Literature DB >> 23082519

Fluorosis as a probable factor in metabolic bone disease in captive New Zealand native frogs (Leiopelma species).

Stephanie D Shaw1, Phillip J Bishop, Catherine Harvey, Lee Berger, Lee F Skerratt, Karen Callon, Maureen Watson, John Potter, Richard Jakob-Hoff, Mike Goold, Nicole Kunzmann, Peter West, Rick Speare.   

Abstract

This report describes the investigations into the cause and treatment of metabolic bone disease (MBD) in captive native New Zealand frogs (Leiopelma spp.) and the role of fluoride in the disease. MBD was diagnosed in Leiopelma archeyi and Leiopelma hochstetteri in 2008 at three institutions: Auckland Zoo, Hamilton Zoo, and the University of Otago. Most of these frogs had originally been held at the University of Canterbury for several years (2000-2004) but some were collected directly from the wild. Radiographs on archived and live frogs showed that MBD had been present at Canterbury, but at a lower rate (3%) than in the current institutions (38-67%). Microcomputed tomography showed that the femoral diaphyses of the captive frogs at Auckland Zoo had greater bone volume, bone surface, cross-sectional thickness, and mean total cross-sectional bone perimeter, which is consistent with osteofluorosis. On histology of the same femurs, there was hyperplasia, periosteal growth, and thickening of trabeculae, which are also consistent with skeletal fluorosis. An increase in fluoride levels in the water supply preceded the rise in the incidence of the above pathology, further supporting the diagnosis of osteofluorosis. Analysis of long-standing husbandry practices showed that ultraviolet B (UVB) exposure and the dietary calcium:phosphorus ratio were deficient when compared with wild conditions-likely causing chronic underlying MBD. To prevent multifactorial MBD in captive Leiopelma, the authors recommend increasing dietary calcium by incorporating into the captive diet inherently calcium-rich invertebrates; increasing exposure to natural or artificial (UVB) light; and using defluoridated water. Addressing these three factors at Auckland Zoo reduced morbidity, bone fractures, and mortality rates.

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Year:  2012        PMID: 23082519     DOI: 10.1638/2011-0276R1.1

Source DB:  PubMed          Journal:  J Zoo Wildl Med        ISSN: 1042-7260            Impact factor:   0.776


  2 in total

Review 1.  Nutrition and health in amphibian husbandry.

Authors:  Gina M Ferrie; Vance C Alford; Jim Atkinson; Eric Baitchman; Diane Barber; William S Blaner; Graham Crawshaw; Andy Daneault; Ellen Dierenfeld; Mark Finke; Greg Fleming; Ron Gagliardo; Eric A Hoffman; William Karasov; Kirk Klasing; Elizabeth Koutsos; Julia Lankton; Shana R Lavin; Andrew Lentini; Shannon Livingston; Brad Lock; Tom Mason; Alejandra McComb; Cheryl Morris; Allan P Pessier; Francisco Olea-Popelka; Tom Probst; Carlos Rodriguez; Kristine Schad; Kent Semmen; Jamie Sincage; M Andrew Stamper; Jason Steinmetz; Kathleen Sullivan; Scott Terrell; Nina Wertan; Catharine J Wheaton; Brad Wilson; Eduardo V Valdes
Journal:  Zoo Biol       Date:  2014-10-08       Impact factor: 1.421

2.  The relationship between spindly leg syndrome incidence and water composition, overfeeding, and diet in newly metamorphosed harlequin frogs (Atelopus spp.).

Authors:  Julio Federico Camperio Ciani; Jorge Guerrel; Eric Baitchman; Rigoberto Diaz; Matthew Evans; Roberto Ibáñez; Heidi Ross; Eric Klaphake; Bradley Nissen; Allan P Pessier; Michael L Power; Caitlin Arlotta; Donna Snellgrove; Brad Wilson; Brian Gratwicke
Journal:  PLoS One       Date:  2018-10-16       Impact factor: 3.240

  2 in total

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