Abstract:
:Exposure to polychlorinated biphenyls (PCBs) induce a broad spectrum of toxic effects in various organs including bone. The most susceptible age-groups to the toxic effects of PCBs are foetuses and infants. The aim of the present study was to quantitatively evaluate changes in bone geometry, mineral density and biomechanical properties following perinatal exposure to the PCB mixture, Aroclor 1254 (A1254), and to examine the persistence of observed bone alterations by following the offspring over time. Sprague-Dawley rat offspring were exposed to A1254 from gestational day 1 to post-natal day (PND) 23. Femur and tibia were collected on PNDs 35, 77 and 350 and were analyzed by peripheral quantitative computed tomography and biomechanical testing. At PND35, exposure to A1254 induced short, thin femur and tibia, with reduced mechanical strength of femoral neck. No treatment-related bone changes were detected in offspring at PND77 or PND350. In conclusion, the present investigation suggests that perinatal exposure to A1254 leads to shorter, thinner and weaker bones in juvenile rats at PND35, with these effects being absent at later time-points as exposure is discontinued. The results indicate that the observed bone effects are mainly driven by the dioxin-like congeners, although it cannot exclude the contribution of the non dioxin-like congeners to the exposure outcome.
journal_name
Toxicol Lettjournal_title
Toxicology lettersauthors
Elabbas LE,Herlin M,Finnilä MA,Rendel F,Stern N,Trossvik C,Bowers WJ,Nakai J,Tuukkanen J,Viluksela M,Heimeier RA,Akesson A,Håkansson Hdoi
10.1016/j.toxlet.2011.08.003subject
Has Abstractpub_date
2011-11-10 00:00:00pages
82-8issue
1eissn
0378-4274issn
1879-3169pii
S0378-4274(11)01477-9journal_volume
207pub_type
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