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1.
Biol Reprod ; 94(4): 86, 2016 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-26864198

RESUMO

Traditionally, research in the field of trace element biology and human and animal health has largely depended on epidemiological methods to demonstrate involvement in biological processes. These studies were typically followed by trace element supplementation trials or attempts at identification of the biochemical pathways involved. With the discovery of biological molecules that contain the trace elements, such as matrix metalloproteinases containing zinc (Zn), cytochrome P450 enzymes containing iron (Fe), and selenoproteins containing selenium (Se), much of the current research focuses on these molecules, and, hence, only indirectly on trace elements themselves. This review focuses largely on two synchrotron-based x-ray techniques: X-ray absorption spectroscopy and x-ray fluorescence imaging that can be used to identify the in situ speciation and distribution of trace elements in tissues, using our recent studies of bovine ovaries, where the distribution of Fe, Se, Zn, and bromine were determined. It also discusses the value of other techniques, such as inductively coupled plasma mass spectrometry, used to garner information about the concentrations and elemental state of the trace elements. These applications to measure trace elemental distributions in bovine ovaries at high resolutions provide new insights into possible roles for trace elements in the ovary.


Assuntos
Ovário/metabolismo , Oligoelementos/metabolismo , Animais , Bromo/metabolismo , Feminino , Ferro/metabolismo , Ovário/química , Reprodução , Selênio/metabolismo , Oligoelementos/análise , Espectroscopia por Absorção de Raios X , Zinco/metabolismo
2.
Microsc Microanal ; 21(3): 695-705, 2015 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-25850937

RESUMO

X-ray fluorescence (XRF) was used to image 40 histological cross-sections of bovine ovaries (n=19), focusing on structures including: antral follicles at different stages of growth or atresia, corpora lutea at three stages of development (II-IV), and capillaries, arterioles, and other blood vessels. This method identified three key trace elements [iron (Fe), zinc (Zn), and selenium (Se)] within the ovarian tissue which appeared to be localized to specific structures. Owing to minimal preprocessing of the ovaries, important high-resolution information regarding the spatial distribution of these elements was obtained with elemental trends and colocalizations of Fe and Zn apparent, as well as the infrequent appearance of Se surrounding the antrum of large follicles, as previously reported. The ability to use synchrotron radiation to measure trace element distributions in bovine ovaries at such high resolution and over such large areas could have a significant impact on understanding the mechanisms of ovarian development. This research is intended to form a baseline study of healthy ovaries which can later be extended to disease states, thereby improving our current understanding of infertility and endocrine diseases involving the ovary.


Assuntos
Ferro/análise , Imagem Óptica/métodos , Ovário/anatomia & histologia , Ovário/química , Selênio/análise , Oligoelementos/análise , Zinco/análise , Animais , Bovinos , Feminino , Raios X
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