• Title/Summary/Keyword: Milk fatty acids

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Influence of Sunflower Whole Seeds or Oil on Ruminal Fermentation, Milk Production, Composition, and Fatty Acid Profile in Lactating Goats

  • Morsy, T.A.;Kholif, S.M.;Kholif, A.E.;Matloup, O.H.;Salem, A.Z.M.;Elella, A. Abu
    • Asian-Australasian Journal of Animal Sciences
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    • v.28 no.8
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    • pp.1116-1122
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    • 2015
  • This study aimed to investigate the effect of sunflower seeds, either as whole or as oil, on rumen fermentation, milk production, milk composition and fatty acids profile in dairy goats. Fifteen lactating Damascus goats were divided randomly into three groups (n = 5) fed a basal diet of concentrate feed mixture and fresh Trifolium alexandrinum at 50:50 on dry matter basis (Control) in addition to 50 g/head/d sunflower seeds whole (SS) or 20 mL/head/d sunflower seeds oil (SO) in a complete randomized design. Milk was sampled every two weeks during 90 days of experimental period for chemical analysis and rumen was sampled at 30, 60, and 90 days of the experiment for ruminal pH, volatile fatty acids (tVFA), and ammonia-N determination. Addition of SO decreased (p = 0.017) ruminal pH, whereas SO and SS increased tVFA (p<0.001) and acetate (p = 0.034) concentrations. Serum glucose increased (p = 0.013) in SO and SS goats vs Control. The SO and SS treated goats had improved milk yield (p = 0.007) and milk fat content (p = 0.002). Moreover, SO increased milk lactose content (p = 0.048) and feed efficiency (p = 0.046) compared to Control. Both of SS and SO increased (p<0.05) milk unsaturated fatty acids content specially conjugated linolenic acid (CLA) vs Control. Addition of SS and SO increased (p = 0. 021) C18:3N3 fatty acid compared to Control diet. Data suggested that addition of either SS or SO to lactating goats ration had beneficial effects on milk yield and milk composition with enhancing milk content of healthy fatty acids (CLA and omega 3), without detrimental effects on animal performance.

Fatty acids composition and lipolysis of Parmigiano Reggiano PDO cheese: effect of the milk cooling temperature at the farm

  • Piero, Franceschi;Paolo, Formaggioni;Milena, Brasca;Giuseppe, Natrella;Michele, Faccia;Massimo, Malacarne;Andrea, Summer
    • Animal Bioscience
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    • v.36 no.1
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    • pp.132-143
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    • 2023
  • Objective: The aim was to study the influence of cooling milk at 9℃ at the farm versus keeping it at 20℃ on Parmigiano Reggiano cheese lipolysis. Methods: A total of six cheesemaking trials (3 in winter and 3 in summer) were performed. In each trial, milk was divided continuously into two identical aliquots, one of which was kept at 9℃ (MC9) and the other at 20℃ (MC20). For each trial and milk temperature, vat milk (V-milk) and the resulting 21 month ripened cheese were analysed. Results: Fat and dry matter and fat/casein ratio were lower in MC9 V-milk (p≤0.05) than in MC20. Total bacteria, mesophilic lactic acid and psychrotrophic and lipolytic bacteria showed significant differences (p≤0.05) between the two V-milks. Regarding cheese, fat content resulted lower and crude protein higher (p≤0.05) both in outer (OZ) and in inner zone (IZ) of the MC9 cheese wheels. Concerning total fatty acids, the MC9 OZ had a lower concentration of butyric, capric (p≤0.05) and medium chain fatty acids (p≤0.05), while the MC9 IZ had lower content of butyric (p≤0.05), caproic (p≤0.01) and short chain fatty acids (p≤0.05). The levels of short chain and medium chain free fatty acids (p≤0.05) were lower and that of long chain fatty acids (p≤0.05) was higher in MC9 OZ cheese. The principal component analysis of total and free fatty acids resulted in a clear separation among samples by seasons, whereas slight differences were observed between the two different milk temperatures. Conclusion: Storing milk at 9℃ at the herd affects the chemical composition of Parmigiano Reggiano, with repercussion on lipolysis. However, the changes are not very relevant, and since the cheese can present a high variability among the different cheese factories, such changes should be considered within the "normal variations" of Parmigiano Reggiano chemical characteristics.

A Study on Contents of Trans Fatty Acids in Foods Served at University Dormitory and Their Consumption (대학 기숙사 식당의 식품중 Trans 지방산의 함량 및 섭취량에 관한 연구)

  • 원종숙
    • Journal of Nutrition and Health
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    • v.23 no.1
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    • pp.19-24
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    • 1990
  • Trans fatty acids are formed during processings of oils such as refining, hydrogenation and heat treatment at high temperature. Recently, interesting on whether trans fatty acids involve in development of atherosclerosis and cancer are getting more attentions. This study was to investigate contents of trans fatty acids in food served at domitories of a women's university in Seoul and also amount of the trans fatty acids consumed by the students. Food items were divided into five groups. Their contents of the trans fatty acids were, in the order of decreasing, 12.7% for cookies and cakes, 1.23% for fried foods, 0.98% for fried and sauted animal foods, 0.74% for milk and milk products and 0.72% for fried and sauted vegetables. Amount of trans fatty acids consumed by the students was 0.63g per day per person.

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Ex vivo Digestion of Milk from Red Chittagong Cattle Focusing Proteolysis and Lipolysis

  • Islam, Mohammad Ashiqul;Ekeberg, Dag;Rukke, Elling-Olav;Vegarud, Gerd Elisabeth
    • Asian-Australasian Journal of Animal Sciences
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    • v.28 no.4
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    • pp.559-567
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    • 2015
  • Ex vivo digestion of proteins and fat in Red Chittagong Cattle milk from Bangladesh was carried out using human gastrointestinal enzymes. This was done to investigate the protein digestion in this bovine breed's milk with an especial focus on the degradation of the allergenic milk proteins; ${\alpha}_{s1}$-casein and ${\beta}$-lactoglobulin and also to record the generation of peptides. Lipolysis of the milk fat and release of fatty acids were also under consideration. After 40 min of gastric digestion, all the ${\alpha}_s$-caseins were digested completely while ${\beta}$-lactoglobulin remained intact. During 120 min of duodenal digestion ${\beta}$-lactoglobulin was reduced, however, still some intact ${\beta}$-lactoglobulin was observed. The highest number of peptides was identified from ${\beta}$-casein and almost all the peptides from ${\kappa}$-casein and ${\beta}$-lactoglobulin were identified from the gastric and duodenal samples, respectively. No lipolysis was observed in the gastric phase of digestion. After 120 min of duodenal digestion, milk fat showed 48% lipolysis. Medium (C10:0 to C16:0) and long (${\geq}C17:0$) chain fatty acids showed 6% to 19% less lipolysis than the short (C6:0 to C8:0) chain fatty acids. Among the unsaturated fatty acids $C18:1{\sum}others$ showed highest lipolysis (81%) which was more than three times of $C18:2{\sum}all$ and all other unsaturated fatty acids showed lipolysis ranging from 32% to 38%. The overall digestion of Bangladeshi Red Cattle milk was more or less similar to the digestion of Nordic bovine milk (Norwegian Red Cattle).

Fatty Acid Composition of Human and Cow's milk (인유(入乳) 및 우유(牛乳)의 지방산 조성에 관하여)

  • Yoon, Tai-Heon;Lim, Kyung-Ja;Kim, Eul-Sang;Chung, Wood-Kap
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.11 no.1
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    • pp.15-20
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    • 1982
  • The fatty acid composition of human milk was determined in 20 milk samples (ten colostrum and 10 mature) obtained at different stages of lactation. Human colostrum contained a lower percentage of total lipids than mature milk. In comparison with mature milk, human colostrum was characterized by a lower percentage of saturated fatty acids, a higher percentage of monounsaturated fatty acids and a higher percentage of extra-long-chain polyunsaturated fatty acid metabolites of both linoleic acid ($\omega$ 6 series) and linolenic acid ($\omega$ 3 series). The linoleic acid levels reported here are considerably higher than those reported previously in Korea. This shift has paralleled an increase in the use of vegetable oils in Korean diet. The human mature milk differed from marketing cow's milk in fatty acid composition, as it had a lower content of short-, medium-and long-chain saturated fatty acids and a higher content of long-chain monounsaturated and polyunsaturated fatty acids.

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Effects of $\omega$3 and $\omega$6 Polyunsaturated Fatty Acid Diets on Fatty Acid Composition and Vitamin E Levels in Milk and Serum of the Rat ($\omega$3계 및 $\omega$6계 지방산 식이가 흰쥐의 모유와 혈청의 지방산 성분 및 비타민 E 수준에 미치는 영향)

  • 황혜진
    • Journal of Nutrition and Health
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    • v.27 no.2
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    • pp.141-152
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    • 1994
  • The effects of feeding diets with different fatty acids on the composition of fatty acids and vitamin E status in maternal milk & serum and pup's serum were studied. Dietary fats(10% by wt) include on oil(CO), soybean oil(SO), perilla seed oil(PO : about 60% , C18 : 3 $\omega$3) and fish oil(FO : rich in C20 : 5$\omega$3, eicosapentaenoic acid = EPA & 22 : 6$\omega$3, docosahexaenoic acid = DHA), Sprague-Dawley rats weighing 200-250g, were fed experimental diets from pregnancy through lactation period. Maternal milk was obtained by gentle squeezing after 30 minutes of oxytocin(0.2 IU, intraperitoneal) injection. The fatty acid compositions of milk and serum were analyzed at day-2 and day-15. The concentrations of vitamin E in maternal milk and serum and pup's serum were also analyzed. The groups of CO, SO and PO which had no DHA in their diet, contained DHA in their milk, The rations of EPA+DHA/arachidonic acid(AA) were higher in PO group than those in either CO or SO group. This seemed to be due not only to more conversion from C18 : 3$\omega$3 to C20 : 5$\omega$3 and C22 : 6$\omega$3 but also to inhibition of C18 : 2$\omega$6 conversion to C20 : 4$\omega$6. More DHA was found in day-2 milk than in day-15 milk. It was also noted that milk contained more DHA was found in day-2 milk than in day-15 milk. It was also noted that milk contained more DHA than serum and this difference was larger in day-2 than in day-15 milk. Even though the concentrations of vitamin E both in maternal serum and milk were lower in PO and FO groups fed highly unsaturated fat than in CO or SO groups, pup's serum did not show a significant difference among all the experimental groups indicating that the pups man secure their essential nutrients by the biomagnification mechanism.

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Effect of Feeding Calcium Salts of Palm Oil Fatty Acids on Performance of Lactating Crossbred Cows

  • Purushothaman, Sajith;Kumar, Anil;Tiwari, D.P.
    • Asian-Australasian Journal of Animal Sciences
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    • v.21 no.3
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    • pp.376-385
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    • 2008
  • Twenty lactating crossbred cows yielding 10 to 15 litres of milk daily during mid lactation were selected and divided into four groups of five animals to assess the effect of feeding calcium soaps of palm oil fatty acids (bypass fat) on milk yield, milk composition and nutrient utilization in lactating crossbred cows. The animals in groups 1 (control), 2, 3 and 4 were fed concentrate mixture containing 0 (no bypass fat), 2, 4 and 6% bypass fat, respectively. The average daily dry matter consumption in the various groups ranged from 13.1 to 13.6 kg and showed no significant difference among treatment groups. There was no significant difference among different groups in digestibility of DM, OM, CP and CF, however, ether extract digestibility in cows of groups 2 and 4 was significantly (p<0.05) higher than the control group. The average milk yields of the cows in group 3 (4% bypass fat) showed a significantly (p<0.05) higher value than cows of groups 1 and 2. Similarly, a significant (p<0.05) increase in fat yield, 4% FCM yield and SNF yield was observed for the cows in group 3 (4% bypass fat). The milk composition in terms of total solids, fat, lactose, protein, solids-not-fat and ash percentage showed a varying response and bypass fat feeding did not have any effect on milk composition of cows in different groups. The gross and net energetic efficiency of milk production ranged from 23.6 to 27.5% and 37.1 to 44.4%, respectively, and showed no significant difference among different treatment groups. The gross and net efficiency of nitrogen utilization for milk production ranged from 24.0 to 28.7% and 37.2 to 43.5%, respectively, and no significant difference was noted among different treatment groups. The supplementation with calcium salts of palm oil fatty acid reduced the proportion of caproic, caprylic and capric acids and significantly (p<0.01) increased the concentration of palmitic, oleic, stearic, linoleic and linolenic acids in milk fat with increase in level of bypass fat supplementation. It was concluded that incorporation of calcium salts of palm oil fatty acids at a 4% level in the concentrate mixture of lactating crossbred cows improved the milk production and milk quality in terms of polyunsaturated fatty acids without affecting the digestibility of nutrients.

Effect of Supplementation of Fish and Canola Oil in the Diet on Milk Fatty Acid Composition in Early Lactating Holstein Cows

  • Vafa, Toktam S.;Naserian, Abbas A.;Moussavi, Ali R. Heravi;Valizadeh, Reza;Mesgaran, Mohsen Danesh
    • Asian-Australasian Journal of Animal Sciences
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    • v.25 no.3
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    • pp.311-319
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    • 2012
  • This study examined the effects of supplementation of fish oil and canola oil in the diet on milk yield, milk components and fatty acid composition of Holstein dairy cows in early lactation. Eight multiparous early lactation Holstein cows ($42{\pm}12$ DIM, $40{\pm}6kg$ daily milk yield) were fed a total mixed ration supplemented with either 0% oil (Control), 2% fish oil (FO), 1% canola oil +1% fish oil (FOCO), or 2% canola oil (CO) according to a double $4{\times}4$ Latin square design. Each period lasted 3 wk; experimental analyses were restricted to the last week of each period. Supplemental oils were added to a basal diet which was formulated according to NRC (2001) and consisted of 20% alfalfa, 20% corn silage and 60% concentrate. Milk yield was similar between diets (p>0.05), but dry matter intake (DMI) was lower (p<0.05) in cows fed FO diet compared to other diets. Milk fat percentage and daily yield decreased (p<0.01) with the supplementation of fish and canola oil. The daily yield and percentage of milk protein, lactose and solids-not-fat (SNF) were not affected by diets (p>0.05). The proportion (g/100 g fatty acids) of short chain fatty acids (SCFA) decreased and polyunsaturated fatty acids (PUFA) increased (p<0.05) in milk of all cows fed diets supplemented with oil. The proportions of 6:0, 8:0, 10:0 12:0 and 14:0 fatty acids in milk fat decreased (p<0.01) for all diets supplemented with oil, but the proportions of 14:1, 16:0 and 16:1 fatty acids were not affected by diets (p>0.05). The proportion of trans(t)-18:1 increased (p<0.01) in milk fat of cows fed FO and FOCO diets, but CO diet had the highest proportion of cis(c)-11 18:1 (p<0.01). The concentration of t-10, c-12 18:2, c-9 t-11 18:2, 18:3, eicosapentaenoic acid (EPA, 20:5) and docosahexaenoic acid (DHA, 22:6) increased (p<0.05) in FO and FOCO diets in comparison with the other two diets. These data indicate that including fish oil in combination with canola oil significantly modifies the fatty acid composition of milk.

A Comparative Study on the Composition of Preterm and Fullterm Human Milk in Colostrum -II. Comparison of the Total Lipid, Total Cholesterol, and Vitamin E Contents and Fatty Acids Comparison in Colostrum from Mothers of Premature and Fullterm Infants- (조산모와 정상모의 초유성분에 관한 비교 연구 -제2보 : 조산모와 정상모 초유의 총지질, 총콜레스테롤 및 비타민 E 함량과 총지방산 조성에 관한 비교-)

  • 이윤욱
    • Journal of Nutrition and Health
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    • v.28 no.2
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    • pp.137-143
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    • 1995
  • In this study, lipid composition of milk obtained in colostrum from 22 mothers delivering preterm infants and 17 mothers delivering term infants was analyzed. Fatty acid composition and vitamin E content were analyzed as well as the concentrations of total lipids in preterm and fullterm milk. Lipid and cholestol concentrations were higher in the fulltrm milk than preterm milk. PUFA and P/S ratio in preterm milk were higher than those in fullterm milk. On the other hand, SFA and MUFA contents were higher in the fullterm milk. Vitamin E which is related to PUFA concentration in colostrum was also higher in the preterm milk than fullterm milk.

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Comparison of miR-106b, miR-191, and miR-30d expression dynamics in milk with regard to its composition in Holstein and Ayrshire cows

  • Marina V. Pozovnikova;Viktoria B. Leibova;Olga V. Tulinova;Elena A. Romanova;Artem P. Dysin;Natalia V. Dementieva;Anastasiia I. Azovtseva;Sergey E. Sedykh
    • Animal Bioscience
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    • v.37 no.6
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    • pp.965-981
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    • 2024
  • Objective: Milk composition varies considerably and depends on paratypical, genetic, and epigenetic factors. MiRNAs belong to the class of small non-coding RNAs; they are one of the key tools of epigenetic control because of their ability to regulate gene expression at the post-transcriptional level. We compared the relative expression levels of miR-106b, miR-191, and miR-30d in milk to demonstrate the relationship between the content of these miRNAs with protein and fat components of milk in Holstein and Ayrshire cattle. Methods: Milk fat, protein, and casein contents were determined in the obtained samples, as well as the content of the main fatty acids (g/100 g milk), including: saturated acids, such as myristic (C14:0), palmitic (C16:0), and stearic (C18:0) acids; monounsaturated acids, including oleic (C18:1) acid; as well as long-, medium- and short-chain, polyunsaturated, and trans fatty acids. Real-time stem-loop one-tube reverse transcription polymerase chain reaction with TaqMan probes was used to measure the miRNA expression levels. Results: The miRNA expression levels in milk samples were found to be decreased in the first two months in Holstein breed, and in the first four months in Ayrshire breed. Correlation analysis did not reveal any dependence between changes in the expression level of miRNA and milk fat content, but showed a multidirectional relationship with individual milk fatty acids. Positive associations between the expression levels of miR-106b and miR-30d and protein and casein content were found in the Ayrshire breed. Receiver operating characteristic curve analysis showed that miR-106b and miR-30d expression levels can cause changes in fatty acid and protein composition of milk in Ayrshire cows, whereas miR-106b expression level determines the fatty acid composition in Holsteins. Conclusion: The data obtained in this study showed that miR-106b, miR-191, and miR-30d expression levels in milk samples have peculiarities associated with breed affiliation and the lactation period.