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Biomedical subjects

A Ciegler

Publications and source records attributed to A Ciegler.

At least 37 records · Page 2Linked to original sources

Evaluation of penicillic acid for toxicity in broiler chickens.

Penicillic acid is a mycotoxin produced by various fungi. It may occur in high concentrations in corn and can also be produced concomitantly with other mycotoxins in poultry feed. This mycotoxin was evaluated for its toxicity in broiler chickens by feeding graded concentrations (0, 100, 200, and 400 microgram/g of diet) to 4 groups of 10 birds per treatment. No significant (P greater than .05) effects were measured on growth rate, feed conversion, relative size of pancreas, spleen, liver, heart, bursa, or kidney or on hemoglobin, packed cell volume, liver lipid, plasma protein, or glucose. The only significant effects were a slight reduction in the size of the proventriculus and gizzard at dose levels of 200 and 400 microgram/g. Neither the salt nor lactone forms of penicillic acid had any detectable effect. The acute oral LD50 for the sodium salt form was 92 +/- 9 mg/kg. These data suggest that penicillic acid by itself has little toxicity (less than 1% of that of aflatoxin) in chickens.

Animals↗

Toxicity of Secalonic acid D.

Toxicity of secalonic acid D was examined by using lethality, growth retardation, and histopathology as indexes. The ip LD50 values of 37, 31, and 27 mg/kg were obtained for Charles River CD-1, Texas (ICR), and Sprague-Dawley (CF-1) strains of mice, respectively. The ip LD50 was 52 mg/kg in female CD-1 mice. The iv LD50 was 25 mg/kg in CD-1 male mice. Oral LD50 values of 400 mg/kg in male CD-1 mice and 25 and greater than 400 mg/kg in Sprague-Dawley day-old and weanling (21 d) rats of both sexes, respectively, were obtained. Doses of 20 mg/kg or more ip retarded growth and doses of 30 mg/kg or more ip were lethal to CD-1 mice. Oral doses required to produce such effects in day-old rats were 5 and 20 mg/kg (or higher), respectively. All ip doses of secalonic acid D caused pulmonary atelectases and foccal peritonitis in male CD-1 mice. The latter involved surfaces of abdominal viscera and produced limited subcapsular necrosis of hepatic parenchyma. Exposure to a single lethal dose iv (25 mg/kg or more) of secalonic acid D caused limited hepatic portal necrosis but no peritonitis or other associated local effects observed in CD-1 male mice after ip exposure. Cytoplasmic liposis and loss of glycogen and RNA from hepatocytes were observed in a single mouse receiving 50 mg/kg iv. Death resulting from cardiac and/or pulmonary insufficiency was suggested by atelectasis, pulmonary hemorrhages and edema, and massive atrial dilation in mice that died after lethal ip or iv doses of secalonic acid D. Five daily sublethal ip doses in CD-1 male mice resulted in dose-dependent mortality (LD50, 11.5 mg/kg) indicating cumulative effects.

Animals↗

Moniliformin, a metabolite of Fusarium moniliforme NRRL 6322: purification and toxicity.

Fusarium moniliforme NRRL 6322 produced about 600 mg of recoverable moniliformin, a mycotoxic metabolite, per kg of corn grit medium. The moniliformin was extracted from the grits with methanol, purified by preparative thin-layer chromatography, and crystallized from ether. The 50% lethal dose for chicken embryos was 2.8 microgram per egg. For 1-day-old chicks dosed with moniliformin by crop intubation and for female and male mice injected intraperitoneally, the 50% lethal doses were 5.4, 20.9, and 29.1 mg per kg of body weight, respectively. The toxin did not cause a reaction on mouse skin.

Animals↗

Acceptance by swine and rats of corn amended with trichothecenes.

Swine and rats demonstrated the same response factor (i.e., the average amount of corn amended with trichothecenes consumed by animals per the average amount of uncontaminated corn consumed by animals) for consumption of corn amended with 40 ppm of either T-2 toxin or diacetoxyscirpenol Rat response factor for corn containing 40 ppm of vomitoxin was 1.8 times more than corn containing either T-2 toxin or diacetoxyscirpenol at 40 ppm. For the corn containing 40 ppm of vomitoxin, swine response factor was 1.8 times greater than rat response factor.

Animal Feed↗

Wild rice as fermentation substrate for mycotoxin production.

Many cereal grains have been studied for their suitability as substrates for the fermentative production of mycotoxins. However, except for aflatoxin, wild rice has not been investigated. Hence, five mold cultures known to produce the mycotoxins ochratoxin-A, penicillic acid, patulin, vomitoxin, and zearalenone were grown on wild rice under varying conditions of moisture and temperature to determine whether this grain would serve as a suitable substrate for toxin production. Under appropriate fermentation conditions, good yields of ochratoxin-A and moderate amounts of patulin were obtained, but only small amounts of penicillic acid, vomitoxin, and zearalenone were elaborated. An extract from a sample of naturally molded wild rice contained 0.8 microgram of patulin per g of rice. The predominating mold was identified as Aspergillus clavatus. Under identical cultural conditions, this isolate and a known patulin-producing strain of A. clavatus yielded approximately equivalent amounts of the mycotoxin.

Aspergillus↗

Production and analysis of citrinin in corn.

A convenient method for the production and analysis of citrinin in corn is described. Up to 2.964 g of citrinin can be produced by Penicillium citrinum per kg of corn by harvesting on day 21 or later. The analysis method has a lower detection limit of 0.25 ppm. Heating citrinin-contaminated corn destroys citrinin but may produce another toxin instead.

Animals↗

Evaluation of Sclerotinia sclerotiorum as a potential mycotoxin producer on soybeans.

Solvent extracts of Sclerotinia sclerotiorum sclerotia were nontoxic to mice and chicken embryos; psoralens were not detected. Solvent extracts of soybeans inoculated with 10 strains of S. sclerotiorum were toxic on injection but nontoxic on per os administration to mice. The presence of chlorinated hydrocarbons in the soybeans may partially help explain toxicity by intraperitineal injection.

Animals↗

Survey of 1977 crop year preharvest corn for vomitoxin.

Fifty-two preharvest corn samples were collected in mid-October 1977 from 26 farms in a four-county area of northwest Ohio. Vomitoxin ranging from 0.5 to 10 microgram/g was found in 24 of the samples. Analysis for vomitoxin was by gas-liquid chromatography. Preceding harvest in northwest Ohio, unusual wet conditions prevailed, making it favorable for Fusarium growth. Gibberella zeae-infected kernels ranged from 2 to 50% of the kernels analyzed for 44 corn samples, and 8 corn samples showed no infection.

Food Contamination↗

Produciton and biological activity of patulin and citrinin from Penicillium expansum.

Penicillium expansum isolated from meat and apples produced both patulin and citrinin. Toxin identity was confirmed by spectroscopic and physical methods. The mean lethal dose in chicken embryos was determined for toxins administered both singly and in various ratios. Data from simultaneous administration of mycotoxin combinations plotted as isobolograms showed and additive effect. Both toxins were teratogenic in chicken embryos.

Animals↗

Production of refusal factors by Fusarium strains on grains.

Corn fermented with strains of Fusarium culmorum NRRL 3288, F. poae NRRL 3287, F. moniliforme NRRL 3197, and F. nivale NRRL 3289 at 28 degrees C for 13 days was refused when fed to 30- to 60-pound (about 13.6- to 27.2-kg) swine. Analyses of the refused corn for trichothecenes (T-2, HT-2, acetyl T-2, fusarenon-X, and vomitoxin) showed that only the corn fermented with F. culmorum contained vomitoxin. None of these five trichothecenes could be detected in the other refused corn.F. culmorum grown on rice at 28 degrees C for 13 days also produced vomitoxin.

Animal Feed↗

Aflatoxin in corn: ammonia inactivation and bioassay with rainbow trout.

Four samples of corn were compared with respect to their hepatocarcinogenicity in rainbow trout. One corn sample was found by chemical analysis to contain no detectable aflatoxin. A second sample was contaminated with aflatoxins at a level of 180 microgram/kg. Each of the above-mentioned samples was divided, and one-half of each was ammoniated. These four samples were added to a semipurified basal diet and fed to a sensitive strain of rainbow trout. It was found that ammoniation inactivated the aflatoxins and reduced the carcinogenicity of the contaminated corn to a level that was not significantly different from that with the basal control diet. It was also found that the ammoniation process did not reduce the nutritive value of the corn.

Aflatoxins↗

Penicillic acid production in submerged culture.

Twenty known penicillic acid (PA)-producing Aspergillus and Penicillium cultures were grown under various conditions in shaken flasks to determine the highest yielding strains and their requirements for maximum toxin production. Abilities of the cultures to utilize eight different carbon sources in Raulin-Thom medium for mycotoxin synthesis were determined at four different incubation temperatures: 15, 20, 25, and 28 degrees C. Of the 20 cultures, P. cyclopium NRRL 1888 was superior, yielding up to 4 mg of PG per ml, with mannitol as the carbon source and 25 degrees C as the incubation temperature. Fifteen of the cultures elaborated lesser amounts of PA, whereas four strains yielded none under the test conditions. Whey from the manufacture of cottage cheese by the cultured process was also a satisfactory medium for PA production. In whey medium, yields up to 3 mg/ml were obtained with P. cyclopium NRRL 1888.

Aspergillus↗

Large scale production, purification and a study of some spectral properties of Penitrem A.

A large scale production of the tremorgenic toxin, Penitrem A, from the cultures of Penicillium (P.) palitans and P. crustosum for studying its spectral characteristics was attained. From several fermentation runs using Czapex-Dox medium, P. crustosum was shown to produce nearly 80% more toxic metabolite than P. palitans. A method involving silica-gel column chromatography for a single step isolation of the toxin from the crude extract of the mycelial mats was developed. Some spectral properties of Penitrem A were discussed.

Acetylation↗