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41.
The bioavailability of iron from local plants(black cumin seeds, milk thistle seeds, sesame seedsand thyme leaves) was investigated. Apparentabsorption of iron was calculated by subtracting fecal iron(using total collection of feces) from iron intake inSprague-Dawley rats. Two trials of animal feeding wereperformed. Liver and serum concentrations of iron, andserum hemoglobin concentration were taken as responseparameters for the bioavailability. Dry thyme wasparticularly rich in iron (117.2 mg/100 g dry matter)and milk thistle seeds in crude fiber (25 g/100 g drymatter). Rats fed the dry thyme diet or thatsupplemented with 5% egg white died but when the dietwas supplemented with 10% egg white, the animalssurvived. Iron intake and apparent and total ironabsorption were highest for the rats fed the drythyme-egg white diet. Liver weights for the groups fedblack cumin seeds and dry thyme were significantlyhigher (p < 0.05) than those for the groups fed milkthistle and sesame seeds. Liver content of ironwas highest for the animals fed black cumin seeds.Serum iron content increased significantly (p < 0.05)for the animals fed black cumin seeds, and serumhemoglobin concentration increased significantly (p < 0.05) in the groups fed milk thistle seed and blackcumin seed diets, but decreased for the group fed thethyme-egg white diet. It is concluded from this studythat iron was better utilized from black cumin seedsas indicated by liver storage of iron. On the otherhand, thyme had the highest iron absorption but lowestutilization.  相似文献   
42.
In trace metal (TM)-contaminated agricultural soils,management of TM availability is important for safe crop production.In addition,maintenance or improvement of soil quality is vital for sustainable crop cultivation.Decreased TM phytoavailability and increased soil quality can be achieved by the application of various immobilizing agents to soil,which can supply both macronutrients and organic matter.This study investigated the long-term influences of four common immobilizing agents on soil biogeochemical properties and the phytoavailability of TMs in mixed metal-contaminated soil from a cultivated upland near an abandoned mining site.Lime (L),gypsum (G),fly ash (F),and animal manure-based compost (C) were applied to pots containing contaminated soil,either individually or in combination.After incubation for three years under sequential cultivation of two crops and fallow,soil biogeochemical properties were determined,and Brassica rapa plant bioassay was performed.The phytoavailability of all TMs (both cationic metals and anionic metalloids) remained significantly lower in soils treated with immobilizing agents even after three years,when compared with the no-agent control (CK) soil.In addition,the soil quality was significantly improved by treatment with immobilizing agents.For instance,the C and L+C treatments were the most effective in improving soil physical (bulk density,porosity,and water-resistant aggregate stability),chemical (pH,organic matter,total nitrogen,cation exchange capacity,and plant-available phosphorus,magnesium,and potassium),and biological (microbial biomass carbon and dehydrogenase activity) properties.The improvement of soil properties and lowering of TM bioavailability were also consistent with the most significant increase in B.rapa biomass production observed in the C treatment,followed by the L+C,G+F,L,G,F,and L+G treatments,as compared with that in CK.These results indicate that the function of the TM-immobilizing agent as a soil quality conditioner,in addition to its TM immobilizing effect,should be considered when selecting such agents for agricultural or ecological applications.  相似文献   
43.
This study aimed to examine the bioavailability (BA) and pharmacokinetic (PK) characteristics of sulfadiazine (SDZ) in grass carp (Ctenopharyngodon idellus) after oral and intravenous administrations. Blood samples were collected at predetermined time points of 0.083, 0.17, 0.5, 1, 2, 4, 8, 16, 24, 48, 72, and 96 hr (n = 6). The samples were extracted and purified by organic reagents and determined by the ultra‐performance liquid chromatography. The software named 3P97 was used to calculate relevant PK parameters. The results demonstrated that the concentration–time profile of SDZ was best described by a one‐compartmental open model with first‐order absorption after a single oral dose. The main PK parameters of the absorption rate constant (Kα), the absorption half‐life (t1/2 Kα), the elimination rate constant (Ke), the elimination half‐life (t1/2Ke), and the area under concentration–time profile (AUC0‐∞) were 0.3 1/h, 2.29 hr, 0.039 1/h, 17.64 hr, and 855.78 mg.h/L, respectively. Following intravenous administration, the concentration–time curve fitted to a two‐compartmental open model without absorption. The primary PK parameters of the distribution rate constant (α), the elimination rate constant (β), the distribution half‐life (t1/2α), the elimination half‐life (t1/2β), the apparent distribution volume (VSS), the total clearance (CL), and AUC0‐∞ were 9.62 1/hr, 0.039 1/hr, 0.072 hr, 17.71 hr, 0.33 L/kg, 0.013 L h?1 kg?1, and 386.23 mg.h/L, respectively. Finally, the BA was calculated to be 22.16%. Overall, this study will provide some fundamental information on PK properties in the development of a new formulation SDZ in the future and is partially beneficial for the appropriate usage of SDZ in aquaculture.  相似文献   
44.
The present study was conducted to assess the relative bioavailability of selenium (Se) as Se yeast (SY) relative to sodium selenite (SS) for broilers fed a conventional corn–soybean meal diet. A total of 360 one-d-old Arbor Acres commercial broilers were randomly assigned to 5 treatments with 6 replicates per treatment in a completely randomized design involving a 2 (Se sources: SY and SS) × 2 (added Se levels: 0.20 and 0.40 mg Se/kg) factorial design of treatments plus 1 (a Se-unsupplemented control diet) for 42 days. The results showed that Se concentrations in plasma, liver, heart, breast muscle, pancreas and kidney of broilers on d 21 and 42, glutathione peroxidase (GSH-Px) activity in the pancreas on d 21 as well as in the breast muscle and pancreas on d 42, and GSH-Px mRNA levels in the liver, heart, breast muscle and pancreas on d 21 increased linearly (p < .03) as levels of added Se increased. Furthermore, a difference (p ≤ .05) between SY and SS was detected for Se concentrations in plasma, liver, heart, breast muscle, pancreas and kidney, GSH-Px activity in pancreas on both d 21 and 42, as well as pancreatic GSH-Px mRNA level on d 21. Based on slope ratios from the multiple linear regressions of the above indices, the Se bioavailabilities of SY relative to SS (100%) were 111%–394% (p ≤ .05) when calculated from the Se concentrations in plasma, liver, heart, breast muscle, pancreas, kidney and GSH-Px activities in pancreas on d 21 and 42, as well as GSH-Px mRNA level in pancreas on d 21. The results from this study indicated that the Se from SY was more available for enhancing the Se concentrations in plasma or tissues and the expression and activity of GSH-Px in pancreas of broilers than the Se from SS.  相似文献   
45.
为研究帕托珠利混悬液在仔猪体内的药动学特征及生物利用度,采用平行实验设计方法,将16头 40 日龄健康仔猪随机分成两组,每组8头(公母各半),分别进行单剂量静脉注射(6mg/kg bw)和单剂量口服给药(15mg/kg bw),所有猪给药前禁食12h,给药2h后恢复正常饮食。给药后按预定的采血点采集血样,血浆中帕托珠利的含量采用经验证的 HPLC检测方法进行测定。实测血药浓度数据采用Graphad prism 8.0拟合药时曲线图,并用 Winnonlin5.2计算药动学参数。结果显示,单剂量静脉注射帕托珠利注射液后帕托珠利在仔猪体内主要药动学参数如下:平均消除半衰期(T1/2?)为136.98h,平均滞留时间(MRT)为165.92h,平均药时曲线下面积(AUC0-t)为1570.97 h?μg/mL,平均表观分布容积(Vz)为695.59 mL/kg,平均血浆清除率(CL)为3.77 mL/h?kg;单剂量口服帕托珠利混悬液后帕托珠利在仔猪体内主要药动学参数如下:平均消除半衰期(T1/2?)为134.05h,平均达峰时间(Tmax)为42.00h,平均峰浓度(Cmax)为14.03μg/mL,平均滞留时间(MRT)为173.19h,平均药时曲线下面积(AUC0-t)为2831.00 h?μg/mL,帕托珠利混悬液口服给药绝对生物利用度为72.08%。结果表明,帕托珠利在猪体内分布较差,消除缓慢;仔猪口服帕托珠利混悬液达峰时间较长,但吸收良好。  相似文献   
46.
土壤/沉积物中微量重金属的化学萃取方法研究进展   总被引:4,自引:0,他引:4  
用化学萃取法,包括连续萃取法和单一萃取法,研究土壤 /沉积物中的微量重金属的活动性和生物可利用性是环境土壤化学领域内的热点问题之一。这里我们将对近年来该方法所取得的一些进展、存在的问题进行详细评述。  相似文献   
47.
Previous pot cropping and laboratory incubation experiments were consistent with field observations showing that temporary flooding before cropping can increase the availability of soil Fe to plants. To study the effect of temporary flooding on changes in soil Fe phytoavailability we used 24 highly calcareous, Fe chlorosis–inducing soils to carry out a pot experiment where peanut and chickpea were successively grown after flooding for 30 d. At the end of the cropping experiment, the preflooded soil samples exhibited higher concentrations of acid oxalate‐, citrate/ascorbate‐ and diethylenetriaminepentacetic acid (DTPA)–extractable Fe (Feox, Feca, and FeDTPA, respectively) than the control (nonflooded) samples. Also, Feox and Feca exhibited no change by effect of reflooding of the cropped soils or three wetting–drying cycles in freeze‐dried slurries of soils previously incubated anaerobically for several weeks. Leaf chlorophyll concentration (LCC) in both peanut and chickpea was greatly increased by preflooding. The best predictor for LCC was Feox, followed by Feca and FeDTPA. The LCC–soil Fe relationships found suggest that the Fe species extracted by oxalate and citrate/ascorbate from preflooded soils were more phytoavailable than those extracted from control soils. However, the increased phytoavailability of extractable Fe forms was seemingly limited to the first crop (peanut). Flooding dramatically increased FeDTPA; however, high FeDTPA levels did not result in high LCC values, particularly in the second crop. Therefore, this test is a poor predictor of the severity of Fe chlorosis in preflooded soils.  相似文献   
48.
The effect of pH and calcium on copper bioavailability to the springtail Folsomia candida was determined by assessing uptake kinetics upon copper exposure for 15 days in simplified soil solutions. A slight bioaccumulation of copper was observed in all treatments and controls. The effect of exposure concentration and calcium level on copper accumulation was not significant. Although pH and time slightly but significantly affected copper concentrations in the body, copper uptake rates were not significantly different from zero. This suggests that copper uptake in F. candida exposed to sub-lethal copper concentrations in soil pore water is not affected by pH and calcium.  相似文献   
49.
Copper(Cu)-based fungicide application to control foliar diseases in grapevine(Vitis vinifera L.) can increase soil Cu availability. Brazilian soils have high natural Cu and manganese(Mn) concentrations, increasing the potential for toxicity to grapevine plants. Application of amendment substances can reduce the concentrations of toxic chemical species of Cu and Mn in soil solution, especially for the soils grown with young plants. We evaluated the chemical speciation of Cu and Mn in soil soluti...  相似文献   
50.
ABSTRACT

A greenhouse experiment was conducted to determine the bioavailability of copper (Cu) in clay loam and sandy clay loam soil. Lettuce (Lactuca sativa) and spinach (Spinacia oleracea) were grown in pots for 45 d. When mature, plants were treated for 15 additional days with 0, 100, 250, 500, or 1000 mg Cu kg?1 as CuSO4·5H2O. After harvest, Cu in soils and plant tissues was determined. In soils, applied Cu raised total and EDTA-extractible Cu. Results also revealed that the amounts of Cu extracted from sandy clay loam soil (80%) were higher than those extracted from clay loam soil (70%). In plants, increasing soil Cu concentration increased plant concentration of the metal. Plant species vary in their capacity for Cu accumulation: Lettuce has a relatively higher potential for Cu uptake and translocation than does spinach. Cu accumulation also differs among plant organs. In lettuce, metal accumulation is higher in roots than in shoots, where 60% to 80% of the total Cu of the plant is located in the roots. However, in spinach, there is no significant difference in Cu content between roots and shoots. The transfer of the metal from soil to plant is higher for plants grown on sandy clay loam soil. For a given rate of applied Cu, metal content in plant tissues is higher on sandy clay loam soil due to its higher transfer coefficient (CT) from soil to plant. Nevertheless, all crops studied showed a positive linear relationship between extractible soil Cu and plant Cu.  相似文献   
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