Cho Young-Je;Chun Sung-Sook;Cha Won-Seup;Park Joon-Hee;Oh Sang-Lyong;Lee Won-Young;Kim Jeung-Hoan;Park Jae-Gyeong
Food Science and Preservation
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v.12
no.3
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pp.199-203
/
2005
Reducing sugar content of persimmon fruits was increased by applying food-garbage compost Dungsi was brighter with yellow color than that of control. The Gabjubaekmok was darker than that of control with red color. It was suggested that taste of astringent was reduced because total phenol and soluble tannin contents were reduced by applying food-garbage compost. The vitamin C content of persimmon fruits during storage was higher than that of control. Stability of persimmon fruits by applying food-garbage compost and non-food garbage compost was about the same at room temperature. At low temperature, hardness of persimmon fruits was maintained for 20 days. Hardness and reducing sugar contents of persimmon fruits were increased by applying food-garbage compost. The result was shown that there was no effect on composition of persimmon fruits by applying food-garbage compost and maintaining hardness at room temperature, but at low temperature, the composition of persimmon fruits was changed.
Aronia (Black chokeberry, Aronia melanocarpa) belonging to the Rosaceae family, is native to eastern North America. Aronia contain high levels of flavonoids, mostly anthocyanins and proanthocyanidins, which are known as condensed tannins. The dominant proanthocyanidins in aronia are (-)-epicatechin and (+)-catechin. The concentration of proanthocyanidins in aronia is higher than in other berries, however due to the astringent taste it is not desirable for consumption. Therefore, the purpose of this study is to evaluate the effect of aronia on the reduction in tannins by yeast isolated from regional Jeotgal. We isolated strains of yeast with high ${\beta}$-glucosidase activity from Jeotgal, with the MTY2 strains exhibiting a reduction in final tannin concentration according to thin layer chromatography (TLC) analysis. MTY2 was confirmed as Kazachstania servazzii using an 18S rDNA sequence and named as K. servazzii MTY2. K. servazzii MTY2 showed most significant growth when K. servazzii MTY2 was cultured in a solution of 10% (w/v) glucose, 3% (w/v) tryptone and 0.1% (w/v) sodium chloride. According to the high performance liquid chromatography (HPLC) analysis, the (+) - catechin peak is present, but (-) - epicatechin peak was reduced at culture condition added with 10% glucose in medium.
Park, Hye-Jin;Park, Ki-Tae;Hong, Shin-Hyub;Kim, Na-Hyun;Park, Mi-Jeong;Hong, Eun-Jin;Ahn, Dong-Hyun;An, Bong-Jeun;Cho, Young-Je
Food Science and Preservation
/
v.23
no.6
/
pp.899-905
/
2016
In this study, beauty food activities were determined for extracts of Saurus chinensis as functional beauty food. Tyrosinase inhibitory effect was increased as more 4 folds by ultra-fine grind technology than normal grind technology in ethanol extracts from Saurus chinensis. A ultra-fine ground technology was used to increase the extraction yield for bioactive compounds from medicinal plants. Tyrosinase inhibitory activity, which is related to skin-whitening, was confirmed to be 100% for ethanol extracts at 1,000 ppm of phenolics. Anti-wrinkle activity was determined showing 30% of inhibition effect at above 1,000 ppm phenolic concentration. The elastase inhibitory activity of water and ethanol extracts from ultra-fine ground Saurus chinensis showed higher inhibition activity than compared to extracts from normal ground Saurus chinensis. Astringent activity in ethanol extracts was determined showing over 70% at 250 ppm of phenolics. Based on these results, Saurus chinensis extracts can be used as a functional beauty food and cosmetic with whitening, anti-wrinkle and pore contraction effects.
This study was conducted to develop a preservation technology that can induce changes in physicochemical properties to effectively utilize of persimmon leaves. The application effects of steaming or freezing technique were investigated. Astringent persimmon leaves were steam-blanched (100℃, 30 sec) or frozen (-20℃, 15 d), followed by hot-air drying (50℃). The physicochemical properties of the extract obtained by hot-water leaching from the dried leaves were compared. The extract of leaves dried without pretreatment was used as a control. L* value was higher in steamed than in control and frozen. a* value was highest in the control. The browning index was higher in the frozen and lower in the steamed than in the control. Soluble solids were the highest in the steamed and the lowest in the frozen. Sucrose content was relatively high in the steamed, and the glucose and fructose contents were relatively high in the frozen. Total polyphenol content and DPPH radical scavenging activity were higher in steamed and lower in frozen than in control. Thus, it was confirmed that steam or freeze pretreatment after harvesting persimmon leaves affects the extraction yield, color, antioxidant capacity and component changes of dried persimmon leaves. Unlike steaming, freezing pretreatment showed the effect of promoting decomposition and browning reactions, and it is considered useful when such an effect is needed.
This study was performed to evaluate the anti-inflammatory activities of 70% ethanol extract from Ambrosia trifida L. (AT). The electron donating ability and ABTS+ radical scavenging ability of extract from AT was shown to be 84.1% and 92.5% at 1,000 ㎍/ml concentration. The astringent effect of extract from AT was shown to be 94.7% at 1,000 ㎍/ml. The anti- inflammatory activities of extract of AT were investigated using RAW 264.7 cells induced by lipopolysaccharide (LPS). The cell toxicity effect of AT extract on RAW 264.7 performed MTT assay. As a result of the measured cell toxicity effect, 90% or more was shown with cell viability at a 500 ㎍/ml concentration. In nitric oxide synthesis inhibition effect, it was shown that extract from AT concentration dependent inhibited nitric oxide production. The protein expression inhibitory effect of AT extract was measured by western blot at 25, 50, and 100 ㎍/ml concentration and the β-actin used as a positive control. Consequently, the inducible nitric oxide synthase (iNOS), cyclooxygenase (COX)-2 protein expression inhibitory effect was decreased by 8.6%, 25.1% at 100 ㎍/ml concentration. The phosphorylation of extracellular signal-regulated kinase 1/2, p38, c-Jun NH2-terminal kinase and Iκ-Bα protein expression inhibitory effect was a decreased dependent concentration. The mRNA expression inhibitory effect was measured by reverse transcription - polymerase chain reaction at 25, 50, and 100 ㎍/ml concentration and the glyceraldehyde-3-phosphate dehydrogenase used as a positive control. Consequently, the iNOS, COX-2, interleukin (IL)-1β, IL-6 and tumor necrosis factor-α mRNA expression inhibition effect was a decreased dependent concentration in an LPS-activated macrophage. In conclusion, AT extract may have some effects on inflammatory factors as potential anti-inflammatory agents and natural substance for cosmetics.
A 70% ethanol extract of Erigeron annuus (L.) Pers. was investigated for its whitening activity for application as a functional ingredient in cosmetic products. At the E. annuus extract concentration of $100{\mu}g/ml$, the electron-donating ability was found to be 67.83%, the tyrosinase inhibitory effect (related to skin-whitening) was 69%, the elastase inhibitory effect (related to skin-wrinkling) was 69%, and the astringent effect was 80%. The $ABTS^+$ radical-scavenging ability was 87% at the $500{\mu}g/ml$ concentration. In the cell viability test measured on melanoma cells, 96% of the cells treated with $100{\mu}g/ml$ of the extract were viable. According to the western blot results, the protein expression of the microphthalmia-associated transcription factor (MITF), tyrosinase, tyrosinase-related protein (TRP)-1, and TRP-2 was decreased by 60.22%, 47.83%, 54.79%, and 67.88%, respectively, at the extract concentration of $100{\mu}g/ml$. The protein expression of phosphorylated extracellular signal regulated kinase (p-ERK) and phosphorylated cAMP response element-binding protein (p-CREB) was decreased with increasing concentrations of the extract. Reverse transcription-polymerase chain reaction of the extract showed that the mRNA expression of MITF, tyrosinase, TRP-1, and TRP-2 was decreased by 86.51%, 85.22%, 74.26%, and 66.66%, respectively, at $100{\mu}g/ml$ extract concentration. The findings suggest that the 70% ethanol extract from E. annuus (L.) Pers. has potential as a cosmeceutical ingredient with whitening effect.
Effects of storage method and duration on the post-storage quality changes of deastringencied persimmons were investigated. Astringent persimmons(Diospyros kaki T. cv. Chungdobansi) were treated for 39 hours in 70% CO$_2$+5% O$_2$ at 25 $\^{C}$ for astringency removal, and then stored in CA(5%CO$_2$+3%O$_2$, 8%CO$_2$+3%O$_2$), MAP(0.06 mm LDPE film, 5.2%CO$_2$+6.8%O$_2$) and air at 0$\^{C}$ for 15, 45, 75 arnd 105 days. Subsequent to the storage, persimmons were held in air at 10$\^{C}$ for 4 days. The difference of firmness loss in relations to storage methods at O$\^{C}$ during holding at 10$\^{C}$ observed in fruits stored above 45 days at 0$\^{C}$, CA(8%CO$_2$+3%O$_2$) storage was more retarded the firmness loss than the others. Soluble solids during holding at 10$\^{C}$ trended to decrease in fruits stored above 75 days at 0$\^{C}$, CA and MAP storage were a little effective to keeping soluble solids. Titratable acidity during holding at 10$\^{C}$, decreased in fruits stored until 75 days at 0$\^{C}$ regardless storage methods. Sensory characteristics, color, hardness and overall acceptability of fruits stored in CA were significantly higher than those of fruits stored in MAP and air during shelf-life at 10$\^{C}$ after long-term storage at 0$\^{C}$ . These results show that the storage conditions had residual effect on the quality of deastringencied persimmons during shelf-life after long-term storage.
Journal of Physiology & Pathology in Korean Medicine
/
v.23
no.6
/
pp.1247-1260
/
2009
This dissertation aims to study the five tastes in the Yellow Emperor's Canon of Internal Medicine. Medicinals as well as Foods are classified by the five tastes: sweet, sour, bitter, salty and pungent, which can be tasted by the tongue. With the development of the theory dealing with the medicinal properties, some flavors are summarized out of clinical actions of medicinals, therefore, there is a little difference between the flavors of medicinal herbs and the tastes got by tongue. Each taste acts on or has direct influence on a specific vital organ, and each of which has different physiologic actions. Taste also has a long-term or post digestive effect on the body and its metabolism. When each taste is consumed in moderation, it benefits the corresponding organ. Over-indulgence in any taste harms the organ and creates imbalance among the five vital organ systems. The Korean medicinal herbs with same flavor mostly possess similar actions while the medicinal herbs with different flavors show different actions in the treatment, which are shown as follows. Sour has absorbing, consolidating and astringent actions and acts on the liver. Bitter has the actions of drying or resolving dampness, purging and lowering and acts on the heart. Sweet has the nourishing, harmonizing and moistening actions and acts on the spleen. Pungent has an action of dispersing and promoting circulation of gi and blood and acts on the lungs. Salty has the effects of softening hard nodes or masses and promoting defecation, etc and acts on the kidneys. The five organ systems control and support each other. Proper coordination only exists when there is no one organ stronger or weaker than the rest. Since the five tastes have direct influences on the five organs, the diet we take should have a good combination of the five tastes in order to promote internal balance and harmony. They control our well-being and create dietary balance. Excessive consumption of any of these could result in adverse effects. In a word, when the properties of the five tastes respectively are distinguished, their natures and flavors cannot be separately considered. I think the harmonization of food and medicinals should be stressed on good nutritional diet to maintain good health. The traditional belief that food and medicine share the same origin is a part of Korean medicine tradition.
Seo, Ji-Young;Lee, Byung-Wook;Kim, Hak-Dong;Kim, Ki-Wook
The Journal of Korean Medical History
/
v.27
no.1
/
pp.135-156
/
2014
Through a simple translation and analysis of the "Su$\acute{s}$uta-saṃhit$\bar{a}$(The fascinating tales) S$\bar{u}$trasth$\bar{a}$na(The Introduction)", I have summarized the results of the research into the $\bar{A}$yurveda Herbal theory. 1. The title of chapter 40 is "dravya-rasa-guṇa-vip$\bar{a}$ka-vij$\tilde{n}$anīya(Medcation Taste Nature Effects Digestion)", and it states theoretical knowledge on materia medica. It says that 'matter' is the most important thing, and that it decides the curing effect. Although it does acknowledge the reason behind the doctors that emphasized things like 'taste', it mainly has a critical tone. The difference in philosophies and medical theory can be seen when we compare this to the "Caraka-saṃhit$\bar{a}$", 'theory on taste'. 2. The title of chapter 41 is "dravya-vi$\acute{s}$eṣa-vij$\tilde{n}$anīya(A Discussion on the Characteristics of Materia Medica)", and the contents of the chapter have a similar tone to the thoughts of the S$\bar{a}$mkhya(數論派). All 'matter' was created by the combination of the five elements of earth, water, fire, wind, and ether, and the predominant element makes it have an earth, water, fire, wind, or ether nature. Earth has an unmoving and down going nature, and makes the body strong. Water has an irrigating nature, and moistens the tissue and induces secretion and excretion. Fire has an upward-going nature, and improves sight and complexion. Wind relaxes and dries the body, and makes the mind and body agile. Ether gives flexibility, porosity, and candidness. The title of chapter 42 is "rasa-vi$\acute{s}$eṣa-vij$\tilde{n}\bar{a}$nīya(A Discussion on the Types of Rasa(taste))". "Rasa" is an important concept in $\bar{A}$yurveda. Sometimes it is translated as 'one of the seven types of bodily tissue' and seen as chyle, and sometimes it is seen as the tastes that can be felt with the tongue such as spicy, sweet, sour, bitter, salty, and astringent(澁). Volume 1, chapter 42 of the "Caraka-saṃhit$\bar{a}$" is dedicated to the "types of taste", and in chapter 26, it theorizes the concept of 'taste'.
Park, Heajin;Jeong, Jaehoon;Hyun, Hanbit;Kim, Jihye;Kim, Haesung;Oh, Hyun Il;Hwang, Hye Seong;Kim, Ha Hyung
YAKHAK HOEJI
/
v.58
no.5
/
pp.307-313
/
2014
Rumex crispus (curled dock), which is a perennial wild plant, has long been used as a laxative, astringent, and medicine to treat blood and skin diseases. We recently reported that the roots of R. crispus are an effective nutraceutical for bone. This study prepared ethanol extracts of the leaves and roots of R. crispus, and analyzed the major constituents using liquid chromatography and mass spectrometry. In addition, their effects on the proliferation and differentiation of human osteoblast-like MG-63 cells, such as cell viability, alkaline phosphatase (ALP) activity, collagen content, and mineralization, were compared. The chromatograms of the chemical constituents of the two extracts exhibited quite different profiles: quercetin and quercitrin were identified as major peaks in the leaf extract, whereas cinnamtannin B1 and procyanidin isomers were the major peaks for the root extract. Neither extract was cytotoxic at concentrations of < $25{\mu}g/ml$. ALP activity and collagen synthesis-which are markers of the early stage of osteogenesis-in MG-63 cells were significantly increased upon the addition of the root extract compared with the addition of the leaf extract. In contrast, the leaf extract had a more stimulatory effect on mineralization-which is marker of the late stage of osteogenesis-in MG-63 cells than did the root extract. In conclusion, extracts of both leaves and roots of R. crispus stimulated the bone-forming activity of osteoblasts; in particular, the root extract was more effective in the early stage of osteoblast differentiation, while the leaf extract was more effective in the late stage. This difference in anabolic activity may be due to differences in the constituents of the leaves and roots. The leaves and roots of R. crispus appear to complement each other as stimulators of bone formation.
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