Literature DB >> 26537117

Rumen Microorganisms Decrease Bioavailability of Inorganic Selenium Supplements.

M L Galbraith1, W R Vorachek1, C T Estill2,3, P D Whanger4, G Bobe3,5, T Z Davis6, J A Hall7,8.   

Abstract

Despite the availability of selenium (Se)-enriched trace mineral supplements, we have observed low Se status in cattle and sheep offered traditional inorganic Se supplements. Reasons for this may include inadequate intake or low bioavailability of inorganic Se sources. The objective of this study was to determine whether rumen microorganisms (RMO) alter the bioavailability of Se sources commonly used in Se supplements. Rumen microorganisms were isolated from ewes (n = 4) and incubated ex vivo with no Se (control), with inorganic Na selenite or Na selenate, or with organic selenomethionine (SeMet). Total Se incorporated into RMO and the amount of elemental Se formed were determined under equivalent conditions. Incorporation of Se from Na selenite, Na selenate, or SeMet into RMO was measured as fold change compared with control (no added Se). Incorporation of Se into microbial mass was greater for SeMet (13.2-fold greater than no-Se control) compared with inorganic Se supplements (P = 0.02); no differences were observed between inorganic Na selenate (3.3-fold greater than no-Se control) and Na selenite (3.5-fold greater than no-Se control; P = 0.97). Formation of non-bioavailable, elemental Se was less for RMO incubated with SeMet compared with inorganic Se sources (P = 0.01); no differences were observed between Na selenate and Na selenite (P = 0.09). The clinical importance of these results is that the oral bioavailability of organic SeMet should be greater compared with inorganic Se sources because of greater RMO incorporation of Se and decreased formation of elemental Se by RMO.

Entities:  

Keywords:  Rumen microorganisms; Ruminant; Selenium bioavailability; Selenium supplements; Sheep

Mesh:

Substances:

Year:  2015        PMID: 26537117     DOI: 10.1007/s12011-015-0560-8

Source DB:  PubMed          Journal:  Biol Trace Elem Res        ISSN: 0163-4984            Impact factor:   3.738


  6 in total

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Journal:  Animals (Basel)       Date:  2022-03-03       Impact factor: 2.752

3.  Effects of rumen bypass melatonin feeding (RBMF) on milk quality and mastitis of Holstein cows.

Authors:  Songyang Yao; Hao Wu; Hui Ma; Yao Fu; Wenjuan Wei; Tiankun Wang; Shengyu Guan; Hai Yang; Xiubo Li; Jiangpeng Guo; Yongqiang Lu; Lu Zhang; Changwang He; Yi Chang; Guoshi Liu
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4.  Supranutritional selenium level minimizes high concentrate diet-induced epithelial injury by alleviating oxidative stress and apoptosis in colon of goat.

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  6 in total

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