane (K)

Arthroplasty Research Laboratory, Hospital for Special Surgery, New York, New York, USA.

Sehwan Mun (S)

Arthroplasty Research Laboratory, Hospital for Special Surgery, New York, New York, USA.

Ren Xu (R)

Regulation of Bone Mass Laboratory, Weill Cornell Medicine, New York, New York, USA.

Reinhard Windhager (R)

Department of Orthopaedics and Trauma Surgery, Medical University of Vienna, Vienna, Austria.

Kyung Hyun Park-Min (KH)

Arthroplasty Research Laboratory, Hospital for Special Surgery, New York, New York, USA.
Regulation of Bone Mass Laboratory, Weill Cornell Medicine, New York, New York, USA.

Matthew B Greenblatt (MB)

Regulation of Bone Mass Laboratory, Weill Cornell Medicine, New York, New York, USA.

Mathias P Bostrom (MP)

Arthroplasty Research Laboratory, Hospital for Special Surgery, New York, New York, USA.
Regulation of Bone Mass Laboratory, Weill Cornell Medicine, New York, New York, USA.

Xu Yang (X)

Arthroplasty Research Laboratory, Hospital for Special Surgery, New York, New York, USA.

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Classifications MeSH