Quantitative X-ray microradiography for high-throughput phenotyping of osteoarthritis in mice
Author(s)
Type
Journal Article
Abstract
Objective
To investigate and validate digital X-ray microradiography as a novel, high-throughput and cost-effective screening approach to identify abnormal joint phenotypes in mice.
Method
Digital X-ray microradiography was used to quantify the subchondral bone mineral content (BMC) in the medial tibial plateau. Accuracy and reproducibility of the method were determined in 22 samples from C57BL/6(B6Brd;B6Dnk;B6N-Tyrc-Brd) wild-type mice. The method was then validated in wild-type mice that had undergone surgical destabilisation of medial meniscus (DMM) and in a genetically modified mouse strain with an established increase in trabecular bone mass.
Results
The measurement of subchondral BMC by digital X-ray microradiography had a coefficient of variation of 3.6%. Digital X-ray microradiography was able to demonstrate significantly increased subchondral BMC in the medial tibial plateau of male mice 4 and 8 weeks after DMM surgery and in female mice 8 weeks after surgery. Furthermore, digital X-ray microradiography also detected the increase in subchondral BMC in a genetically modified mouse strain with high trabecular bone mass.
Conclusion
Quantitation of subchondral BMC by digital X-ray microradiography is a rapid, sensitive and cost-effective method to identify abnormal joint phenotypes in mice of both genders at several ages.
To investigate and validate digital X-ray microradiography as a novel, high-throughput and cost-effective screening approach to identify abnormal joint phenotypes in mice.
Method
Digital X-ray microradiography was used to quantify the subchondral bone mineral content (BMC) in the medial tibial plateau. Accuracy and reproducibility of the method were determined in 22 samples from C57BL/6(B6Brd;B6Dnk;B6N-Tyrc-Brd) wild-type mice. The method was then validated in wild-type mice that had undergone surgical destabilisation of medial meniscus (DMM) and in a genetically modified mouse strain with an established increase in trabecular bone mass.
Results
The measurement of subchondral BMC by digital X-ray microradiography had a coefficient of variation of 3.6%. Digital X-ray microradiography was able to demonstrate significantly increased subchondral BMC in the medial tibial plateau of male mice 4 and 8 weeks after DMM surgery and in female mice 8 weeks after surgery. Furthermore, digital X-ray microradiography also detected the increase in subchondral BMC in a genetically modified mouse strain with high trabecular bone mass.
Conclusion
Quantitation of subchondral BMC by digital X-ray microradiography is a rapid, sensitive and cost-effective method to identify abnormal joint phenotypes in mice of both genders at several ages.
Date Issued
2014-04-30
Date Acceptance
2014-04-20
Citation
Osteoarthritis and Cartilage, 2014, 22 (10), pp.1396-1400
ISSN
1522-9653
Publisher
Elsevier
Start Page
1396
End Page
1400
Journal / Book Title
Osteoarthritis and Cartilage
Volume
22
Issue
10
Copyright Statement
© 2014 The Authors. This is
an open access article under the CC BY license (http://creativecommons.org/licenses/by/3.0/).
an open access article under the CC BY license (http://creativecommons.org/licenses/by/3.0/).
License URL
Sponsor
Medical Research Council (MRC)
Arthritis Research UK
Grant Number
G0800261
19744
Subjects
Science & Technology
Life Sciences & Biomedicine
Orthopedics
Rheumatology
Osteoarthritis
Mouse phenotyping
Subchondral bone
Bone mineral content
Digital X-ray microradiography
Destabilisation of the medial meniscus
SUBCHONDRAL BONE CHANGES
CARTILAGE
MODEL
REVEALS
MOUSE
Animals
Bone Density
Disease Models, Animal
Female
Knee Joint
Male
Menisci, Tibial
Mice
Mice, Inbred C57BL
Microradiography
Osteoarthritis, Knee
Phenotype
Reproducibility of Results
Tibia
Arthritis & Rheumatology
1103 Clinical Sciences
Publication Status
Published