Kim, Sang-Seop;Ku, Kyung-Hyung;Jeong, Moon-Cheol;Hong, Joo-Heon;Chung, Shin-Kyo
Food Science and Preservation
/
v.21
no.6
/
pp.776-783
/
2014
Kimchi cabbages were cut ($3{\times}3cm$), and were pre-heat treated at $40^{\circ}C$, and their physicochemical qualities and browning degrees were investigated during 8 weeks storage at $5^{\circ}C$. The Cut kimchi cabbages were treated at $40^{\circ}C$ (1~8 hrs) and their protein bands profiles were determined by sodium dodecyl sulfate polyacrylamide electrophoresis (SDS-PAGE). The 60, 39, 33, and 12 kDa bands considered heat shock proteins (HSPs) were expressed in the cut kimchi cabbage, and the 4-hr pre-heat treatment (HS 4) exhibited the strongest band ratio. The weight ratios and titratable acidities of the pre-heat treated cut kimchi cabbages were not changed so much after 8 weeks storage at $5^{\circ}C$, and the soluble solid contents of HS 4 decreased less than that of any other treatments. The browning degree of HS 4 after 8 week storage was also shown to be the least among the treatments. The polyphenol oxidase (PPO) activities of all treatments slightly rose during the over all storage period, in contrast with the decrease of total phenolic contents. The expression of HSPs was identified in the pre-heat treated cut kimchi cabbages, and HS 4 exhibited the best quality and appearance after 8 weeks storage at $5^{\circ}C$.
Ha, Sang-Do;Kim, Sung-Soo;Park, Choul-Soo;Kim, Byung-Mook
Korean Journal of Food Science and Technology
/
v.23
no.4
/
pp.485-489
/
1991
In order to study the effects of blanching and germination of soybean on the quality of soymilk, the soybeans were differently treated as follow; (1) blanched for 5 min at $100^{\circ}C$, (2) germinated for 2 days at $25^{\circ}C$, (3) germinated for 2 days and then blanched for 5 min at $100^{\circ}C$. The qualities of various soymilks prepared from the treated soybeans were compared with those of soymilk from the untreated soybeans. Blanching of soybeans decreased yields, solid materials, viscosity, total protein, soluble nitrogen, and total sugar of soymilk but no effect on its free sugar contents, specific gravity, and pH. The blanching, however, improved the sensory properties and decreased the n-hexanal contents of soymilk to about 1/2.4. Germination of soybeans improved the yields, physical, chemical, and sensory properties and decreased the n-hexanal contents of soymilk to about 1/5. The germination plus blanching of soybeans showed kind of combined effects of germination's and of blanching's, resulting in the decrease of n-hexanal to about 1/10 and improvement in sensory properties of soymilk.
We conducted this study to identify the optimal milling degree for improving sensory quality of cooked rice and minimizing yield loss. The samples were analyzed for their physicochemical properties and sensory qualities using five different degree of milling(5.5~13.5%, based on brown rice). With increasing of milling degree, amylose content, breakdown, adhesiveness of cooked rice increased, whereas protein content, Mg/K equivalence ratio, fat content, setback and hardness of cooked rice decreased. In sensory quality test, the preference was significantly higher in the 9.5% and 11.5% milling degree. However, considering the yield of milled rice, the optimal milling degree for improving sensory quality of cooked rice was 9.5%.
Kim, Il-Suk;Jin, Sang-Keun;Song, Young-Min;Kim, Chul-Wook;Jo, Kwang-Keun;Chung, Ki-Hwa;Kang, Suk-Nam
Journal of Animal Science and Technology
/
v.50
no.6
/
pp.839-848
/
2008
This study was conducted to determine the effect of mugwort powder on carcass characteristics, proximate composition, cholesterol contents, and meat qualities in growing-finishing gilt and barrow(LY×D). Totally 80 pigs (40 gilts and 40 barrows, approximately 50kg each) with 10 pigs per treatment were randomly alloted. The diet group was prepared as 0(C), 0.5(T1), 1.0(T2), and 1.5%(T3) mugwort powder in basal diet, respectively. They were fed experimental diets for 90 days before slaughtered. Carcass weight was increased by dietary mugwort powder(p<0.05), whereas changes in back fat thickness and meat grade were unaffected by dietary supplements. Meat moisture, fat, ash, and cholesterol were not differ significantly in the samples, however, protein in T2 and T3 were significantly higher than the control (p<0.05). Meat pH48, water holding capacity, and cooking loss were not differ significantly in the samples (p>0.05), and shear force of fresh meat and fat were not differ significantly in the samples(p>0.05). Lightness(L*) of meat was increased but that of fat was decreased by dietary mugwort powder, whereas changes in redness(a*) and yellowness(b*) were unaffected by dietary supplements.
Sensory and physical qualities and palatable compounds of cultured flounder muscle were compared with the wild ones. No differences were seen in the contents of the moisture, lipid, protein between cultured and wild dorsal muscles, however, sensory panels preferred the wild fish to cultured ones because of the texture and taste of wild fish, and they could differentiate the degree of difference in the texture and taste property distinctly. Raw meat of the wild fish was harder and more elastic than the cultured ones, however, the cultured meat was harder and drier than the wild ones once they were cooked. The results of physical properties were similar to the results of sensory evaluation. Alanine was the most abundant compound among the free amino acids which make meat palatable and followed by glutamic acid, proline, methionine, and glycine. There was no difference in total content of free amino acids between two fish muscles. ATP was the most abundant among all nucleotides and their related compounds in both fish muscles followed by IMP, ADP, AMP, however, the total content of those was greater in wild fish muscle (9.4 ${\mu}$mole/g) than in cultured fish muscle (6.7 ${\mu}$mole/g).
Heat shock protein 90 (Hsp90) is ATPase-directed molecular chaperon and affects survival of several cells. In our previous study, inhibitory effect of Hsp90 by inducing cell cycle arrest and apoptosis in the pig embryonic and primary cells was reported. However, its role during early bovine embryonic development is not sufficient. In this study, we traced the effects of Hsp90 inhibitor, 17-allylamino-17-demethoxygeldanamycin (17-AAG), on early bovine embryonic development. We also investigated several indicators of developmental potential, including structural integrity, gene expression (apoptosis-related genes), and apoptosis, which are affected by 17-AAG. Bovine embryos were cultured in the CR1-aa medium with or without 17-AAG for 7 days. In result, significant differences in developmental potential were detected between the embryos that were cultured with or without 17-AAG ($33.1{\pm}9.6$ vs $21.7{\pm}8.3%$). The structural integrity of the blastocysts was examined by differential staining. Blastocysts from the dbcAMP-treated group had higher numbers of ICM, TE, and total cells than those from the untreated group. Terminal deoxynucleotidyl transferase-mediated dUTP nick-end labeling (TUNEL) showed that the number of containing fragmented DNA at the blastocyst stage increased in the 17-AAG treated group compared with control (11.2 vs 3.9, respectively). Blastocysts that developed in the 17-AAG treated group had low structural integrity and high apoptotic nuclei than those of the untreated control, resulting in decrease the embryonic qualities of preimplantation bovine blastocysts. The mRNA expression of the pro-apoptotic gene (Bax) increased in 17-AAG treated group, whereas expression of the antiapoptotic gene (Bcl-XL) decreased. In conclusion, Hsp90 also appears to play a direct role in bovine early embryo developmental competence including structural integrity of blastocysts. Also, these results indicate that Hsp90 is closely associated with apoptosis-related genes expression in developing bovine embryos.
Park, B.Y.;Kim, J.H.;Cho, S.H.;Hwang, I.H.;Jung, O.S.;Kim, Y.K.;Lee, J.M.;Yun, S.G.
Asian-Australasian Journal of Animal Sciences
/
v.18
no.3
/
pp.414-419
/
2005
The current study was conducted to investigate the effects of dietary chitosan-alginate-Fe(II) complex (CAFC) supplementation on carcass and meat qualities of pig m. longissimus during chiller ageing. One hundred and twenty-two LYD (Landrace${\times}$Yorkshire${\times}$Duroc) pigs were sampled from an industrial population. Seventy-four pigs (32 gilts and 42 barrows) were administered 3 ml of dietary supplementation of CAFC per day from 25 to 70 days of age, while the remaining 48 pigs (20 gilts and 28 barrows) were fed the same commercial feeding regime without the supplementation. For assessing the dietary effects on pH, objective meat color, cooking loss, water-holding capacity (WHC), thiobarbituric acid reactive substances (TBARS), volatile basic nitrogen (VBN) and fatty acid composition during ageing, 20 barrows (10 of each treatment) were randomly sampled, and aged for 3, 7, 12, 16, 20 and 25 days in a $1^{\circ}C$ chiller. The results showed that CAFC-fed pigs required approximately 10 fewer feeding days than the control group. Furthermore, the treatment resulted in greatly higher carcass grade whereby the grade A was increased by approximately 35% and 7% for gilts and barrows, respectively. The treatment had no significant effect (p>0.05) on pH, meat color and WHC during ageing. On the other hand, the CAFC-fed pigs showed significantly (p<0.05) lower TBARS values from 20 days of storage. In addition, the sum of unsaturated fatty acids for the treated group was significantly (p<0.05) higher than that for the control group after the storage time. This implied that CAFC supplementation could reduce the formation of free radicals in fatty acids (i.e., lipid oxidation). The treatment also significantly (p<0.05) retarded VBN formation during ageing, indicating a significant reduction in protein degradation. However, as there was no difference in pH between the two groups, the result raised a possibility that antibacterial activity of the CAFC alone could cause reduction in the formation of TBARS and VBN. In this regard, although the treatment effectively slowed down the formation of TBARS and TBA during chiller ageing, it was not resolved whether that was associated with the direct effect of the antioxidant function of chitosan and/or alginate, or a consequence of their antibacterial functions.
The purpose of this study was to evaluate the effects of barley cultivars (Saessalbori, Saechalssalbori and Huinchalssalbori) and different milling recovery (95%, 85% and 75%) on quality characteristics of barley Makgeolli. The content of moisture, ash, crude protein, and crude fat in barley seeds were reduced with decreasing milling recovery. The qualities of barley Makgeolli were also significantly affected by the milling recovery. Decreasing milling recovery of all cultivars resulted to increase in total sugar content and reducing sugar content but decrease in pH while alcohol content and total acidity were not significantly affected. Moreover, the lightness and yellowness of barley Makgeolli increased by milling while its redness decreased. The sensory evaluation showed that the consumer preference for barley Makgeolli increased at the lowest milling recovery (75%). The results of this study suggest that the milling recovery and cultivar of barley were important factors to improve the taste and color of barley Makgeolli.
In order to determine the optimum harvesting time based on grain filling and physico-chemical qualities for malting, three cultivars were harvested at every five days from 30th day after heading date at two experimental sites in the southern part of Korea. Starch accumulation and kernel weight increment were remarkable until 45th day after heading, but negligible after that. Content of ash, crude protein and polyphenolics and ${\alpha}-amylase$ activity decreased with maturation of grains and reached to the lowest value at 45th day after heading date. Germinative energy and capacity were good enough for malting from 40th day after heading date. The optimum harvesting time were estimated at 45th day after heading date in the increment of starch accumulation and kernel weight. At this time matured and immatured kernels were in the ratio 93 : 7. However, it is estimated that early harvesting time was at 40th day after heading date.
Livestock products like meat, milk and egg have been principal food sources for human beings since the historic periods of time. Nowadays consumption of these food items have been avoided due to its high contents of SFA, cholesterol and total fat which are major culprits of chronic adult diseases causing major deaths of people. However, the relationship between livestock products and diseases is not always true because the amounts of fat and cholesterol and types of fatty acids in meat and meat by-products depend on the part of the meat and types of animals. Although meat intakes do not always cause mai or adult diseases, still the developmental necessity does exist for animal foods equipped with biologically active properties, which in turn can improve nutritional status and health more than ever Meat with high protein lean part and low fat can be produced by applying synthetic somatotropin and beta-adrenergic agonists like clenbuterol, cimaterol etc. during breeding. This application brings benefits like higher growth rate, lower fat contents and improve feed efficiency ratios. Meats fortified with long chain PUFA($\omega$-3 fatty acids) can also be produced by modulating feed composition.Egg Products have faced the reduced sales annually because of its high cholesterol contents. Recently brand eggs fortified with special nutrients or chemical components having functional proper ties in the human body system are very popular Research Interests have been focused on eggs with low cholesterol and high omega-3 fatty acids. Low cholesterol eggs and high omega-3 eggs can be produced in several different ways, but popular way to increase is feeding the feeds with different oil sources containing high omega-3 and 6 fatty acids such as fish oil, perilla oil, linseed oil and lecithin etc. But proper compositon of feed formula should be found and economically beneficial. Brand eggs fortified with vitamin, mineral, unknown growth factors are also manufactured. Low cholesterol and high $\omega$-3 PUFA milk are marketed recently Cholesterol removal technology is not completely established and has several limitations to be overcome. Milk fortified with $\omega$-3 fatty acids is made by incorporating high &13 fatty acid foods in feed despite of extraordinary way of fatty acid metabolism In cow. All these biologically active products will be very beneficial and useful for human consumption when limitations of manufacturing technology such as safety and lowered sensory qualities are resolved. Furthermore, thorough and precise tests and quality control for these products should be performed to ensure the effectiveness and usefulness in terms of improving health and nutritional status in general. However one caution should be pointed out to lay people informing that these items are nothing but a food and not panacea. Therefore, it is important to remember that the only way of maintaining good health is absolutely through consuming balanced diet.
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