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Biomedical subjects

R C Beier

Publications and source records attributed to R C Beier.

At least 19 recordsLinked to original sources

Isopimpinellin is not phototoxic in a chick skin assay.

Synthetic isopimpinellin (5,8-dimethoxypsoralen), confirmed to contain as impurities only trace quantities at most of psoralen, bergapten (5-methoxypsoralen) and xanthotoxin (8-methoxypsoralen), is not phototoxic when tested in a chick skin bioassay system. These findings are at variance with earlier studies showing isopimpinellin to be phototoxic against chick skin and support the conclusion that isopimpinellin is photobiologically inactive. As recently proposed by others, the several reports of isopimpinellin photoactivity are most likely attributable to contamination by small amounts of highly active psoralens such as bergapten or xanthotoxin.

Animals

Pseudodipeptide analogs of the pyrokinin/PBAN (FXPRLa) insect neuropeptide family containing carbocyclic Pro-mimetic conformational components.

Three N-terminal amino acid residues of the C-terminal core pentapeptide Phe-X-Pro-Arg-Leu-NH2 (X = Gly, Ser, Thr, Val) of the pryokinin/PBAN insect neuropeptide family were replaced by nonpeptide moieties. To reestablish some of the conformational properties lost upon removal of the peptide bonds and Pro of the three amino acid residue block, carbocyclic Pro-mimetic components were incorporated into pseudodipeptide analogs. The most active analog contained a trans-DL-1,2-cyclopentanedicarboxyl carbocyclic component and proved to be over 3 orders of magnitude more potent than a simple, straight chain pseudodipeptide analog and approached the potency of the pentapeptide core in a cockroach hindgut myotropic bioassay. The pseudodipeptide analog retains a critical carbonyl residue which can participate in a hydrogen bond that stabilizes a beta-turn conformation in the active core region of the pyrokinin/PBAN peptides. This study demonstrates that knowledge of active conformation can be used to enhance the biological potency of pseudopeptide mimetic analogs of insect neuropeptides. The analogs represent a milestone in the development of pseudopeptide and nonpeptide mimetic analogs of this peptide family, which has been associated with such critical physiological processes as hindgut and oviduct contraction, pheromone biosynthesis, diapause induction, and induction of melanization and reddish coloration in a variety of insects. Mimetic analogs are potentially valuable tools to insect neuroendocrinologists studying these physiological processes and/or engaged in the development of future pest management strategies.

Amino Acid Sequence

Diuretic activity of C-terminal group analogues of the insect kinins in Acheta domesticus.

A series of insect kinin analogues, AFFPWG-X, modified at the C-terminal group, were evaluated in a cricket Malpighian tubule secretion bioassay. The results were compared with activity profiles observed in a cockroach hindgut myotropic bioassay for these analogues. Although the replacement of the C-terminal amide group with a negatively charged acid leads to a precipitious drop in diuretic activity, it can be partially restored with the introduction of ester groups such as methyl or benzyl. The presence of branched chain character in the C-terminal group or a C-terminal alpha-carbon-amide distance spanning five methylene group spacers is incompatible with the receptor interaction required for biological activity. Significant diuretic activity is retained with four or fewer methylene groups in this region. C-terminal group analogues containing -SCH3, -NHCH2CH2OCH3, or -OCH2(C6H5) offered the greatest retention of diuretic activity while providing increased hydrophobicity and/or steric bulk. The data are of potential value in the development of mimetic analogues of this insect neuropeptide family. Mimetic analogues are potentially valuable tools to insect neuroendocrinologists studying diuresis and/or engaged in the development of future pest management strategies.

Amino Acid Sequence

Effect of lyophilization in sucrose plus dextran and rehydration in thioglycollate broth on performance of competitive exclusion cultures in broiler chicks.

Cecal bacteria grown under continuous-flow anaerobic conditions were lyophilized in skim milk (SM), Reagent 20 (R-20; sucrose and bovine serum albumin fraction V), or sucrose plus dextran (SDx), rehydrated in drinking water or thioglycollate-beef broth (TGB), and compared with fresh broth culture for control of Salmonella typhimurium enteric colonization in broiler chicks. All groups were challenged on Day 3 with 10(4) cfu of S. typhimurium per chick. Mean Salmonella colony-forming units in cecal contents of groups provided lyophilized cultures rehydrated in TGB were not different from those in groups provided fresh broth culture and were reduced (P < .05) compared with controls at 10 d of age. Likewise, groups treated with the cultured lyophilized in R-20 and SDx and rehydrated in TGB had fewer Salmonella than similar groups treated with culture rehydrated in water. The results of this study indicated that the culture was as effective when lyophilized in SDx as it was when lyophilized in SM or R-20; culture lyophilized in SDx, SM, or R-20 and rehydrated in TGB was more effective than when it was rehydrated in water for the reduction of Salmonella colonization in broiler chicks.

Animals

Effect of dietary lactose and cell concentration on the ability of a continuous-flow-derived bacterial culture to control Salmonella cecal colonization in broiler chickens.

The effect of dietary lactose and of cell concentration of a continuous-flow (CF) derived bacterial culture on Salmonella typhimurium cecal colonization in 10-d-old broiler chickens was examined. One-day-old chicks were provided 1) no CF culture and the control diet; 2) no culture and a 2% lactose diet; 3) CF culture (10(8) or 10(11) anaerobic cfu) and control diet; or 4) CF culture (10(8) or 10(11) anaerobic cfu) and 2 to 4% lactose diet. All groups were challenged orally with 10(4) S. typhimurium at 3 d of age. Salmonella typhimurium growth in cecal contents was significantly decreased (P < .05) at 10 d of age when 2% lactose was used in combination with CF culture containing 10(8) or 10(11) anaerobic cfu. The protection factor (log10 Salmonella control diet divided by log10 Salmonella treatment group) for these treatment groups was 2.49 and 9.26, respectively. Results indicate that birds treated with CF culture and maintained on 2% dietary lactose are protected against S. typhimurium colonization. Additionally, inoculating birds with CF culture containing a higher concentration of anaerobic colony-forming units resulted in a substantially higher protection factor.

Animals

Comparison of effects of chicken cecal microorganisms maintained in continuous culture and provision of dietary lactose on cecal colonization by Salmonella typhimurium in turkey poults and broiler chicks.

A mixed bacterial culture derived from the cecal contents of an adult broiler chicken was maintained in continuous-flow culture and tested for effectiveness in Salmonella colonization reduction in broiler chicks and turkey poults. Day-old chicks and poults in two separate experiments were divided into four groups and provided a standard corn-soybean diet with: 1) no culture, no lactose (control); 2) 5% dietary lactose; 3) broth culture by crop gavage; 4) culture by crop gavage and 5% lactose. All groups were challenged orally on Day 3 with 10(4) Salmonella typhimurium. At 10 and 21 d of age the chicks provided culture and lactose had significantly (P < .05) fewer Salmonella per gram of cecal contents than controls. Poults provided culture by gavage and lactose also had significantly (P < .05) fewer Salmonella per gram of cecal contents than control poults, but the number was 100- to 1,000-fold higher than that of the chicks provided the same treatment. The percentage of Salmonella cecal-culture-positive chicks provided culture and lactose was significantly reduced at 10 and 21 d of age in both experiments compared with controls, but the percentage of cecal-culture-positive poults was significantly different from controls only at 21 d in one of the two experiments. Chicks provided culture and lactose had significantly fewer Salmonella colony-forming units per gram and significantly fewer cecal-culture-positive birds than poults provided culture and lactose in both experiments. The results indicate that cultures of cecal bacteria that effectively reduce Salmonella colonization in broiler chicks may not be as effective for reduction of Salmonella colonization in turkey poults.

Animals

Resistance against Salmonella enteritidis cecal colonization in Leghorn chicks by vent lip application of cecal bacteria culture.

Leghorn chicks were treated with cultures of cecal bacteria from adult chickens by crop gavage, upper body spray, or vent lip application on the day of hatch. The chicks were challenged orally with 10(4) Salmonella enteritidis (SE) at 3 d of age and evaluated for SE cecal colonization at 10 d of age. The concentration of volatile fatty acids (VFA) in the cecal contents was determined on the day after culture treatment and at 10 d of age. Compared with controls, SE colonization was significantly decreased in each of the treatment groups. Vent lip application of a single .05-mL drop of cecal bacteria culture resulted in resistance against SE challenge comparable to crop gavage or spray treatment with .5 mL of culture. Resistance to SE challenge was directly associated with the concentrations of total VFA and propionic acid in the cecal contents of the treated chicks on the day after culture treatment. The results indicated that cecal bacteria from adult chickens that increase SE colonization resistance may rapidly become established in the ceca of newly hatched chicks following contact with the vent lips.

Administration, Rectal

Effect of cecal cultures lyophilized in skim milk or reagent 20 on Salmonella colonization in broiler chicks.

Mixed cultures of cecal bacteria that were grown under continuous flow anaerobic conditions were prepared as lyophilized powder in skim milk or Reagent 20 (R-20; a mixture containing sucrose and bovine serum albumin fraction V) and compared with broth cultures for reduction of Salmonella typhimurium enteric colonization. Day old broiler chicks were provided a standard corn-soybean diet with: 1) no culture, (control); 2) broth culture administered by crop gavage; 3) broth culture added to the drinking water; 4) culture lyophilized in skim milk and added to drinking water; 5) culture lyophilized in skim milk in gelatin capsules and force-fed; 6) culture lyophilized in R-20 and added to drinking water; and 7) culture lyophilized in R-20 in gelatin capsules and force-fed. All groups were challenged on Day 3 with 10(4) cfu of S. typhimurium per chick. Culture by crop gavage, culture in the drinking water, skim milk powder in capsules, and R-20 powder in the water and in capsules significantly (P < .05) reduced mean Salmonella colony-forming units in cecal contents by 3.21 to 5.26 log10 units at 10 d of age. Likewise, the number of cecal-culture-positive chicks in the same groups was significantly less than controls with reductions of 27 to 67%. The numbers of Salmonella per gram of cecal contents and the percentage of cecal-culture-positive chicks in the skim milk powder in the drinking water group were not different from control chicks in one of two experiments.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Isolation of the major component in white snakeroot that is toxic after microsomal activation: possible explanation of sporadic toxicity of white snakeroot plants and extracts.

Tremetone, the major toxic component in white snakeroot (Eupatorium rugosum Houtt) extracts, was isolated following an in vitro bioactivity assay. Microsomal activation was required to produce a product toxic to murine melanoma (B16F1) cells as well as five other mammalian cell cultures. The metabolic activation product(s) of tremetone is suspected to be responsible for the toxic activity of the plant. Tremetone is also smoothly converted to dehydrotremetone in the plant and cell free homogenates, and readily decomposes to dehydrotremetone in extracts. Dehydrotremetone is not toxic even after microsomal activation. The efficient conversion of tremetone to dehydrotremetone may explain why white snakeroot plant material and extracts have varied activities, and why a previous claim that tremetone was responsible for the toxic activity of white snakeroot was withdrawn. Rayless goldenrod extracts show the same toxic activity as white snakeroot and the toxic activity of rayless goldenrod is most likely due to tremetone.

Animals

Phototoxic coumarins in limes.

Coumarins in the rind and pulp of Persian and Key limes were quantified. In the rind of Persian limes, coumarin concentrations were in the order: limettin > bergapten > isopimpinellin > xanthotoxin > psoralen. In the rind of Key limes, psoralen and xanthotoxin were analytically absent; limettin was 10 times more concentrated than either bergapten or isopimpinellin, which were equal in concentration. Coumarin content in Persian lime pulp was in the order: isopimpinellin > limettin > bergapten > xanthotoxin > psoralen. For Key lime pulp, the concentrations of limettin, isopimpinellin and bergapten were equal; psoralen and xanthotoxin were not detected. Coumarins in lime pulp were 13 to 182 times less concentrated than those in the peel. Based on the amounts and types of coumarins, Persian limes appear to be potentially more phototoxic than Key limes. Although bergapten may be the main component of limes responsible for phytophotodermatitis, dermatological interaction assays with psoralen, bergapten, xanthotoxin and limettin should be conducted.

Chromatography, High Pressure Liquid

Acyl, pseudotetra-, tri- and dipeptide active-core analogs of insect neuropeptides.

Pseudopeptides of the achetakinin insect neuropeptide family were synthesized by replacing the amino acid blocks Phe-, Phe-Tyr-, and Phe-Tyr-Pro- of the active-core pentapeptide Phe-Tyr-Pro-Trp-Gly-NH2 with hydrocinnamic acid, 6-phenylhexanoic acid, and both 9-phenylnonanoic and 6-phenylhexanoic acid, respectively. All four of these analogs retained myotropic activity, demonstrating that the active core could be reduced from a pentapeptide to a modified dipeptide. Most notable of these was the pseudotetrapeptide hydrocinnamyl-Tyr-Pro-Trp-Gly-NH2, which retained 70% of the potency and over 85% of the maximal activity of the parent pentapeptide. The N-terminal amino group, the phenol ring of the Tyr residue, the sulfate moiety and the Gly residue of the insect sulfakinin active core Tyr(SO3H)-Gly-His-Met-Arg-Phe-NH2 were all replaced by dodecanedioic acid. The resulting pseudotetrapeptide, dodecandioyl-His-Nle-Arg-Phe-NH2, elicited myostimulatory activity. Conversely, the related acyl pseudopentapeptide azelayl-Gly-His-Nle-Arg-Phe-NH2 proved myoinhibitory. A possible explanation for these disparate biological responses is discussed. These acyl pseudopeptides are important advances towards the eventual development of stable, potent mimetic agonists and antagonists of insect neuropeptides.

Amino Acid Sequence

In vitro metabolism of radiolabeled carbohydrates by protective cecal anaerobic bacteria.

Cecal anaerobic bacteria from adult broilers were cultured in media containing .25% glucose or .25% lactose. Media also contained either [14C]-labeled lactose, glucose, galactose, or lactic acid as metabolic tracers. Cultures were analyzed at 4, 8, and 12 h for pH, radiolabeled and unlabeled volatile fatty acids, and lactic acid. The pH values of cultures containing .25% lactose were significantly (P < .05) higher than the pH values of cultures containing .25% glucose. Lactose cultures reached their lowest pH more slowly than glucose cultures. Concentrations of unlabeled volatile fatty acids increased and lactic acid decreased during incubation of the cultures. Radiolabeled sugars and lactic acid were more readily metabolized to volatile fatty acids in media containing lactose than in media containing glucose. The preferred metabolism of [14C]substrates, independent of media carbohydrate, was in the following order: lactic acid > galactose, lactose > glucose. The volatile fatty acids in which radiolabel was most concentrated were acetic acid, propionic acid, or butyric acid.

Animals

Fermentation of [14C]lactose in broiler chicks by cecal anaerobes.

Volatile fatty acids and lactic acid were products of [14C]lactose metabolism in 10-day-old broiler chicks. The [14C]lactose and unlabeled lactose were given to chicks in combination with cultures of cecal anaerobes (direct fed microbials) from adult broiler chickens. Aliquots of these cecal anaerobes had been used previously to reduce Salmonella typhimurium colonization in broiler chicks. In the current study, chicks were treated with anaerobes and anaerobes plus lactose on the day of hatch. Chicks given lactose plus anaerobes also received unlabeled lactose in the drinking water. Chicks in all treatment groups received [14C]lactose on Day 10 posthatch. After 5 h, most of the radiolabel was detected in the foregut and intestine. Significantly lower concentrations of [14C]lactic acid were detected in the serum and foregut of chicks given anaerobes and anaerobes plus lactose than in the similar samples from control chicks. Additionally, significantly less [14C]lactic acid was detected in the feces of chicks treated with anaerobes plus lactose than in feces from control chicks and chicks receiving only anaerobes. Significant differences in the total content of volatile fatty acids and lactic acid were detected in the serum, liver, intestine, and ceca of chicks treated with anaerobes or anaerobes plus lactose. These data indicate that cecal flora utilize lactose to produce volatile fatty acids and lactic acid.

Animals

Colonization control of lactose-fermenting Salmonella typhimurium in young broiler chickens by use of dietary lactose.

Inclusion of lactose in the diets of chickens has been determined to reduce cecal colonization with Salmonella typhimurium. We hypothesized, therefore, that dietary lactose may be a practical means for reducing the prevalence of Salmonella contamination of chicken products. Because some strains of Salmonella are atypical and ferment lactose, we investigated the effects of dietary lactose on cecal colonization with lactose-fermenting S typhimurium. Broiler chicks were inoculated intracloacally with Lac+ S typhimurium selected for resistance to novobiocin and rifampicin. The chicks also were inoculated orally with certain anaerobes that do not effectively inhibit colonization by S typhimurium, but do appear essential for lactose mediated inhibition of cecal colonization. Control chicks were not given dietary lactose, and chicks in the experimental group were fed a diet containing 7% lactose. Enumeration of Lac+ S typhimurium in cecal contents revealed dietary lactose to be effective at controlling this organism. Control was correlated with changes in cecal pH and increases in undissociated volatile fatty acids, especially propionic acid.

Animals

Natural pesticides and bioactive components in foods.

In this review, some common food plants and their toxic or otherwise bioactive components and mycotoxin contaminants have been considered. Crucifers contain naturally occurring components that are goitrogenic, resulting from the combined action of allyl isothiocyanate, goitrin, and thiocyanate. Although crucifers may provide some protection from cancer when taken prior to a carcinogen, when taken after a carcinogen they act as promoters of carcinogenesis. The acid-condensed mixture of indole-3-carbinol (a component of crucifers) binds to the TCDD receptor and causes responses similar to those of TCDD. Herbs contain many biologically active components, with more than 20% of the commercially prepared human drugs coming from these plants. Onion and garlic juices can help to prevent the rise of serum cholesterol. Most herbs used in treatments may have many natural constituents that act oppositely from their intended use. Some herbs like Bishop's week seed contain carcinogens, and many contain pyrrolizidine alkaloids that can cause cirrhosis of the liver. The general phytoalexin response in plants (including potatoes, tomatoes, peppers, eggplant, celery, and sweet potatoes) induced by external stimuli can increase the concentrations of toxic chemical constituents in those plants. In potatoes, two major indigenous compounds are alpha-solanine and alpha-chaconine, which are human plasma cholinesterase inhibitors and teratogens in animals. Because of its toxicity, the potato variety Lenape was withdrawn from the market. Celery, parsley, and parsnips contain the linear furanocoumarin phytoalexins psoralen, bergapten, and xanthotoxin that can cause photosensitization and also are photomutagenic and photocarcinogenic. Celery field workers and handlers continually have photosensitization problems as a result of these indigenous celery furanocoumarins. A new celery cultivar (a result of plant breeding to produce a more pest-resistant variety) was responsible for significant incidences of phytophotodermatitis of grocery employees. Since there is no regulatory agency or body designated to oversee potential toxicological issues associated with naturally occurring toxicants, photodermatitis continues to occur from celery exposure. Sweet potatoes contain phytoalexins that can cause lung edema and are hepatotoxic to mice. At least one of these, 4-ipomeanol, can cause extensive lung clara cell necrosis and can increase the severity of pneumonia in mice. Some phytoalexins in sweet potatoes are hepatotoxic and nephrotoxic to mice. The common mushroom Agaricus bisporus contains benzyl alcohol as its most abundant volatile, and A. bisporus and Gyromitra esculenta both contain hydrazine analogues. Mycotoxins are found in corn, cottonseed, fruits, grains, grain sorghums, and nuts (especially peanuts); therefore, they also occur in apple juice, bread, peanut butter, and other products made from contaminated starting materials.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals

Stimulation and release of prostaglandins and thromboxane from macrophages by cotton dust associated lipopolysaccharides.

Decreases in the ventilation capacity of human lungs following the inspiration of cotton dust correlates more closely with the concentration of endotoxin in the dust than with any other parameter measured thus far. A lipopolysaccharide isolated from the endotoxin of Enterobacter agglomerans, a common bacterial contaminant of cotton fiber, stimulated isolated rat macrophages to produce and release prostaglandins 6 keto-PGF1 alpha, PGF2 alpha, PGE2, PGD2, PGA2, and PGB2 and thromboxane B2. If in vivo human pulmonary macrophages respond in a similar fashion by releasing these arachidonic acid metabolites or their immediate precursors in response to stimulation by cotton dust associated lipopolysaccharides, some of the acute pulmonary changes observed in humans following inspiration of cotton dust could be caused by increased release of these biologically active compounds. Daily release of arachidonic acid metabolites at concentrations significantly above normal homeostatic levels could produce some of the pathophysiologic pulmonary changes observed in byssinotics. This paper reports the results of an experiment to quantitate arachidonic acid metabolite production following macrophage stimulation by E. agglomerans lipopolysaccharide. Procedures are described for the stimulation of macrophages by cotton dust associated lipopolysaccharide, for the separation and identification of arachidonic acid and its metabolites by high-performance liquid chromatography, and for the quantification of those products by radioisotope techniques.

Animals

Host plant resistance and linear furanocoumarin content of Apium accessions.

Linear furanocoumarin contents and antibiotic resistance to Liriomyza trifolii (Burgess) were documented for Apium species being investigated in a celery breeding program. In no-choice tests, L. trifolii fed more, produced more offspring, and had the highest pupal and adult productivity on the widely planted cultivar 'Tall Utah' 52-70R (Apium graveolens L.). Antibiotic effects of the commercial cultivar 'Tall Utah' 52-70 HK and University of California families 87A-147 and 87A-338, derived from A. chilense Hook and Arn., were intermediate. Only A. nodiflorum (L.) Lag (accession 87A-236) did not allow survival beyond the larval stage. Concentrations of the carcinogenic and mutagenic linear furanocoumarins varied by location within plants (leaves usually greater than petioles), by specific compound (trend: psoralen less than xanthotoxin less than bergapten or isopimpinellin), and between accessions. A. nodiflorum had the lowest foliar levels of phototoxic furanocoumarins (11.8 micrograms/g fresh weight) and the best potential for use in the breeding program. Foliar levels of phototoxic furanocoumarins (psoralen, bergapten, and xanthotoxin) in plants 87A-147-3 (406 micrograms/g), 87A-147-2 (292.9 micrograms/g), and the family 87A-338 (265.9 micrograms/g) were 22.6, 16.3, and 14.8 times higher, respectively, than the concentration known to produce contact dermatitis (18 micrograms/g). Even with such variability in concentration, the foliar content of linear furanocoumarins (individually or total) and L. trifolii adult production were not correlated.

Animals