Ioan Pet
University of Agricultural Sciences, Dharwad
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Publication
Featured researches published by Ioan Pet.
Chemistry Central Journal | 2013
Dragos V. Nica; Despina Maria Bordean; Ioan Pet; Elena Pet; Simion Alda; Iosif Gergen
BackgroundGiven the serious threats posed to terrestrial ecosystems by industrial contamination, environmental monitoring is a standard procedure used for assessing the current status of an environment or trends in environmental parameters. Measurement of metal concentrations at different trophic levels followed by their statistical analysis using exploratory multivariate methods can provide meaningful information on the status of environmental quality. In this context, the present paper proposes a novel chemometric approach to standard statistical methods by combining the Block clustering with Partial least square (PLS) analysis to investigate the accumulation patterns of metals in anthropized terrestrial ecosystems. The present study focused on copper, zinc, manganese, iron, cobalt, cadmium, nickel, and lead transfer along a soil-plant-snai food chain, and the hepatopancreas of the Roman snail (Helix pomatia) was used as a biological end-point of metal accumulation.ResultsBlock clustering deliniates between the areas exposed to industrial and vehicular contamination. The toxic metals have similar distributions in the nettle leaves and snail hepatopancreas. PLS analysis showed that (1) zinc and copper concentrations at the lower trophic levels are the most important latent factors that contribute to metal accumulation in land snails; (2) cadmium and lead are the main determinants of pollution pattern in areas exposed to industrial contamination; (3) at the sites located near roads lead is the most threatfull metal for terrestrial ecosystems.ConclusionThere were three major benefits by applying block clustering with PLS for processing the obtained data: firstly, it helped in grouping sites depending on the type of contamination. Secondly, it was valuable for identifying the latent factors that contribute the most to metal accumulation in land snails. Finally, it optimized the number and type of data that are best for monitoring the status of metallic contamination in terrestrial ecosystems exposed to different kinds of anthropic polution.
Foodborne Pathogens and Disease | 2017
Carmel Kelly; Ozan Gundogdu; Gratiela Pircalabioru; Ada Cean; Pam Scates; Mark Linton; Laurette Pinkerton; Elizabeth Magowan; Lavinia Stef; Eliza Simiz; Ioan Pet; Sharon Stewart; Richard A. Stabler; Brendan W. Wren; Nick Dorrell; Nicolae Corcionivoschi
The current trend in reducing the antibiotic usage in animal production imposes urgency in the identification of novel biocides. The essential oil carvacrol, for example, changes the morphology of the cell and acts against a variety of targets within the bacterial membranes and cytoplasm, and our in vitro results show that it reduces adhesion and invasion of chicken intestinal primary cells and also biofilm formation. A trial was conducted to evaluate the effects of dietary supplementation of carvacrol at four concentrations (0, 120, 200, and 300 mg/kg of diet) on the performance of Lactobacillus spp., Escherichia coli, Campylobacter spp., and broilers. Each of the four diets was fed to three replicates/trial of 50 chicks each from day 0 to 35. Our results show that carvacrol linearly decreased feed intake, feed conversion rates and increased body weight at all levels of supplementation. Plate count analysis showed that Campylobacter spp. was only detected at 35 days in the treatment groups compared with the control group where the colonization occurred at 21 days. The absence of Campylobacter spp. at 21 days in the treatment groups was associated with a significant increase in the relative abundance of Lactobacillus spp. Also, carvacrol was demonstrated to have a significant effect on E. coli numbers in the cecum of the treatment groups, at all supplementation levels. In conclusion, this study shows for the first time that at different concentrations, carvacrol can delay Campylobacter spp., colonization of chicken broilers, by inducing changes in gut microflora, and it demonstrates promise as an alternative to the use of antibiotics.
Gut Pathogens | 2017
Alexandros Ch. Stratakos; Filip Sima; Patrick Ward; Mark Linton; Carmel Kelly; Laurette Pinkerton; Lavinia Stef; Ioan Pet; Tiberiu Iancu; Gratiela Pircalabioru; Nicolae Corcionivoschi
BackgroundCryptosporidium is a major cause of diarrhea worldwide in both humans and farm animals with no completely effective treatment available at present. In this study, we assessed the inhibitory effect of different concentrations of Auranta 3001 (0.1, 0.5 and 1%), a novel natural feed supplement, on C. hominis and C. parvum invasion of human ileocecal adenocarcinoma (HCT-8), bovine primary cells and C. parvum invasion of HCT-8, bovine primary cells and bovine intestinal biopsies. The effect of the feed supplement on the production of pro-inflammatory cytokines IL-8 and INF-γ, the anti-inflammatory cytokine IL-10, the expression of CpSUB1 protease gene during infection was also assessed by quantitative PCR (q-PCR). Transepithelial electrical resistance (TEER) was employed to measure the integrity of tight junction dynamics of the culture models.ResultsPre-treatment of intestinal cells or oocysts with the Auranta 3001 significantly reduced the invasiveness of C. hominis and C. parvum against HCT-8 and bovine primary cells in a dose dependent manner. The most pronounced reduction in the invasiveness of both parasites was observed when Auranta 3001 was present during infection. Levels of IL-8 were significantly reduced in both HCT-8 and bovine primary cells, while the levels of INF-γ and IL-10 showed opposite trends in the two cell lines during infection in the presence of Auranta 3001. CpSUB1 gene protease expression, which mediates infection, was significantly reduced suggesting that this enzyme is a possible target of Auranta 3001.ConclusionsAlthough, C. hominis and C. parvum use different invasion mechanisms to infect cells, the novel feed additive can significantly attenuate the entry of Cryptosporidium in HCT-8 cells, primary bovine cells and bovine intestinal biopsies and thus provide an alternative method to control cryptosporidiosis.
Foodborne Pathogens and Disease | 2018
Alexandros Ch. Stratakos; Mark Linton; Patrick Ward; Mairead Campbell; Carmel Kelly; Laurette Pinkerton; Lavinia Stef; Ioan Pet; Ducu Stef; Tiberiu Iancu; Katerina Theodoridou; Ozan Gundogdu; Nicolae Corcionivoschi
Ruminants are important reservoirs of E. coli O157:H7 and are considered as the major source of most foodborne outbreaks (e.g., 2017 outbreak in Germany, 2014 and 2016 outbreaks in United States, all linked to beef products). A promising strategy to reduce E. coli O157 is using antimicrobials to reduce the pathogen levels and/or virulence within the animal gastrointestinal tract and thus foodborne disease. The aim of the study was to determine the efficacy of a commercial mixture of natural antimicrobials against E. coli O157. The minimum inhibitory concentration and minimum bactericidal concentration of the antimicrobial were quantitatively determined and found to be 0.5% and 0.75% (v/v) of the natural antimicrobial, respectively. Microbial growth kinetics was also used to determine the effect of the antimicrobial on the pathogen. The natural antimicrobial affected the cell membrane of E. coli O157, as demonstrated by the increase in relative electric conductivity and increase in protein and nucleic acid release. The antimicrobial was also able to significantly reduce the concentration on E. coli O157 in a model rumen system. Biofilm assays showed that subinhibitory concentrations of the antimicrobial significantly reduced the E. coli 0157 biofilm forming capacity without influencing pathogen growth. In addition, the natural antimicrobial was able to reduce motility and exopolysaccharide production. Subinhibitory concentrations of the antimicrobial had no effect on AI-2 production. These findings suggest that the natural antimicrobial exerts an antimicrobial effect against E. coli O157 in vitro and in a model rumen system and could be potentially used to control this pathogen in the animal gut. The results also indicate that subinhibitory concentrations of the antimicrobial effectively reduce biofilm formation, motility, and exopolysaccharide production.
Foodborne Pathogens and Disease | 2017
Carmel Kelly; Ozan Gundogdu; Gratiela Pircalabioru; Ada Cean; Pam Scates; Mark Linton; Laurette Pinkerton; E. Magowan; Lavinia Stef; Eliza Simiz; Ioan Pet; S. Stewart; Richard A. Stabler; Brendan W. Wren; Nick Dorrell; Nicolae Corcionivoschi
The current trend in reducing the antibiotic usage in animal production imposes urgency in the identification of novel biocides. The essential oil carvacrol, for example, changes the morphology of the cell and acts against a variety of targets within the bacterial membranes and cytoplasm, and our in vitro results show that it reduces adhesion and invasion of chicken intestinal primary cells and also biofilm formation. A trial was conducted to evaluate the effects of dietary supplementation of carvacrol at four concentrations (0, 120, 200, and 300 mg/kg of diet) on the performance of Lactobacillus spp., Escherichia coli, Campylobacter spp., and broilers. Each of the four diets was fed to three replicates/trial of 50 chicks each from day 0 to 35. Our results show that carvacrol linearly decreased feed intake, feed conversion rates and increased body weight at all levels of supplementation. Plate count analysis showed that Campylobacter spp. was only detected at 35 days in the treatment groups compared with the control group where the colonization occurred at 21 days. The absence of Campylobacter spp. at 21 days in the treatment groups was associated with a significant increase in the relative abundance of Lactobacillus spp. Also, carvacrol was demonstrated to have a significant effect on E. coli numbers in the cecum of the treatment groups, at all supplementation levels. In conclusion, this study shows for the first time that at different concentrations, carvacrol can delay Campylobacter spp., colonization of chicken broilers, by inducing changes in gut microflora, and it demonstrates promise as an alternative to the use of antibiotics.
Food Control | 2018
Alexandros Ch. Stratakos; Filip Sima; Patrick Ward; Mark Linton; Carmel Kelly; Laurette Pinkerton; Lavinia Stef; Ioan Pet; Nicolae Corcionivoschi
Scientific Papers Animal Science and Biotechnologies | 2018
Dorel Dronca; Nicolae Pacala; Lavinia Stef; Ioan Pet; Ioan Bencsik; Marian Bura; Gabi Dumitrescu; Eliza Simiz; Marioara Nicula; Adela Marcu; Liliana Petculescu; Mirela Ahmadi
Lucrări Științifice Management Agricol | 2018
Elena Pet; Tabita Adamov; Anda Milin; Iuliana Merce; Ana-Mariana Dincu; Ioan Pet
Scientific Papers Animal Science and Biotechnologies | 2017
Nenad Nedeljkovic; Nicolae Păcală; Gabi Dumitrescu; Ioan Bencsik; Lavinia Stef; Ioan Pet; Dorel Dronca; Valer Caraba; Liliana Petculescu Ciochină; Marioara Nicula; Adela Marcu
Scientific Papers Animal Science and Biotechnologies | 2017
Dorel Dronca; Nicolae Pacala; Lavinia Stef; Ioan Pet; Ioan Bencsik; Marian Bura; Gabi Dumitrescu; Eliza Simiz; Marioara Nicula; Adela Marcu; Liliana Petculescu; Mirela Ahmadi
Collaboration
Dive into the Ioan Pet's collaboration.
Banat University of Agricultural Sciences and Veterinary Medicine
View shared research outputsBanat University of Agricultural Sciences and Veterinary Medicine
View shared research outputsBanat University of Agricultural Sciences and Veterinary Medicine
View shared research outputs