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1.
Biol Trace Elem Res ; 2024 Mar 04.
Article in English | MEDLINE | ID: mdl-38436799

ABSTRACT

The purpose of this study was to determine the effects of the dietary addition of zinc (Zn) in the form of sulphate (Zn-S), glycine (Zn-G), and hydroxychloride (Zn-H) on quail performance, eggshell quality, antioxidant status, mineral excretion, biomechanical properties and mineralization of bone. A total of 75 female quails (10-weeks-old) were randomly distributed into 3 groups with 5 replications, each with 5 female quails. Treatment groups were set up by adding Zn-S and Zn-H as the inorganic form and Zn-G as the organic form of zinc to the corn-soybean basal diet (34.14 mg/kg Zn) to obtain 50 mg/kg Zn and the feeding experiment lasted for 12 weeks. Performance parameters and egg production were not impaired by the Zn source (P > 0.05). The inclusion of Zn-S in the diet produced a reduction in eggshell thickness, while an improvement in yolk antioxidant capacity (measured as MDA concentration) was detected compared to the other Zn sources (P < 0.05). Shear strength and cortical bone area increased (P < 0.05) with Zn-G supplementation, however, the mineral concentration of the tibia was higher (P < 0.01) in those quails who had received Zn-H. Lower levels of mineral excretion were observed in both types of supplementations compared to Zn-S. Therefore, it can be stated that Zn-G or Zn-H supplementation in the diet of laying quails could be an interesting strategy to reduce mineral excretion and improve bone mineralization without affecting performance compared to Zn-S. However, further studies are needed to determine the differences between Zn-G and Zn-H.

2.
Biol Trace Elem Res ; 2023 Sep 21.
Article in English | MEDLINE | ID: mdl-37733217

ABSTRACT

The higher availability of zinc (Zn) from organic than inorganic sources is already established, but more assertive and cost-friendly protocols on the total replacement of inorganic with organic Zn sources for laying hens still need to be developed. Because some discrepancy in the effects of this replacement in laying hen diets is noticeable in the literature, the objective of this meta-analysis was to properly quantify the effect size of total replacing inorganic Zn with organic Zn in the diet of laying hens on their laying performance, egg quality, and Zn excretion. A total of 2340 results were retrieved from Pubmed, Scielo, Scopus, WOS, and Science Direct databases. Of these, 18 primary studies met all the eligibility criteria and were included in this meta-analysis. Overall, the replacement of inorganic Zn with organic Zn, regardless of other factors, improved (p < 0.01) egg production by 1.46%, eggshell thickness by 0.01 mm, and eggshell resistance by 0.11 kgf/cm2. Positive results of the same nutritional strategy on egg weight and Zn excretion were only observed at specific conditions, especially when organic Zn was supplemented alone in the feed, not combined with other organic minerals. Therefore, there is evidence in the literature that the total replacement of inorganic Zn with organic Zn improves egg production, eggshell thickness, and eggshell resistance. Factors such as hen age and genetics, organic Zn source, concentration of Zn in the feed, and the strategy of its supplementation have to be more carefully considered in protocols designed to address egg weight and Zn excretion by the hen.

3.
Front Vet Sci ; 10: 1142054, 2023.
Article in English | MEDLINE | ID: mdl-37303716

ABSTRACT

Introduction: More effective and environment-friendly organic trace minerals have great potential to replace the inorganic elements in the diets of livestock. This study aimed to investigate the effects of dietary replacement of 100% inorganic trace minerals (ITMs) with 30-60% organic trace minerals (OTMs) on the performance, meat quality, antioxidant capacity, nutrient digestibility, and fecal mineral excretion and to assess whether low-dose OTMs could replace whole ITMs in growing-finishing pigs' diets. Methods: A total of 72 growing-finishing pigs (Duroc × Landrace × Yorkshire) with an initial average body weight of 74.25 ± 0.41 kg were selected and divided into four groups with six replicates per group and three pigs per replicate. The pigs were fed either a corn-soybean meal basal diet containing commercial levels of 100% ITMs or a basal diet with 30, 45, or 60% amino acid-chelated trace minerals instead of 100% ITMs, respectively. The trial ended when the pigs' weight reached ~110 kg. Results: The results showed that replacing 100% ITMs with 30-60% OTMs had no adverse effect on average daily gain, average daily feed intake, feed/gain, carcass traits, or meat quality (P > 0.05) but significantly increased serum transferrin and calcium contents (P < 0.05). Meanwhile, replacing 100% ITMs with OTMs tended to increase serum T-SOD activity (0.05 ≤ P < 0.1), and 30% OTMs significantly increased muscle Mn-SOD activity (P < 0.05). Moreover, replacing 100% ITMs with OTMs tended to increase the apparent digestibility of energy, dry matter, and crude protein (0.05 ≤ P < 0.1) while significantly reducing the contents of copper, zinc, and manganese in feces (P < 0.05). Discussion: In conclusion, dietary supplementation with 30-60% OTMs has the potential to replace 100% ITMs for improving antioxidant capacity and nutrient digestibility and for reducing fecal mineral excretion without compromising the performance of growing-finishing pigs.

4.
Anim Biosci ; 34(11): 1811-1821, 2021 Nov.
Article in English | MEDLINE | ID: mdl-34237928

ABSTRACT

OBJECTIVE: A trial was conducted to investigate the effects of supplemental levels of Mn provided by organic and inorganic trace mineral supplements on growth, tissue mineralization, mineral balance, and antioxidant status of growing broiler chicks. METHODS: A total of 500 male chicks (8-d-old) were used in 10-day feeding trial, with 10 treatments and 10 replicates of 5 chicks per treatment. A 2×5 factorial design was used where supplemental Mn levels (0, 25, 50, 75, and 100 mg Mn/kg diet) were provided as MnSO4∙H2O or MnPro. When Mn was supplied as MnPro, supplements of zinc, copper, iron, and selenium were supplied as organic minerals, whereas in MnSO4∙H2O supplemented diets, inorganic salts were used as sources of other trace minerals. Performance data were fitted to a linearbroken line regression model to estimate the optimal supplemental Mn levels. RESULTS: Manganese supplementation improved body weight, average daily gain (ADG) and feed conversion ratio (FCR) compared with chicks fed diets not supplemented with Mn. Manganese in liver, breast muscle, and tibia were greatest at 50, 75, and 100 mg supplemental Mn/kg diet, respectively. Higher activities of glutathione peroxidase and superoxide dismutase (total-SOD) were found in both liver and breast muscle of chicks fed diets supplemented with inorganic minerals. In chicks fed MnSO4∙H2O, ADG, FCR, Mn balance, and concentration in liver were optimized at 59.8, 74.3, 20.6, and 43.1 mg supplemental Mn/kg diet, respectively. In MnPro fed chicks, ADG, FCR, Mn balance, and concentration in liver and breast were optimized at 20.6, 38.0, 16.6, 33.5, and 62.3 mg supplemental Mn/kg, respectively. CONCLUSION: Lower levels of organic Mn were required by growing chicks for performance optimization compared to inorganic Mn. Based on the FCR, the ideal supplemental levels of organic and inorganic Mn in chick feeds were 38.0 and 74.3 mg Mn/kg diet, respectively.

5.
Animals (Basel) ; 11(4)2021 Apr 19.
Article in English | MEDLINE | ID: mdl-33921551

ABSTRACT

This study was conducted to investigate the effects of different patterns and sources of Zn, Fe, Cu, Mn, and Se on performance, mineral deposition (liver, kidney, pancreas, spleen, pectorals muscle, and tibia), and excretion of laying hens, then to find an optimal dietary supplemental pattern of trace elements in laying hens. A total of 864 healthy laying hens with similar laying rate (Roman, 26-week-old) were randomly divided into nine treatments, with six replications of 16 birds per replication, including a control treatment and four patterns with different element sources (inorganic or organic): (1) Control treatment (basic diet without added extra trace minerals, CT); pattern 1, NRC (1994) recommended level (NRC-L): (2) inorganic minerals of NRC-L pattern (IN), (3) organic minerals of NRC-L pattern (ON); pattern 2, NY/T 33-2004 recommended level (NY/T-L): (4) inorganic minerals of NY/T-L pattern (IY), (5) organic minerals of NY/T-L pattern (OY); pattern 3, 50% NRC (1994) recommended level (50% NRC-L): (6) inorganic minerals of 50% NRC-L pattern (IHN), (7) organic minerals of 50% NRC-L pattern (OHN); pattern 4, the ratio of minerals in blood of laying hens was taken as the supplement proportion of trace elements, and Zn was supplemented depended on NRC recommended level (TLB): (8) inorganic minerals of TLB pattern (IB), (9) organic minerals of TLB pattern (OB). Two weeks were allowed for adjustment to the conditions and then measurements were made over eight weeks. Supplementation of trace elements led to increased daily egg weight (p < 0.05). Patterns of minerals in diets affected the content of liver Mn, pancreas Mn, tibia Mn, and the tissues Se (p < 0.05). Sources of minerals had positive effects on daily egg weight (p < 0.05), the concentrations of liver Fe, kidney Cu, tissues Se (except spleen), and fecal Se (p < 0.05). In conclusion, diet supplemented with the organic trace minerals of 50% NRC-L pattern (OHN) in laying hens promoted optimum laying performance, mineral deposition, and reduced mineral excretion.

6.
Trop Anim Health Prod ; 53(1): 121, 2021 Jan 14.
Article in English | MEDLINE | ID: mdl-33442786

ABSTRACT

Organic trace minerals (OTMs) have the potential to replace inorganic trace minerals (ITMs), but the degree to which the dietary levels can be reduced is not well defined. This study aimed to investigate the effect of replacing of ITMs with lower levels of OTMs on growth performance, blood parameters, antioxidant status, and immune indexes in weaned piglets. The experiment was conducted in a subtropical city in Guangdong Province in South China (subtropical climate) from July to September 2018. A total of 600 pigs with an average initial BW of 8.90 kg were allotted by gender and weight to 5 treatments with 6 replicate pens per treatment. Experimental treatments: (A) Control group (a basal diet with iron, copper, manganese, and zinc from sulfates and sodium selenite providing commercially utilized levels in China of 150, 25, 40, 150, and 0.5 mg/kg, respectively). (B) 1/2 ITM group (inorganic trace minerals providing 1/2 control group levels). (C) 1/2 OTM group (1/2 control group trace mineral levels with manganese, iron, zinc, and selenium from Sel-Plex® and Cu from Bioplex®). (D) 1/3 ITM group (1/3 control group trace mineral levels from inorganic forms). (E) 1/3 OTM group (1/3 control group trace mineral levels from organic forms). The results suggest no significant effects of trace mineral sources or levels, on average daily gain (ADG) and average daily feed intake (ADFI) among different treatments during the entire experiment. The level of zinc in serum was significantly decreased in the 1/3 ITM group. The 1/3 OTM group had a significantly higher (P < 0.05) immunoglobulin G (IgG) level in serum. Fecal mineral excretion decreased significantly (P < 0.05) when decreased dietary levels of trace minerals were included at 1/2 and 1/3 levels regardless of sources. Fecal concentrations of zinc excretion were lower (P < 0.05) with 1/2 OTM supplementation than 1/2 ITMs. The present study shows that replacing high doses of ITMs with low concentrations (1/3) of OTMs does not adversely affect the growth performance of piglets. At low levels, total replacement of ITMs with OTMs improved IgG and reduced fecal excretion of copper, zinc, iron, and manganese, thereby mitigating environmental pollution.


Subject(s)
Trace Elements , Animal Feed/analysis , Animals , Antioxidants , China , Copper , Diet/veterinary , Dietary Supplements , Minerals/analysis , Swine
7.
Front Vet Sci ; 8: 770195, 2021.
Article in English | MEDLINE | ID: mdl-35111837

ABSTRACT

This study was conducted to evaluate the effects of dietary supplementation of different recommended levels of Cu and Zn on antioxidant capacity, tissue mineral status, minerals excretion, meat quality, digestive enzyme activity, and metal transporters in finishing pigs. A total of 120 pigs (with an average initial body weight (BW) of 70.0 ± 2.1 kg) were randomly divided into four treatments: (1) basal diet without added Cu or Zn (control), (2) basal diet+35 mg cupreous N-carbamylglutamate chelate (NCG-Cu) +150 mg zinc-methionine chelate (Zn-Met) (AC), (3) basal diet + 3.0 mg of NCG-Cu + 43 mg Zn-Met (CN), and (4) basal diet + 3.5 mg NCG-Cu + 50 mg Zn-Met (NRC100). Pig growth performance was not affected by the level of Cu or Zn. Among the four treatments, the AC treatment had the highest concentration (P < 0.05) of glutathione peroxidase (GSH-Px). Pigs fed the AC diet had the highest (P < 0.05) liver Zn, fecal Cu, and fecal Zn among the four treatments. The protein levels of trypsin and aminopeptidase N (APN) in the intestinal mucosa showed their highest levels (P < 0.05) in the NRC100 and AC treatments. The mRNA levels of trypsinogen and APN were significantly up-regulated (P < 0.05) in the AC, CN, and NRC100 treatments compared with the control. The mRNA levels for the Zn transporter genes SLC30A1 (ZnT1) and SLC30A2 (ZnT2) were significantly up-regulated (P < 0.05) in the AC treatment, and the mRNA levels for SLC39A4 (ZIP4) and metallothionein 1 (MT) in the AC, CN, and NRC100 treatments were significantly up-regulated (P < 0.05) compared with the control. Meat quality were not affected (P > 0.05) by the different recommended levels of Cu and Zn. These results indicated that the supplemental Cu and Zn levels routinely used in AC diets in Chinese commercial feed enterprises should be reduced.

8.
Asian-Australas J Anim Sci ; 33(1): 132-138, 2020 01 01.
Article in English | MEDLINE | ID: mdl-31208186

ABSTRACT

OBJECTIVE: To investigate the effects of low-dose trace mineral proteinates on reproductive performance, mineral status, milk immunoglobulin contents and fecal mineral excretion of sows. METHODS: Eighty crossbred sows (Landrace×Large White) were randomly allocated to two groups in a 135-day trail, from breeding through 21 d postpartum. The two treatments were inorganic trace minerals (ITM): a basal diet+inorganic iron (Fe), copper (Cu), manganese (Mn), and zinc (Zn) at 90, 15, 25 and 90 mg/kg, respectively and organic trace minerals (OTM): a basal diet+proteinates of Fe, Cu, Mn, and Zn at 72, 12, 20, and 72 mg/kg, respectively. RESULTS: Compared with ITM, OTM significantly increased (p&lt;0.05) the number of piglets with birthweight &gt;1 kg, the litter weaning weight, and milk Fe, Cu contents. No significant differences (p&gt;0.05) were observed on sow hair mineral contents or immunoglobulin M (IgM), IgG, and IgA contents in colostrum and milk. In comparsion to ITM, OTM decreased fecal Fe, Cu, Mn, and Zn contents of gestating sows (p&lt;0.01) and Fe, Mn, and Zn in lactating sows (p&lt;0.01). CONCLUSION: These results indicate that low-dose mineral proteinates can increase the number of piglets with birthweight &gt;1 kg, the litter weaning weight and certain milk mineral concentrations while reducing fecal mineral excretion.

9.
Asian-Australas J Anim Sci ; 33(4): 588-596, 2020 Apr.
Article in English | MEDLINE | ID: mdl-31480181

ABSTRACT

OBJECTIVE: The objective of this study was to investigate the effects of low doses of organic trace minerals (iron, copper, manganese, and zinc) on productive performance, egg quality, yolk and tissue mineral retention, and fecal mineral excretion of laying hens during the late laying period. METHODS: A total of 405 healthy hens (HY-Line White, 50-week-old) were randomly divided into 3 treatments, with 9 replicates per treatment and 15 birds per replicate. The dietary treatments included feeding a basal diet + inorganic trace minerals at commercial levels (CON), a basal diet + inorganic trace minerals at 1/3 commercial levels (ITM), and a basal diet + proteinated trace minerals at 1/3 commercial levels (TRT). The trial lasted for 56 days. RESULTS: Compared to CON, ITM decreased (p<0.05) egg production, daily egg mass, albumen height, eggshell strength, yolk Fe concentration, serum alkaline phosphatase activity and total protein, and increased (p<0.05) egg loss and feed to egg ratio. Whereas with productive performance, egg quality, yolk mineral retention, and serum indices there were no differences (p>0.05) between CON and TRT. The concentrations of Fe and Mn in the tissue and tibia were changed notably in ITM relative to CON and TRT. Both ITM and TRT reduced (p<0.05) fecal mineral excretion compared to CON. CONCLUSION: These results indicate that dietary supplementation of low-dose organic trace minerals reduced fecal mineral excretion without negatively impacting hen performance and egg quality.

10.
Biol Trace Elem Res ; 189(1): 224-232, 2019 May.
Article in English | MEDLINE | ID: mdl-30062463

ABSTRACT

This study investigated the effects of replacement of inorganic trace minerals (ITMs) by organic trace minerals (OTMs) on tissue mineral retention and fecal excretion in "Zhen Ning" yellow feather broiler breeders. Six hundred hens (initial BW: 1.70 ± 0.07 kg) aged 40 weeks were randomly divided into five treatments, with four replicates of 30 broiler breeders each. Experimental treatments were as follows: (1) ITM (Cu, Zn, Fe, Mn, Se providing commercially recommended concentrations), (2) L-ITM (50% of the ITM, except for Se), (3) VL-OTM (37.5% of the ITM, except for Se), (4) L-OTM (equivalent to L-ITM), and (5) OTM (62.5% of the ITM, except for Se). The duration of the study was 10 weeks including 2 weeks for adaptation. Compared with the L-ITM treatment, high-level supplementation of minerals in ITM and OTM increased the concentration of serum Mn and Se, pectoral Fe and pancreas Cu, and Fe (P < 0.05). Birds fed with OTM dietary exhibited comparable mineral retention in muscle compared with ITM. Differences were observed between L-ITM and L-OTM in serum Mn and Se, pectoral Fe, Zn, and Se, and heart Se with L-OTM retaining higher mineral concentrations than L-ITM (P < 0.05). L-OTM retained identical concentration with ITM treatment, except for the pancreatic Fe. All three organic diets reduced the Zn in excreta compared with the two inorganic diets (P < 0.05). This study indicates that replacement of dietary ITMs by OTMs improved mineral deposition in tissues and reduced fecal mineral excretion in broiler breeders under the conditions of this study.


Subject(s)
Feces/chemistry , Minerals/analysis , Minerals/metabolism , Trace Elements/analysis , Trace Elements/metabolism , Animals , Chickens , Dietary Supplements , Female
11.
J Therm Biol ; 76: 101-106, 2018 Aug.
Article in English | MEDLINE | ID: mdl-30143284

ABSTRACT

Heat stress has become a serious problem in poultry industry along with rising of the global temperatures. High environmental temperature causes deleterious impacts on physiology and immunology of poultry and impairs their productivity. Heat stress is linked to compromised productivity through a decline in growth rate, feed utilization, blood biochemistry and immunity. In addition, heat stress induced adverse effects on mineral balance of birds and the extent of such effects depended on the type of mineral and the severity of heat stress. Exposure of broilers to high temperature adversely affects mineral metabolism and their excretion route and reduced the retention of some minerals like P, Na, K, S, Mg, Mn, Zn and Cu. On the other hand, the effect of climate on intestinal microbiota has been described in a number of studies. Where, exposure to heat stress can also increase the colonization of Salmonella in the intestine and increase the susceptibility of birds to E. coli and change ileal contents. It is also characterized by decreased antioxidant enzymes in poultry species, resulting in increased oxidative stress that means presence of reactive oxygen species (ROS) in excess of the available antioxidant capacity of animal cells. However, further studies are still required to increase the information and knowledge of basic mechanisms associated with the consequences of heat stress on poultry. This article focuses on the scientific evidence available on the negative role of heat stress on physiological responses, biochemical blood parameters, immunity, antioxidant, mineral balance, acid-base balance, osmoregulation, body and rectal temperature, intestinal and ileal microbiota as well as the parameters related to thyroid, liver and kidney functions in some poultry species.


Subject(s)
Chickens/physiology , Heat-Shock Response , Hot Temperature , Animals , Chickens/metabolism , Oxidative Stress , Reactive Oxygen Species
12.
Trop Anim Health Prod ; 50(2): 317-325, 2018 Feb.
Article in English | MEDLINE | ID: mdl-28971283

ABSTRACT

Two trials were conducted to determine the non-phytate phosphorus (nPP) requirement for broiler under heat stress. In both trials, birds were distributed in a completely randomized 4 × 2 factorial design with four nPP concentrations: 0.25, 0.35, 0.45, and 0.55%, and two Ca supply techniques: Ca fixed at 0.899% (CaF) or varying along with nPP aiming a 2:1 Ca to nPP ratio (CaV). Both trials had eight pens/treatment, with nine and five birds/pen for exp. 1 and exp. 2, respectively. nPP concentration had no effect on feed intake (FI), body weight gain (BWG), feed conversion ratio (FCR), nor fat deposition ratio (FDR). nPP levels showed a linear effect on protein deposition ratio (PDR) only for CaF diets. The nPP levels had a significant effect, regardless the technique adopted, on tibia phosphorus (TibP), which varied quadratically, on tibia calcium (TibCa) that increased quadratically and linearly, respectively, on CaF and CaV diets, and on tibia ash (TibAsh) that showed a quadratic effect for both. No effect was observed on Ca to P ratio in the tibia (TibCa:TibP). The nPP levels showed a linear increase effect over phosphorus intake (PI), phosphorus excreted (PE), and phosphorus retained (PR), and a linear decrease effect on phosphorus retention coefficient (PRC). Therefore, the nPP requirement for broilers from 8 to 21 days of age that provided better performance and bone variables were 0.250 and 0.484%, respectively, for CaF diets and 0.250 and 0.511%, respectively, for CaV diets.


Subject(s)
Calcium, Dietary/administration & dosage , Chickens/metabolism , Hot Temperature , Phosphorus, Dietary/administration & dosage , Stress, Physiological , Animal Feed/analysis , Animal Nutritional Physiological Phenomena , Animals , Diet/veterinary , Male , Phosphorus , Phytic Acid , Random Allocation , Tibia/chemistry , Weight Gain
13.
Biol Trace Elem Res ; 173(2): 316-24, 2016 Oct.
Article in English | MEDLINE | ID: mdl-26920735

ABSTRACT

A total of 180 crossbred pigs (Duroc × Landrace × Large White; BW = 47.1 ± 4.8 kg) were used to investigate the effects of totally replacing inorganic trace minerals (ITMs) by organically bound trace minerals (OTMs) on growth performance, tissue mineral status, liver antioxidant enzyme activities, and fecal mineral excretion in grower-finisher pigs. A randomized complete block design with three treatments and six replicates (n = 10 pigs per pen) was used in this 69-day, 2-phase feeding trial. Experimental treatments were as follows: (1) a basal diet without trace mineral supplementation, (2) basal + ITMs (Fe, Mn, and Zn from sulfates, Cu oxychloride, and sodium selenite providing commercially recommended levels in China at 125, 22.5, 117.5, 30, and 0.3 mg/kg, respectively), and 3) basal + OTMs (Fe, Mn, Zn, and Cu from Bioplex and Se as Sel-Plex (Alltech Inc., Nicholasville, KY) providing levels identical to ITMs). No significant differences (P > 0.05) were observed in ADG, ADFI, or G:F among the treatments during the entire grower-finisher period. Supplementation with minerals, regardless of source, increased (P < 0.05) the Fe, Cu, and Se levels in the plasma; Fe and Zn levels in the liver; and Se levels in heart. Furthermore, compared with ITM group, the concentration of Zn and Se in the liver and heart, and Se in plasma and longissimus muscle were greater (P < 0.05) in OTM group. Hepatic Cu/Zn-SOD and ALP activities were increased (P < 0.05) when either ITMs or OTMs were supplemented. Pigs supplemented with OTMs displayed greater activities of Cu/Zn-SOD, ALP, and GSH-Px in the liver compared to pigs supplemented with ITMs. Dietary mineral supplementation to pig diets greatly increased (P < 0.05) fecal mineral (Fe, Mn, Zn, Cu, and Se) excretion in both grower and finisher phases. Fecal concentrations of Zn, Cu, and Se excretion were lower (P < 0.05) with OTMs supplementation than that in pigs fed diets containing ITMs. These results indicate that use of organic trace minerals, as well as no trace mineral supplementation, did not influence pig growth performance. Totally replacing ITMs by equivalent levels of OTMs could improve hepatic Cu/Zn-SOD, ALP, and GSH-Px activities and reduce fecal Mn, Cu, and Se excretion for grower-finisher pigs when supplemented at commercially recommended levels.


Subject(s)
Animal Feed , Dietary Supplements , Feces , Swine/growth & development , Trace Elements , Animals , Trace Elements/metabolism , Trace Elements/pharmacology
14.
J Environ Sci Health B ; 50(4): 293-9, 2015.
Article in English | MEDLINE | ID: mdl-25714461

ABSTRACT

A study was conducted to examine the effects of 25-hydroxyvitamin D3 (25-(OH)D3) on fecal Ca and P excretion, bone mineralization, performance and the mRNA expression of intestinal transporter genes in growing female pigs. Sixty-day old gilts (n = 24) with an average initial BW of 23.13 ± 1.49 kg were randomly allocated to a control diet (diet 1) containing wheat/corn/soybean meal and 150 IU kg(-1) of Vitamin D3, diet 1 + 50 µg of 25-(OH)D3 kg(-1) (diet 2) and diet 1 + 100 µg of 25-(OH)D3 kg(-1) (diet 3). The pigs were housed in an individual pen and had ad libitum access to feed and water for 42 days, and BWG and feed intake were measured weekly. Measures of bone mineralization and expression of Ca and P transporters mRNA were analyzed using Dual Energy X-Ray Absortiometry (DEXA) and quantitative real-time polymerase chain reaction (qRT-PCR), respectively. Data were analyzed using GLM procedure of the Statistical Analysis System (SAS Institute version 9.2). Fecal Ca and P concentration were significantly reduced (P ≤ 0.05) in pigs fed diets 2 and 3 compared with the control diet. Supplementation of 25-(OH)D3 did not significantly improve bone mineralization, animal performance and intestinal transporters mRNA expression except for SLC34A1, a sodium-dependent phosphate transporter 1. In conclusion, supplementation of 25-(OH)D3 in swine nutrition may not improve animal performance but has the potential to reduce environmental pollution by increasing dietary Ca and P retention while reducing their excretion.


Subject(s)
Animal Nutritional Physiological Phenomena , Calcifediol/metabolism , Calcium, Dietary/metabolism , Diet/veterinary , Phosphorus, Dietary/metabolism , Sus scrofa/physiology , Absorptiometry, Photon/veterinary , Animal Feed/analysis , Animals , Calcifediol/administration & dosage , Calcification, Physiologic/physiology , Calcium Channels/genetics , Calcium Channels/metabolism , Dietary Supplements/analysis , Dose-Response Relationship, Drug , Feces/chemistry , Female , Gene Expression Regulation , Phosphate Transport Proteins/genetics , Phosphate Transport Proteins/metabolism , RNA, Messenger/genetics , RNA, Messenger/metabolism , Random Allocation , Real-Time Polymerase Chain Reaction/veterinary , Sus scrofa/genetics , Sus scrofa/growth & development
15.
Arq. bras. med. vet. zootec ; 61(6): 1353-1363, dez. 2009. tab
Article in English | LILACS | ID: lil-537262

ABSTRACT

A total of 50 barrows were used to evaluate qualitative feed restriction on digestibility of dietary components, weight of organs of digestive tract, and composition and production of feces. Five experimental diets, with increasing levels of qualitative feed restriction of 0, 5, 10, 15, and 20 percent were used. There was linear reduction (P<0.001) of all digestibility coefficients on the levels of qualitative feed restriction, except for acid detergent fiber, which presented a quadratic response (P<0.05). Contents of total solids (P<0.01), volatile solids (P<0.05), and total minerals (P<0.001) in the feces augmented with increasing levels of qualitative feed restriction, whereas the levels of K (P<0.05), Cu (P<0.01), N, P, Na, Ca, Mg, Fe, and Zn (P<0.001) presented a quadratic response. Daily feces excretion; and contents of total solids, volatile solids, total minerals, and levels of N, P, K, Mn, and Cu (P<0.001) and Ca, Na, Mg, and Fe (P<0.05) presented a clear increase in function of the qualitative feed restriction level. Qualitative feed restriction can be an alternative for the disposal of agribusiness waste, providing good crop-fertilizing by the use of swine feces.


Foram utilizados 50 suínos machos castrados para avaliar o efeito da restrição alimentar qualitativa sobre a digestibilidade dos componentes dietéticos, os órgãos do trato digestório, a composição e a produção fecal. Foram utilizadas cinco dietas experimentais, com níveis de restrição qualitativa de 0, 5, 10, 15 e 20 por cento. Houve redução linear (P<0,001) para todos os coeficientes de digestibilidade, com exceção da fibra em detergente ácido, que apresentou resposta quadrática (P<0,05). Os teores de sólidos totais (P<0,01) e voláteis (P<0,05), e minerais totais (P<0,001) nas fezes aumentaram com os níveis de restrição alimentar, enquanto os níveis de K (P<0,05), Cu (P<0,01) e de N, P, Na, Ca, Mg, Fe e Zn (P<0,001), apresentaram resposta quadrática. A excreção diária de fezes, sólidos totais e voláteis, minerais totais, N, P, K, Mn e Cu (P<0,001), Ca, Na, Mg e Fe (P<0,05) apresentaram aumento em função do nível da restrição alimentar qualitativa. A restrição qualitativa pode ser alternativa para destinação de resíduos da agroindústria, conferindo boas propriedades às fezes suínas, no que diz respeito à utilização para adubação de culturas.


Subject(s)
Animals , Feces , Animal Feed/adverse effects , Rumen/physiology , Environment , Modalities, Alimentary , Swine
16.
Rev. colomb. cienc. pecu ; 21(4): 559-570, dic. 2008. graf, tab
Article in Spanish | LILACS | ID: lil-559423

ABSTRACT

Nitrógeno (N) y fósforo (P) son elementos implicados en la contaminación ambiental. Con el objetivo de evaluar el balance de N y P se utilizaron 18 vacas bajo pastoreo en pasto kikuyo (Pennisetum clandestinum) en el Centro Agropecuario Marengo en Mosquera (Cundinamarca, Colombia). Los tratamientos consistieron en tres niveles (0, 0.7 y 1.4% del peso vivo) de oferta de ensilaje (MS) de avena (Avena sativa). Esta oferta diaria fue complementada con pasto kikuyo en pastoreo hasta alcanzar una oferta total del 4%. La relación kikuyo:ensilaje fue de 4:0, 3.3:0.7 y 2.6:1.4 para los tratamientos 1, 2 y 3, respectivamente. El ensilaje se suministró diariamente (AM y PM) en el potrero. Las vacas recibieron un alimento balanceado comercial a razón de 1kg por cada 4.2 kg de leche producida, y se mantuvo constante durante el periodo experimental que duró 14 días, con siete días de adaptación y siete de mediciones. La producción de leche (AM, PM) fue medida de manera individual; mientras que la producción de orina y heces fue medida los días 0, 7, y 14, para cuantificar N y P. El volumen de orina se estimó usando creatinina y el consumo usando cromo (cantidad de heces) y fibra en detergente acido indigerible (digestibilidad). El consumo de N (667.8 g/día) y la excreción en orina (240.6 g/d) fueron significativamente mayores (p<0.05) para el tratamiento 1 que para los tratamientos 2 (560.7 y 199.7 g/d) y 3 (594.8 y 200.8 g/d); sin embargo, no se encontraron diferencias estadísticas significativas (p>0.05) en la eficiencia de utilización de N (15.6; 16.6 y 15.1%, respectivamente). El consumo de P (98.2, 85.9, y 93.4 g/d), la excreción en orina (0.43, 0.39, y 0.48, g/d) y en heces (91.9, 100.7, y 108.6 g/d) no fueron estadísticamente diferentes entre tratamientos (p>0.05); sin embargo, el balance de P fue significativamente mayor (p<0.05) para el tratamiento 1 (5.9 g/d) que para los tratamientos 2 (-15.1g/d) y 3 (-15.6 g/d).


Nitrogen (N) and Phosphorus (P) have been implicated in environmental pollution. To evaluate N a P balance, eighteen lactating multiparous Holstein cows grazing kikuyu in the Livestock Center Marengo in Mosquera (Cundinamarca, Colombia). The treatments consisting three allowances of oat silage 0, 0.7 and 1.4 kg/100 kg of body weight. This daily allowance was completed with kikuyu on grazing to obtain a total dry matter allowance of 4kg/100 kg of body weight. The kikuyu and silage ratio was 4:0; 3.3:0.7 and 2.6:1.4 for treatments 1, 2 and 3, respectively. Cows received a commercial balanced feed 1kg for each 4.2kg of milk, and it was maintained during all the experimental period. This period lasted 14 days and consisted of 7 adaptation days and 7 experimental days. Individual milk production was measured (AM PM) and samples of urine and feces were taken on days 0, 7 and 14 to determine N and P. Urine volume was estimated using creatinine and dry matter intake using chromium (feces volume) and Indigestible Acid Detergent Fiber (Digestibility). N intake (667.8 g/d) and urine N excretion (240.6 g/d) was greater for cows on treatment 1 than for treatment 2 (560.7 and 199.7 g/d respectively) and for treatment 3 (594.8 and 200.8 g/d) respectively. However no differences were found on the efficiency of N utilization that was 15.6; 16.6 and 15.1 % for treatments 1, 2, and 3, respectively. Daily P intakes (98.2; 85.9 and 93.4 g/d), P excretion in urine (0.43; 0.42; and 0.35 g/d) and P excretion in feces (91.8; 100.7 and 108.6) were not different between treatments, however phosphorus balance was positive and greater for cows on treatment 1 (5.9 g/d) than cows in treatments 2 and 3 (-15.5, and -15.6 g/d, respectively).


Azoto (N) e fósforo (F) são elementos envolvidos na poluição ambiental. Com o objetivo de avaliar o balanço de N e P foram usadas 18 vacas em pastagem de capim kikuyu grass (Pennisetum clandestinum) no Centro Agropecuario Marengo em Mosquera (Cundinamarca, Colombia). Os tratamentos consistiram de três níveis (0, 0.7 e 1.4% do peso corporal) lance silagem (MS) de aveia (Avena sativa). Essa oferta por dia foi complementado com pastagem Kikuyu em um lance de chegar a 4% do total da ração. A relação Kikuyu erva:silagem foi de 4:0, 3.3:0.7 e 2.6:1.4 para os tratamentos 1, 2 e 3, respectivamente. A silagem foi fornecida diariamente (AM e PM), no paddock. As vacas foram agraciados com uma alimentação equilibrada a uma taxa de 1 kg para cada 4.2 kg de leite produzido, e permaneceu constante durante o período experimental, que durou 14 dias, com sete dias de adaptação e sete dias de medidas. A produção de leite (AM, PM) foi medido numa base individual; enquanto a produção de urina e fezes foi mensurado dias 0, 7, e 14, para quantificar N e P. O volume de urina é considerada utilização e consumo de creatina usando cromo (quantidade de fezes) e fibra em detergente ácido indigestível (digestibilidade). O consumo de N (667.8 g/dia) e excretada na urina (240.6 g/d) foram significativamente maiores (p<0.05) para o tratamento 1 em comparação com os tratamentos 2 (560.7 e 199.7 g/d) e 3 (594.8 e 200.8 g/d); No entanto, não houve diferenças estatisticamente significativas (p>0.05) na eficiência de utilização de N (15.6, 16.6 e 15.1%, respectivamente). O consumo de P (98.2, 85.9 e 93.4 g/d), excreção de urina (0.43, 0.39 e 0.48 g/d) e nas fezes (91.9, 100.7 e 108.6 g/d) não foram estatisticamente diferentes entre os tratamentos (p>0.05); No entanto, o balanço de P foi significativamente maior (p<0.05) para o tratamento 1 (5.9 g/d) do que para os tratamentos 2 (-15.1 g/d) e 3 (-15.6 g/d).


Subject(s)
Animals , Environmental Pollution , Silage
17.
Article in Korean | WPRIM (Western Pacific) | ID: wpr-652049

ABSTRACT

We studied the effects of soy isoflavone supplements on bone metabolism marker (serum osteocalcin, urinary deoxypyridinoline) and urinary mineral excretion (urinary Ca, Mg, Zn) in 47 postmenopausal women. There were 24 participants in the treatment group and 23 in the control group. The treatment group consumed isoflavone extract capsules daily (which contained 90 mg of soy isoflavones) for 12 weeks. The study compared before and after isoflavone intake in the following areas: Physical examination, diet survey, bone metabolism marker and urinary mineral excretion. The average age of the treatment group was 64.6 years and that of the control group was 66.5 years. There were no significant differences between the two groups in terms of height, weight and body mass index. Both groups maintained a regular diet pattern in terms of their average daily nutrient intake. There were no significant differences between the treatment group (23.9 mg) and the control group (25.4 mg) in terms of daily isoflavone intake based on diet. The analysis of bone metabolism marker changes in the treatment group after 12 weeks of taking the isoflavone supplements demonstrated significant differences in the following: Serum osteocalcin (13.7 ng/mL in befor versus 6.8 ng/mL in after) and urinary deoxypyridinoline (5.9 nmol/mmol Cr in befor versus 4.5 nmol/mmol Cr in after). The subjects in the treatment group showed no significant difference in urinary Ca excretion. But the subjects showed a significant difference in urinary Mg (131.9 mg/day in befor versus 115.6 mg/day in after) and Zn (400.5 microgram/day in befor versus 310.2 microgram/day in after) excretion in the isoflavone treatment group at the levels of p<0.001, p<0.01, respectively. No changes were made in the intake of minerals. The composition of serum osteocalcin and urinary deoxypyridinoline, and indicators of bone metabolism, including the excretion Mg and Zn, significantly decreased. As a result, bone mineral loss was lessened.


Subject(s)
Female , Humans , Body Mass Index , Capsules , Diet , Diet Surveys , Metabolism , Minerals , Osteocalcin , Physical Examination
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