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Biomedical subjects

D T Hopkins

Publications and source records attributed to D T Hopkins.

17 recordsLinked to original sources

Effects on the monkey, pig and rat pancreas of soy products with varying levels of trypsin inhibitor and comparison with the administration of cholecystokinin.

Raw and heated soy flour and casein diets were compared in rats, pigs, and monkeys with respect to growth, pancreatic changes, fecal trypsin, and nitrogen digestibility. Cholecystokinin injection was compared to feeding raw soy flour and casein in rats and casein in pigs. Several soy protein preparations were fed to rats and monkeys. Neither raw soy flour nor any other soy product produced pancreatic enlargement in pigs or monkeys. Casein and heated soy flour performed similarly. By comparison, other effects of raw soy flour were as follows. Growth was depressed 60% in rats and 84% in pigs, but not at all in monkeys. Nitrogen digestibility was depressed 5, 45, and 9% in rats, pigs, and monkeys, respectively. Pancreatic DNA, RNA, and protein levels were unchanged in monkeys fed raw soy flour. In rats, RNA per milligram pancreas was increased 40%, in pigs 20%. Pancreatic protein was decreased 7% in pigs and increased 47% in rats. Changes in pancreatic trypsin, chymotrypsin, lipase, and amylase were dissimilar in the three species. Fecal trypsin was elevated 300-400% in rats, and decreased approximately 50% in pigs and monkeys. Cholecystokinin injections in pigs and rats produced changes both quantitatively and qualitatively different from those seen with raw soy flour. Feeding of heated soy flour or soy protein isolates was comparable to feeding casein in all three species, and produced no deleterious effects.

Amylases

Influence of several plant and animal proteins on rat pancreas.

Twelve different plant and animal proteins were fed to rats for 4 weeks. Trypsin inhibitor (TI) content of the diet was significantly correlated with (although not directly related in all cases to) pancreas weights and with the pancreatic biochemical parameters that indicate hypertrophy. In vitro, but not in vivo, digestibility was correlated with the TI content of the diet. Quantity of DNA per gram pancreas was not found to be related to TI content. A second experiment compared graded levels of TI from raw or heated soy flour and soy protein isolate (SPI). The SPI diet produced higher relative pancreas weights per TIU than did the flour diets. Two commercial SPI's were fed as is or autoclaved in a third experiment. Autoclaving to very low TI values made no improvement in weight gain or pancreatic parameters measured, indicating that there may be a threshold level of TI below which rat pancreata do not respond, and that other factors in SPI are responsible for the slight pancreatic enlargement seen with SPI compared to casein.

Animals

Factors influencing intake of high urea-containing rations by lactating dairy cows.

In a series of experiments we investigated effects of several factors on intake of urea by lactating dairy cows. Cows given an unfamiliar ingredient or altered moisture in the ration reduced their intake, and this effect was attributed to a newness factor. Addition of urea to a ration may have a similar effect. An experimental design providing both no-choice and two-choice data was devised to minimize the effect of newness. When urea was isolated physically by pellets coated with ground corn, cows selected against urea-containing pellets on a two-choice basis and reduced intake on a no-choice basis. When the choice was between two urea-containing rations, cows preferred the pellets in which urea flavor and odor should have been most evident. Urea odor in the feedbox or urea in the drinking water did not reduce feed intake. Eating rate of a 2.5% urea-containing ration over two daily 30-min feeding periods was about one-half that of a non-urea ration. This effect was evident during the first 5-min eating interval. Administration of urea solution into the rumen prior to feeding a nonurea ration markedly reduced subsequent intake. Reticulum pH and ammonia indicated possible sublethal ammonia toxicity. Intake and eating rate were depressed and reticulum pH was elevated when cows were fed a ration with 2.5% urea versus 1% urea or nonurea rations. Elevated reticulum ammonia occurred on both 1 and 2.5% urea-containing rations. Cows not previously exposed to urea-containing rations reduced intake and eating rate when fed rations with 2.0 and 2.5% urea. Intake reduction was not comparable to that by cows preconditioned to urea rations. Upon third exposure to 2.5% urea in the ration, cows reduced and ceased intake but readily consumed a nonurea ration. Cows require preconditioning to develop a negative aversion to rations containing high urea, perhaps through a mechanism of sublethal ammonia toxicity.

Ammonia

Effect of phytate:zinc molar ratio and isolated soybean protein on zinc bioavailability.

The effect of phytate to zinc (Zn) molar ratio on zinc bioavailability was evaluated in rats. The bioavailability was determined by giving an oral dose of 65Zn and measuring the liver uptake and disappearance from the gastrointestinal tract after 4 hours and fecal and urinary 65Zn excretion from 24 to 168 hours. Rats were fed a diet containing 12 ppm zinc from zinc sulfate with and without phytic acid from sodium phytate for 14 days. At the end of 14 days feeding, the rats were intubated with a homogenized diet containing 12 ppm zinc, one microCi 65Zn and graded levels of phytic acid so that the phytate:Zn molar ratio varied from 0 to 100. Zinc bioavailability was significantly reduced only in the rats fed diets containing phytate and intubated diet containing phytate:zinc molar ratio of 12.5 and above. The results from this study also indicated that measuring 65Zn disappearance and uptake was a valid bioassay for determining zinc bioavailability. The effect of isolated soybean protein on extrinsic zinc bioavailability was also evaluated in rats fed zinc adequate and zinc deficient diets. The results showed that zinc bioavailability was significantly reduced by replacing egg white protein with isolated soybean protein only when the rats were fed zinc deficient diet prior to single oral dose of 65Zn mixed with test proteins. The effect of isolated soybean protein on intrinsic zinc bioavailability for the growing rats was also evaluated. The results demonstrated that the zinc bioavailability in isolated soybean protein can be improved by fortifying with zinc so that the phytate:Zn molar ratio is less than 10.

Animals

Excretion and tissue distribution of radioactive lysinoalanine, N epsilon-DL-(2-amino-2-carboxyethyl)-U-14C-L-lysine (LAL) in Sprague-Dawley rats.

Rats were fed either a control soybean protein diet or a diet containing 3,000 ppm soybean protein-bound lysinoalanine (LAL) for 4 or 6 weeks, at which time all rats were dosed by stomach tube with 14C-LAL labeled in the lysine moiety. Urinary and fecal excretion and tissue distribution were followed in one experiment at 6, 12, 18, 24, 48 and 72 hours. Excretion in urine, feces and expired air was followed in the other metabolic experiment at 2-hour intervals for 48 hours, and at 24-hour intervals for the next 7 days. Tissue samples were counted and LAL determination was made by amino acid analysis in both experiments. The group of rats fed LAL excreted slightly more LAL than the group fed the control diet. Very little LAL remained in the rat tissues after either experiment, and the largest remaining quantity of radioactivity was found as lysine. Quantitation of 14C-lysine in the original material and in the material from rat organs showed that the rat has some capacity for converting LAL to lysine. Less than 0.5% of the original 14C remained in any organ examined 9 days after dosing in the either control or LAL-fed rats. Autoradiographs of the kidneys 24 hours after dosing showed that the radioactive material had accumulated in the proximal convoluted tubules of the corticomedullary junction.

Animals

Effect of isolated soybean protein on magnesium bioavailability.

The effects of isolated soybean protein and animal protein on magnesium bioavailability were evaluated in this study. Total serum magnesium and femur bone ash magnesium values were used to evaluate the relative bioavailability of magnesium in diets in which ANRC casein, isolated soybean proteins, autoclaved isolated soybean proteins or lyophilized beef served as protein sources. Low magnesium basal diets were supplemented with graded levels of magnesium from magnesium carbonate and fed to weanling Sprague-Dawley rats for 28 days. Serum and femur bone ash magnesium were analyzed by atomic absorption spectrophotometry. Statistical analysis of serum and bone ash magnesium using a slope-ratio bioassay indicated that the protein sources did not have a significant effect on the bioavailability of magnesium.

Animals

Biological availability to the rat of intrinsic and extrinsic iron with soybean protein isolates.

Evaluations were conducted to assess the biological availability of iron in three food grade isolated soybean proteins and to evanuate the influence of these proteins on iron added to the diet from a source of known high biological availability. Ferrous sulfate was used as the standard iron source in all experiments. The biological availability was measured by a 14-day hemoglobin repletion after a 4 week depletion period using multiple dose response and comparing the test samples and standard iron source by the slope ratio assay procedure. The relative iron bioavailability for three isolated soybean proteins was A = 60%; B = 64% and C = 59% with a mean value of 61%. Autoclaving isolated soybean protein B at 108.4 degrees improved iron bioavailability over the unheated samples while isolated soybean protein A was unaffected by this treatment. Iron added to the diets containing isolated soybean protein had bioavailabilities similar to that of iron present in the soybean which supports the common dietary iron pool hypothesis. The high iron content (0.18 mg/g protein) coupled with the bioavailability data make the isolated soybean proteins a good dietary iron source.

Animals

Effect of protein-bound lysinoalanine, N epsilon-DL-(2-amino-2-carboxyethyl)-L-lysine on fetal and neonatal rats.

Diets containing 5% to 30% of an alkali-treated isolated soybean protein (ATSP) containing 1% lysinoalanine (LAL) were fed to female Sprague-Dawley rats during gestation and lactation to provide 500, 1,000, 2,000, or 3,000 ppm LAL in the diet. An isolated soybean protein containing no LAL was used as control. No teratological effects were observed. No significant differences in birth weight, mortality, live births/litter, or number of pups/litter was found at any LAL level fed. However, significantly decreased weight gains were observed in pups from dams fed either 2,000 or 3,000 ppm LAL. No LAL was found in the milk, and protein content of all milks was similar. The decreased weight gains appeared to be due to reduced milk production in dams fed high levels of ATSP.

Alanine

Effect of water of hydration on the measurement of the protein efficiency ratio of casein and soybean protein with rats.

The hydration of soybean protein or casein prior to mixing of the diet improves the apparent protein efficiency ratio (PER). The PER of soybean protein was improved more than that of casein, so that an increase in adjusted PER of soybean protein was observed also. The improvement did not appear to be associated with digestibility. It is theorized that some diets with dry protein isolates may be less acceptable to the rat due to the dusty nature of the isolate. Consequently, diets with such isolates may have a lower PER. The effect can be overcome by hydrating the protein isolates prior to mixing the diet.

Animals

Protein efficiency ratio: AACC/ASTM collaborative study.

Eight laboratories (7 of the laboratories conducted animal experiments) participated in a collaborative study to standardize some of the methodology associated with animal bioassays for determining protein efficiency ratios and to suggest improvements which would reduce the variation among laboratories. One-, 2-, 3-, and 4-week protein efficiency ratios (PER) with 0-, 2-, or 4-day adaptation periods were obtained from each laboratory, respectively, for 6 protein sources: casein, lean beef, lactalbumin, textured vegetable protein, peanut flour, and wheat flour. Analyses were computed for PER and adjusted PER (APER). From the analysis of variance for PER and APER, significant (P less than 0.05) effects were observed due to laboratories, adaptation length, protein sources, and/or interactions among these variables. In general, APER values show much less variation among laboratories than PER values. The reproducibility and repeatability variances were significantly (P less than 0.05) greater for an assay length of 2 weeks than they were for 3- or 4-week assays. Two protein sources, casein and textured vegetable protein, were fed at both high (10%) and low (6%) levels of protein. Analysis of variance of PER values shows a significant (P less than 0.05) laboratory by protein level by assay length interaction.

Animals

Net protein ratio data: AACC-ASTM collaborative study.

Seven- and 14-day net protein ratio (NPR) data were obtained from 7 laboratories for 6 protein sources: ANRC casein, lean beef, lactalbumin, textured vegetable protein, and peanut flour were fed as 10% protein (N X 6.25) in the test diet. Wheat flour, casein, and textured vegetable protein were fed as 6% protein (N X 6.25) in the test diet. Weighed dry ingredients for each diet were sent to each collaborator , who mixed the dry ingredients, then added specified amounts of corn oil and water and mixed each complete diet thoroughly. Rats were adapted for 0, 2, or 4 days, and then were fed the test diets for 28 days for protein efficiency ratio (PER) diets. The animal weight gain and feed consumption data obtained after 7 or 14 days of feeding were used to calculate NPR values. Analyses of data were done before [net protein ratio (NPR)] and after (R-NPR [relative-NPR]) adjustment of the data from each laboratory by its results for the reference protein casein. From the analysis of variance for NPR, significant (P less than 0.05) interactions were observed among laboratories, protein sources, and adaptation times of the animals (0, 2, or 4 days). Inter- and intralaboratory variability were decreased by use of 14-day values compared with 7-day values. Adjustment of the NPR data to R-NPR did not lower the intralaboratory variability but did lower the interlaboratory variability of the data. Increasing adaptation time did not consistently decrease interlaboratory or intralaboratory variability or decrease coefficients of variation (CV) of R-NPR values.(ABSTRACT TRUNCATED AT 250 WORDS)

Adaptation, Physiological

Apparent nitrogen digestibility data: AACC-ASTM collaborative study.

Apparent nitrogen digestibility data were obtained from 4 laboratories for 6 protein sources and 2 diet levels, 6 and 10% protein, after a 2-day adaptation period during the AACC-ASTM protein efficiency ratio (PER) and net protein ratio (NPR) collaborative studies. For 5 protein sources fed as 10% of the diet, the interlaboratory variation as measured by coefficient of variation (CV) values was low (1.5-3.5%), indicating high precision of the method. Wheat flour (6% protein diet) had the highest variation and, therefore, the lowest precision (CV of 7.10%). The interlaboratory variation (CV value) for 3 of the 4 laboratories was considerably lower, less than half that for the 4 laboratories. An analysis of variance of apparent nitrogen digestibility data indicated significant (P less than 0.05) effects for the 4-laboratory group due to laboratories and protein diets at both 10 and 6% protein levels, and for the 3-laboratory group at the 10% protein level. The 3-laboratory ANOVA for the 6% diets indicated a significant effect (P less than 0.05) due to diet only.

Animals