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Bone Homeostasis in Experimental Fumonisins Intoxication of Rats Cover

References

  1. Abel S., Gelderblom W.C. (1998). Oxidative damage and fumonisin B1-induced toxicity in primary rat hepatocytes and rat liver in vivo. Toxicology, 131: 121–131.10.1016/S0300-483X(98)00123-1
  2. Álvarez-Lloret P., Lind P.M., Nyberg I., Orberg J., Rodríguez-Navarro A.B. (2009). Effects of 3,3',4,4',5-pentachlorobiphenyl (PCB126) on vertebral bone mineralization and on thyroxin and vitamin D levels in Sprague-Dawley rats. Toxicol. Lett., 187: 63–68.10.1016/j.toxlet.2009.01.030
  3. Antonissen G., Croubels S., Pasmans F., Ducatelle R., Eeckhaut V., Devree-se M., Verlinden M., Haesebrouck F., Eeckhout M., De Saeger S., Antlinger B., Novak B., Martel A., Van Immerseel F. (2015). Fumonisins affect the intestinal microbial homeostasis in broiler chickens, predisposing to necrotic enteritis. Vet. Res., 46: 98.10.1186/s13567-015-0234-8
  4. Bhardwaj P., Rai D., Garg M.L. (2016). Zinc improves the bone mechanical strength in ovariectomized rat model by restoring bone composition and hydroxyapatite crystallite dimension. Vitam. Miner., 5: 137.10.4172/2376-1318.1000137
  5. Blicharski T., Tomaszewska E., Dobrowolski P., Hułas-Stasiak M., Muszyń-ski S. (2017). A metabolite of leucine (β-hydroxy-β-methylbutyrate) given to sows during pregnancy alters bone development of their newborn offspring by hormonal modulation. PLOS ONE, 12: e0179693.10.1371/journal.pone.0179693
  6. Camplejohn K.L., Allard S.A. (1988). Limitations of safranin 'O' staining in proteoglycan-depleted cartilage demonstrated with monoclonal antibodies. Histochemistry, 89: 185–188.10.1007/BF00489922
  7. EC (European Commission) (2006). Commission Recommendation No. 576/2006 of 17 August 2006 on the presence of deoxynivalenol, zearalenone, ochratoxin A, T-2 and HT-2 and fumonisins in products intended for animal feeding. Off. J. Eur. Union, L229: 7.
  8. EC (European Commission)(2016). Commission Recommendation No 2016/1219 of 29 July 2016 amending Recommendation 2006/576/EC as regards deoxynivalenol, zearalenone and ochratoxin A in pet food. Off. J. Eur. Union, L208: 59.
  9. FDA (Food and Drug Administration)(2001). Guidance for industry: fumonisin levels in human foods and animal feeds. Federal Register, 66: 56688–56689.
  10. Ferretti J.L., Cointry G.R., Capozza R.F., Frost H.M. (2003). Bone mass, bone strength, muscle-bone interactions, osteopenias and osteoporoses. Mech. Ageing Dev., 124: 269–279.10.1016/S0047-6374(02)00194-X
  11. Gelderblom W.C., Cawood M.E., Snyman S.D., Marasas W.F. (1994). Fumonisin B1 do-simetry in relation to cancer initiation in rat liver. Carcinogenesis, 15: 209–214.10.1093/carcin/15.2.209
  12. Harkness J.E., Wagner J.E. (1995). The biology and medicine of rabbits and rodents. York, Williams and Wilkins, 4th ed., 372 pp.
  13. Hayes W.C., Gerhart T.N. (1985). Biomechanics of bone: Applications for assessment of bone strength. J. Bone Miner. Res., 3: 259–294.
  14. Hodgson S., Thomas L., Fattore E., Lind P.M., Alfven T., Hellström L., Håkans-son H., Carubelli G., Fanelli R., Jarup L. (2008). Bone mineral density changes in relation to environmental PCB exposure. Environ. Health Persp., 116: 1162–1166.10.1289/ehp.11107
  15. Jonas J., Burns J., Abel E.W., Cresswell M.J., Strain J.J., Paterson C.R. (1993). Impaired mechanical strength of bone in experimental copper deficiency. Ann. Nutr. Metab., 37: 245–252.10.1159/000177774
  16. Kierończyk B., Rawski M., Józefiak D., Świątkiewicz S. (2017). Infectious and non-infectious factors associated with leg disorders in poultry – a review. Ann. Anim. Sci., 17: 645–669.10.1515/aoas-2016-0098
  17. Kjaer M. (2004). Role of extracellular matrix in adaptation of tendon and skeletal muscle to mechanical loading. Physiol. Rev., 84: 649–698.10.1152/physrev.00031.2003
  18. Lebepe-Mazur S., Bal H., Hopmans E., Murphy P., Hendrich S. (1995). Fumonisin B1 is fetotoxic in rats. Vet. Hum. Toxicol., 37: 126–130.
  19. Ledoux D.R., Brown T.P., Weibking T.S., Rottinghaus G.E. (1992). Fumonisin toxicity in broiler chicks. J. Vet. Diagn. Invest., 4: 330–333.10.1177/104063879200400317
  20. Lee S., Kim D.H., Keum M.C., Han E., An B.K., Chang H.H., Choi Y.H., Moon B.H., Lee K.W. (2018). Effects of fumonisin B1 and mycotoxin binders on growth performance, tibia characteristics, gut physiology, and stress indicators in broiler chickens raised in different stocking densities. Poultry Sci., 97: 845–854.10.3382/ps/pex382
  21. Mc Kean C., Tang L., Tang M., Billam M., Wang Z., Theodorakis C.W., Ken-dall R.J., Wang J.S. (2006). Comparative acute and combinative toxicity of aflatoxin B1 and fumonisin B1 in animals and human cells. Food Chem. Toxicol., 44: 868–876.10.1016/j.fct.2005.11.011
  22. Muszyński S., Kwiecień M., Tomaszewska E., Świetlicka I., Dobrowolski P., Kasperek K., Jeżewska-Witkowska G. (2017). Effect of caponization on performance and quality characteristics of long bones in Polbar chickens. Poultry Sci., 96: 491–500.10.3382/ps/pew301
  23. Naka M., Morita Y., Ikeuchi K. (2005). Influence of proteoglycan contents and of tissue hydration on the frictional characteristics of articular cartilage. Proc. Inst. Mech. Eng. H., 2019: 175–182.10.1243/095441105X34220
  24. Placinta C.M., D’Mello J.P.F., Macdonald A.M.C. (1999). A review of worldwide contamination of cereal grains and animal feed with Fusarium mycotoxins. Anim. Feed Sci. Technol., 78: 21–37.10.1016/S0377-8401(98)00278-8
  25. Rajesh R., Hariharasubramanian A., Ravichandran Y.D. (2012). Chicken bone as a bioresource for the bioceramic (hydroxyapatite). Phosphorus Sulfur, 187: 914–925.10.1080/10426507.2011.650806
  26. Reeves P.G., Nielsen F.H., Fahey Jr.G.C. (1993). AIN-93 Purified diets for laboratory rodents: final report of the American Institute of Nutrition ad hoc writing committee on the reformulation of the AIN-76A rodent diet. J. Nutr., 123: 1939–1951.10.1093/jn/123.11.1939
  27. Rich L., Wihittaker P. (2005). Collagen and picrosirius red staining: a polarized light assessment of fibrillar hue and spatial distribution. Braz. J. Morphol. Sci., 22: 97–104.
  28. Riley R.T., Voss K.A. (2006). Differential sensitivity of rat kidney and liver to fumonisin toxicity: organ-specific differences in toxin accumulation and sphingoid base metabolism. Toxicol. Sci., 92: 335–345.10.1093/toxsci/kfj198
  29. Rodríguez-Estival J., Álvarez-Lloret P., Rodríguez-Navarro A.B., Mateo R. (2013). Chronic effects of lead (Pb) on bone properties in red deer and wild boar: relationship with vitamins A and D3. Environ. Pollut., 174: 142–149.10.1016/j.envpol.2012.11.019
  30. Ross P.F., Rice L.G., Osweiler G.D., Nelson P.E. (1992). A review and update of animal toxicoses associated with fumonisin contaminated feeds and production of fumonisins by Fusarium isolates. Mycopathologia, 117: 109–114.10.1007/BF00497286
  31. Ruppel M.E., Miller L.M., Burr D.B. (2008). The effect of the microscopic and nanoscale structure on bone fragility. Osteoporos. Int., 19: 1251–1265.10.1007/s00198-008-0579-1
  32. Schneider C.A., Rasband W.S., Eliceiri K.W. (2012). NIH Image to ImageJ: 25 years of image analysis. Nat. Methods, 9: 671–675.10.1038/nmeth.2089
  33. Schreiner W.N., Jenkins R. (1983). Profile fitting for quantitative analysis in X-ray powder diffraction. Adv. X-Ray Analysis, 26: 141–147.10.1154/S0376030800012404
  34. Šegvić M., Pepeljnjak S. (2001). Fumonisins and their effects on animal health a brief review. Vet. Arhiv., 71: 299–323.
  35. Sergeev I.N., Kravchenko L.V., Piliia N.M., Batukhanov A.B., Sobolev V.S., Kuz'mina E.E., Iakushina L.M., Spirichev V.B., Tutel'ian V.A. (1990). The effect of the trichothecene mycotoxin deoxynivalenol (vomitoxin) on calcium homeostasis, vitamin D metabolism and receptors in rats. Vopr. Med. Khim., 36: 26–29.
  36. Shahnazari M., Lang D., Fosmire G., Sharkey N., Mitchell A., Leach R. (2007). Strontium administration in young chickens improves bone volume and architecture but does not enhance bone structural and material strength. Calcif. Tissue Int., 80: 160–166.10.1007/s00223-006-0176-2
  37. Smith T.K. (1981). Effect of dietary calcium, phosphorus and vitamin D on zearalenone toxicosis in rats. Can. J. Anim. Sci., 61: 191–197.10.4141/cjas81-025
  38. Streit E., Naehrer K., Rodrigues I., Schatzmayr G. (2013). Mycotoxin occurrence in feed and feed raw materials worldwide: Long-term analysis with special focus on Europe and Asia. J. Sci. Food Agric., 93: 2892–2899.10.1002/jsfa.6225
  39. Suvara S.K., Layton C., Bancroft J.D. (2013). Bancroft’s theory and practice of histological techniques. Edinburgh, Churchill Livingstone, 7th ed., pp. 654.
  40. Śliwa E., Dobrowolski P., Tatara M.R., Piersiak T., Siwicki A., Rokita E, Pierzynowski S.G. (2009). Alpha-ketoglutarate protects the liver of piglets exposed during prenatal life to chronic excess of dexamethasone from metabolic and structural changes. J. Anim. Physiol. Anim. Nutr., 93: 192–202.10.1111/j.1439-0396.2007.00805.x
  41. Tomaszewska E., Dobrowolski P., Wydrych J. (2012). Postnatal administration of 2-oxo-glutaric acid improves articular and growth plate cartilages and bone tissue morphology in pigs prenatally treated with dexamethasone. J. Physiol. Pharmacol., 63: 547–554.
  42. Tomaszewska E., Dobrowolski P., Puzio I. (2013). Morphological changes of the cartilage and bone in newborn piglets evoked by experimentally induced glucocorticoid excess during pregnancy. J. Anim. Physiol. Anim. Nutr., 97: 785–796.10.1111/j.1439-0396.2012.01319.x
  43. Tomaszewska E., Dobrowolski P., Kostro K., Jakubczak A., Taszkun I., Jawor-ska-Adamu J., Żmuda A., Rycerz K., Muszyński S. (2015). The effect of HMB and 2-Ox administered during pregnancy on bone properties in primiparous and multiparous minks (Neovison vison). Bull.Vet. Inst. Pulawy, 59: 563–568.10.1515/bvip-2015-0084
  44. Tomaszewska E., Dobrowolski P., Winiarska-Mieczan A., Kwiecień M., Tom-czyk A., Muszyński S., Radzki R. (2016). Alteration in bone geometric and mechanical properties, histomorphometrical parameters of trabecular bone, articular cartilage, and growth plate in adolescent rats after chronic co-exposure to cadmium and lead in the case of supplementation with green, black, red and white tea. Environ. Toxicol. Pharmacol., 46: 36–44.10.1016/j.etap.2016.06.027
  45. Tomaszewska E., Dobrowolski P., Muszyński S., Kostro K., Taszkun I., Żmu-da A., Blicharski T., Hułas-Stasiak M. (2017 a). DON-induced changes in bone homeostasis in mink dams, J. Vet. Res., 61: 357–362.10.1515/jvetres-2017-0047589442129978095
  46. Tomaszewska E., Muszyński S., Ognik K., Dobrowolski P., Kwiecień M., Juśkiewicz J., Chocyk D., Świetlicki M., Blicharski T., Gładyszewska B. (2017 b). Comparison of the effect of dietary copper nanoparticles with copper (II) salt on bone geometric and structural parameters as well as material characteristics in a rat model. J. Trace Elem. Med. Biol., 42: 103–110.10.1016/j.jtemb.2017.05.00228595781
  47. Tomaszewska E., Dobrowolski P., Kwiecień M., Winiarska-Mieczan A., Tom-czyk A., Muszyński S., Gładyszewska B. (2017 c). Dose-dependent influence of dietary Cu-glycine complex on bone and hyaline cartilage development in adolescent rats. Ann. Anim. Sci., 17: 1089–1105.10.1515/aoas-2017-0022
  48. Tomaszewska E., Muszyński S., Dobrowolski P., Winiarska-Mieczan A., Kwiecień M., Tomczyk-Warunek A., Ejtel M., Świetlicka I., Gładyszew-skaB. (2018 a). White tea is more effective in preservation of bone loss in adult rats co-exposed to lead and cadmium compared to black, red or green tea. Ann. Anim. Sci., 18: 937–953.10.2478/aoas-2018-0026
  49. Tomaszewska E., Dobrowolski P., Świetlicka I., Muszyński S., Kostro K., Jakubczak A., Taszkun I., Żmuda A., Rycerz K., Blicharski T., Jaworska--Adamu J. (2018 b). Effects of maternal treatment with β-hydroxy-β-metylbutyrate and 2-oxoglutaric acid on femur development in offspring of minks of the standard dark brown type. J. Anim. Physiol. Anim. Nutr., 102: e299–e308.10.1111/jpn.1274228503899
  50. Voss K.A., Chamberlain W.J., Bacon C.W., Herbert R.A., Walters D.D., Norred W.P. (1995). Species chronic feeding study of the mycotoxin FB1 in B6C3F1 mice and Fischer 344 rats. Fundam. Appl. Toxicol., 24: 102–110.10.1093/toxsci/24.1.102
  51. Wu W., Li G., Liu T. (1995). The effect of fumonisin B1 on isolated chondrocytes and on bone formation. Poultry Sci., 74: 1431–1436.10.3382/ps.0741431
  52. Yanagishita M. (1993). Function of proteoglycans in the extracellular matrix. Acta Pathol. Jpn., 43: 283–293.10.1111/j.1440-1827.1993.tb02569.x
DOI: https://doi.org/10.2478/aoas-2019-0003 | Journal eISSN: 2300-8733 | Journal ISSN: 1642-3402
Language: English
Page range: 403 - 419
Submitted on: Sep 10, 2018
Accepted on: Jan 14, 2019
Published on: May 2, 2019
Published by: National Research Institute of Animal Production
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2019 Halyna Rudyk, Ewa Tomaszewska, Ihor Kotsyumbas, Siemowit Muszyński, Agnieszka Tomczyk-Warunek, Sylwia Szymańczyk, Piotr Dobrowolski, Dariusz Wiącek, Daniel Kamiński, Oksana Brezvyn, published by National Research Institute of Animal Production
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.