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result(s) for
"Contreras-Castillo, Carmen J."
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Unraveling the selective antibacterial activity and chemical composition of citrus essential oils
by
Moreno, Andrea M.
,
Stashenko, Elena
,
Miano, Alberto C.
in
101/58
,
631/326/22/1290
,
631/92/349
2019
Post-weaning diarrhea (PWD) is an often disease affecting piglets. It is caused mainly by enterotoxigenic
Escherichia coli
(ETEC) colonization in pig gut. Antibiotics has been used to prevent, combat and control PWD and its negative impact on the productivity of pig breeding sector. Nonetheless, antibiotics due to their wide antibacterial spectrum also can reach beneficial gut bacteria, such as
Lactobacillus
. Lately, essential oils (EOs) have emerged as a potential alternative to using antibiotics in animal breeding because of their effect on bacterial growth. Commonly, citrus EOs are by-products of food industry and the availability of these EOs in the worldwide market is huge. Thus, six commercials citrus EOs were evaluated on ETEC strains, as model of pathogenic bacteria, and on
Lactobacillus
species, as models of beneficial bacteria. In overall, citrus EOs exhibited a selective antibacterial activity with higher effect on pathogenic bacteria (ETECs) than beneficial bacteria (
Lactobacillus)
. Brazilian orange terpenes (BOT) oil presented the highest selective performance and caused higher disturbances on the normal growth kinetic of ETEC than on
Lactobacillus rhamnosus
. The action was dose-dependent on the maximal culture density (
A
) and the lag phase duration (λ) of the ETEC. The highest sub-inhibitory concentration (0.925 mg/mL) extended the λ duration to ETEC eight times (14.6 h) and reduced
A
in 55.9%. For
L. rhamnosus
, the λ duration was only extended 1.6 times. Despite the fact that limonene was detected as the major compound, the selective antibacterial activity of the citrus EOs could not be exclusively attributed to limonene since the presence of minor compounds could be implicated in conferring this feature.
Journal Article
Chemical Composition and Antibacterial and Antioxidant Activity of a Citrus Essential Oil and Its Fractions
by
Ambrosio, Carmen M. S.
,
Agudelo, Leidy P. A.
,
da Gloria, Eduardo M.
in
Animals
,
Antibiotics
,
Antioxidants
2021
Essential oils (EOs) from Citrus are the main by-product of Citrus-processing industries. In addition to food/beverage and cosmetic applications, citrus EOs could also potentially be used as an alternative to antibiotics in food-producing animals. A commercial citrus EO—Brazilian Orange Terpenes (BOT)—was fractionated by vacuum fractional distillation to separate BOT into various fractions: F1, F2, F3, and F4. Next, the chemical composition and biological activities of BOT and its fractions were characterized. Results showed the three first fractions had a high relative amount of limonene (≥10.86), even higher than the whole BOT. Conversely, F4 presented a larger relative amount of BOT’s minor compounds (carvone, cis-carveol, trans-carveol, cis-p-Mentha-2,8-dien-1-ol, and trans-p-Mentha-2,8-dien-1-ol) and a very low relative amount of limonene (0.08–0.13). Antibacterial activity results showed F4 was the only fraction exhibiting this activity, which was selective and higher activity on a pathogenic bacterium (E. coli) than on a beneficial bacterium (Lactobacillus sp.). However, F4 activity was lower than BOT. Similarly, F4 displayed the highest antioxidant activity among fractions (equivalent to BOT). These results indicated that probably those minor compounds that detected in F4 would be more involved in conferring the biological activities for this fraction and consequently for the whole BOT, instead of the major compound, limonene, playing this role exclusively.
Journal Article
Impact of Micronized Salt in Reducing the Sodium Content in Fresh Sausages
2024
This study aimed to investigate the incorporation of micronized salt (MS) to reduce sodium content in fresh sausages while preserving technological, chemical, textural, and sensory characteristics. Four treatments were prepared: control (C) with 2.0% regular salt; M2.0% with 2.0% micronized salt; M1.5% with 1.5% micronized salt; and M1.0% with 1.0% micronized salt, containing 1004, 1133, 860, and 525 mg of sodium/100 g of product, respectively. To characterize the samples, analyses of sodium content, cooking loss, relative myoglobin content, and instrumental color were carried out. The sensory analysis was performed using the Temporal-Check-All-That-Apply (TCATA) method. Half of the micronized salt treatment was mixed with the fat during the processing of the fresh sausages. It was possible to achieve a 50% reduction in sodium (M1.0%) in the fresh sausages without negative effects on most technological, chemical, and textural parameters, which did not differ from the control treatment (C). Conversely, “chewiness” decreased in M2.0% compared to the control (C) due to mixing micronized salt with the fat. The sodium reduction did not impact the temporal sensory profile and overall liking. Therefore, using micronized salt in fresh sausages reduces sodium content without affecting sensory traits and product stability.
Journal Article
Use of Agaricus bisporus mushroom in beef burgers: antioxidant, flavor enhancer and fat replacing potential
by
Saldaña, Erick
,
Patinho, Iliani
,
de Camargo, Adriano Costa
in
Agaricus bisporus
,
Antioxidants
,
Beef
2019
This study aimed to evaluate the potential use of
Agaricus bisporus
mushroom as a natural antioxidant, fat/salt substitute and flavor enhancer in beef burger. Ten treatments were considered using a fractional factorial design (salt [0.5, 1.25 and 2.0%], fat [10, 15 and 20%] and mushroom content [0, 15 and 30%]). Treatments were characterized by instrumental and sensory measurements. The statistical design indicated that fat content had little influence on the results. The principal component analysis showed that the incorporation of mushrooms and salt modified the texture, moisture and water activity. Oxidative stability decreased as the salt content increased, at a low-fat content. Finally, the sensory profile was affected by the mushroom and salt contents, with the fat content exerting the least influence. Therefore, mushroom incorporation in beef burger may be a feasible strategy to reduce the fat content of beef burgers.
Graphical abstract
Journal Article
Sugar reduction and replacement of wheat flour with quinoa flour in shortcrust cookies: effects on nutritional, physical, and sensory properties
by
Eduardo, Karina
,
Saldaña, Erick
,
Alvarez, Jennifer
in
Antioxidants
,
Biomedical and Life Sciences
,
Cereals
2025
Malnutrition and obesity are global concerns. To overcome these issues, food reformulation was recommended as a cost-effective strategy. In this context, the objective of this study was to evaluate the impact of replacing wheat flour with quinoa flour (15% and 30%) and reducing sugar content (10%, 20%, 30%) on the physical, nutritional, and sensory properties of shortcrust pastry cookies. No significant differences were found in fat, protein, and ash contents, though slight variations occurred between formulations. Significant water and moisture activity differences were noted, except for formulation T15Q.30S. The highest polyphenol content (0.238 mg GAE) was achieved with a 10% sugar reduction and a 30% substitution of wheat flour with quinoa. The greatest antioxidant capacity was observed with a 20% sugar reduction and a 15% replacement of wheat flour with quinoa flour, based on DPPH and ORAC methods. From a physical perspective, higher levels of quinoa flour reduced the hardness, diameter, and dispersion factor of the cookies, while a slight decrease in baking weight loss and thickness was observed. Replacing with 15% quinoa flour and reducing 10% sugar resulted in cookies with the highest acceptance. On the other hand, cookies containing 30% quinoa and higher sugar reductions were less accepted due to their darker color, reduced sweetness, and increased brittleness. The findings of this study emphasize the potential of this reformulation strategy, as the sensory and instrumental quality was maintained, supporting its use in promoting healthier food choices in academia, industry, and among policymakers.
Graphical Abstract
Journal Article
Pleiotropic Genes Affecting Carcass Traits in Bos indicus (Nellore) Cattle Are Modulators of Growth
by
Utsunomiya, Yuri T.
,
Ajmone-Marsan, Paolo
,
G. T. Pereira, Anirene
in
Adenoma
,
Analysis
,
Animal sciences
2016
Two complementary methods, namely Multi-Trait Meta-Analysis and Versatile Gene-Based Test for Genome-wide Association Studies (VEGAS), were used to identify putative pleiotropic genes affecting carcass traits in Bos indicus (Nellore) cattle. The genotypic data comprised over 777,000 single-nucleotide polymorphism markers scored in 995 bulls, and the phenotypic data included deregressed breeding values (dEBV) for weight measurements at birth, weaning and yearling, as well visual scores taken at weaning and yearling for carcass finishing precocity, conformation and muscling. Both analyses pointed to the pleomorphic adenoma gene 1 (PLAG1) as a major pleiotropic gene. VEGAS analysis revealed 224 additional candidates. From these, 57 participated, together with PLAG1, in a network involved in the modulation of the function and expression of IGF1 (insulin like growth factor 1), IGF2 (insulin like growth factor 2), GH1 (growth hormone 1), IGF1R (insulin like growth factor 1 receptor) and GHR (growth hormone receptor), suggesting that those pleiotropic genes operate as satellite regulators of the growth pathway.
Journal Article
Winery grape-residue extract: Effects on quality and sensory attributes of cooked chicken meat
by
Contreras-Castillo, Carmen J
,
Nadai, Ana Paula
,
Gallo, Cláudio Rosa
in
Antioxidants
,
Butylated hydroxytoluene
,
Chickens
2011
Sensory analysis, instrumental color, pH, and thiobarbituric acid reactive substances (TBARS) were determined on cooked chicken meat with and without grape seed extract during refrigerated storage. The effectiveness of extracts of winery grape residue from the grape varieties ‘Isabel’ and ‘Niagara’ were tested to evaluate their effectiveness at delaying lipid oxidation in cooked chicken meat and stored under refrigeration (4±1°C). The samples were aerobically and vacuum packaged and stored for 14 days. ‘Isabel’ grape extract (IGE) and ‘Niagara’ grape extract (NGE) proved effective at promoting oxidative stability when applied at concentrations of 40 or 60 mg of gallic acid equivalents (GAE)/kg, with results similar to the synthetic antioxidant butylated hydroxytoluene (BHT). The antioxidant efficiency of the extracts was highly dependent on the concentration used. The addition of grape-residue extracts combined with vacuum packaging proved to be a good method for increasing lipid stability in cooked chicken meat stored under refrigeration.
Journal Article
Sensory and hedonic impact of the replacement of synthetic antioxidant for pink pepper residue extract in chicken burger
by
Contreras-Castillo, Carmen J
,
Serrano-León, Juan
,
Saldaña Erick
in
Antioxidants
,
Chickens
,
Chitosan
2020
This study aimed to evaluate the sensory and hedonic perceptions of chicken burger manufactured with pink pepper residue extract (PPE) added to the meat and to the chitosan film. Five samples were manufactured: CT: control, without antioxidant; DP and FP: addition of PPE to the meat batter and to the film, respectively; C1 and C2: commercial brands of chicken burgers. Consumers characterized the samples using the overall liking test and Check-all-that-apply questions. The samples showed a medium–high level of acceptance and no significant differences were found between them. DP was the farthest sample from the ideal and FP showed positive results, since its characteristics were like the commercial samples. The direct extract application may lead to a reduction in the liking of chicken burgers, demonstrating that the technology of active films is a viable alternative to the use of natural antioxidant extracts in meat products.
Journal Article
Optimization of lipid profile and hardness of low-fat mortadella following a sequential strategy of experimental design
by
Jair Sebastião da Silva Pinto
,
Rios-Mera, Juan
,
Contreras-Castillo, Carmen J
in
Alginic acid
,
Canola
,
Canola oil
2018
This study aims to optimize simultaneously the lipid profile and instrumental hardness of low-fat mortadella. For lipid mixture optimization, the overlapping of surface boundaries was used to select the quantities of canola, olive, and fish oils, in order to maximize PUFAs, specifically the long-chain n-3 fatty acids (eicosapentaenoic—EPA, docosahexaenoic acids—DHA) using the minimum content of fish oil. Increased quantities of canola oil were associated with higher PUFA/SFA ratios. The presence of fish oil, even in small amounts, was effective in improving the nutritional quality of the mixture, showing lower n-6/n-3 ratios and significant levels of EPA and DHA. Thus, the optimal lipid mixture comprised of 20, 30 and 50% fish, olive and canola oils, respectively, which present PUFA/SFA (2.28) and n-6/n-3 (2.30) ratios within the recommendations of a healthy diet. Once the lipid mixture was optimized, components of the pre-emulsion used as fat replacer in the mortadella, such as lipid mixture (LM), sodium alginate (SA), and milk protein concentrate (PC), were studied to optimize hardness and springiness to target ranges of 13–16 N and 0.86–0.87, respectively. Results showed that springiness was not significantly affected by these variables. However, as the concentration of the three components increased, hardness decreased. Through the desirability function, the optimal proportions were 30% LM, 0.5% SA, and 0.5% PC. This study showed that the pre-emulsion decreases hardness of mortadella. In addition, response surface methodology was efficient to model lipid mixture and hardness, resulting in a product with improved texture and lipid quality.
Journal Article
Feeding distillers grains to cattle may affect beef tenderness early postmortem
by
Contreras-Castillo, Carmen J
,
Ribeiro, Felipe A
,
Herrera, Nicolas J
in
Animal Feed - analysis
,
Animals
,
Cattle - physiology
2019
The objective of this study was to evaluate the effects of dietary fat source with modified distillers grains plus solubles (MDGS) on beef tenderness through examination of sarcoplasmic reticulum (SR) membrane fatty acid composition, changes in sarcoplasmic calcium concentration, Warner-Bratzler shear force (WBSF), sarcomere length, and proteolysis early postmortem. Steers (n = 256) were fed for 134 d on either corn, or a diet containing 40% full-fat MDGS, 40% de-oiled MDGS, or 38% de-oiled MDGS plus 2% corn oil. Twenty-four USDA Choice carcasses (three carcasses per pen; eight pens per treatment) were selected within each dietary treatment, and strip loins were collected and aged for 2, 9, 16, or 23 d postmortem and subject to retail display (RD) for an additional 7 d. Feeding MDGS increased (P < 0.05) concentrations of linoleic acid (18:2) and tended to increase (P = 0.06) total polyunsaturated fatty acids (PUFA) in the SR membrane. Steaks from cattle fed MDGS had greater sarcoplasmic calcium concentration than steaks from cattle fed corn at day 2 postmortem (P = 0.05). Steaks from steers fed de-oiled MDGS and de-oiled MDGS plus corn oil tended to have lower WBSF values (P = 0.08) than steaks from cattle fed corn at 2 d of aging with 0 d of RD. There were no differences among dietary treatments for sarcomere length (P = 0.92) and troponin-T degradation at 2 d postmortem (P = 0.60). Results suggest that feeding MDGS may increase early postmortem release of calcium into the sarcoplasm due to increased 18:2 and PUFA concentration in the SR membrane, which could result in increased beef tenderness early postmortem.
Journal Article