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Rodent animal models of delayed bone healing and non-union formation: a comprehensive review
Author(s) -
P. García,
Tina Histing,
J. H. Holstein,
Wilfried Klein,
Matthias W. Laschke,
Romano Matthys,
Anita Ignatius,
Britt Wildemann,
Jasmin Lienau,
Anja Peters,
Bettina M. Willie,
Georg N. Duda,
L. Claes,
Tim Pohlemann,
MD Menger
Publication year - 2013
Publication title -
european cells and materials
Language(s) - English
Resource type - Journals
ISSN - 1473-2262
DOI - 10.22203/ecm.v026a01
Subject(s) - non union , bone healing , rodent , animal model , biology , medicine , anatomy , surgery , ecology
Despite the growing knowledge on the mechanisms of fracture healing, delayed healing and non-union formation remain a major clinical challenge. Animal models are needed to study the complex process of normal and impaired fracture healing and to develop new therapeutic strategies. Whereas in the past mainly large animals have been used to study normal and impaired fracture healing, nowadays rodent models are of increasing interest. New osteosynthesis techniques for rat and mice have been developed during the last years, which allowed for the first time stable osteosynthesis in these animals comparable to the standards in large animals and humans. Based on these new implants, different models in rat and mice have been established to study delayed healing and non-union formation. Although in humans the terms delayed union and non-union are well defined, in rodents definitions are lacking. However, especially in scientific studies clear definitions are necessary to develop a uniform scientific language and allow comparison of the results between different studies. In this consensus report, we define the basic terms "union", "delayed healing" and "non-union" in rodent animal models. Based on a review of the literature and our own experience, we further provide an overview on available models of delayed healing and non-union formation in rats and mice. We further summarise the value of different approaches to study normal and delayed fracture healing as well as non-union formation, and discuss different methods of data evaluation.

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