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691 result(s) for "Kimchi."
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A new process on the basic formula of kimchi: derived kimchi from a combination of yangnyeom (kimchi sauce) and vegetables
This study proposes a way of reconsidering how to explain kimchi, which is quite diverse even though it is often referred to as if it expresses a single, universal dish, to non-Koreans, particularly given the worldwide rise in its popularity. Koreans are accustomed to the general process of explaining kimchi in terms of the different types of vegetables that are the main ingredients. However, this process makes it difficult for Westerners who are new to kimchi to fully understand the comprehensive meaning and value of the dish. For this reason, it is time to change the process of explaining kimchi for Westerners who are accustomed to food culture using sauces. We believe that our study makes a significant contribution to the literature and will be of interest to the readership of the Journal of Ethnic Foods journal because it reviews and draws from 15 kimchi recipes posted by the world-famous culinary YouTuber Maangchi and proposes that discussing and classifying the composition and structure of ingredients and the basic formula as the best way of introducing non-Koreans to the variety of this quintessentially Korean dish and encouraging them to create their own varieties of kimchi upon a simple foundation of ingredients. People worldwide will be able to evolve to the stage where they can recognize and reconstruct the basic formula in which various derived kimchi types are made by combining kimchi yangnyeom and vegetables. KCI Citation Count: 5
The Korean kimchi cookbook : 78 fiery recipes for Korea's legendary pickled and fermented vegetables
\"Kimchi is the newest star on the Asian culinary stage. These kimchi recipes are an appetizing way to add more vegetables with probiotics, vitamins, and enzymes to your health-conscious diet ... [This cookbook] features the extensive history and background information about Korea's cuisine and fascinating culture ... [with] flavorful and easy to prepare recipes organized by season\"-- Provided by publisher.
Kimchi microflora: history, current status, and perspectives for industrial kimchi production
Kimchi, a traditional Korean food made by the fermentation of vegetables, has become popular globally because of its organoleptic, beneficial, and nutritional properties. Spontaneous kimchi fermentation in unsterilized raw materials leads to the growth of various lactic acid bacteria (LAB), which results in variations in the taste and sensory qualities of kimchi products and difficulties in the standardized industrial production of kimchi. Raw materials, kimchi varieties, ingredients, and fermentation conditions have significant effects on the microbial communities and fermentative characteristics of kimchi during fermentation. Heterofermentative LAB belonging to the genera Leuconostoc, Lactobacillus, and Weissella are likely to be key players in kimchi fermentation and have been subjected to genomic and functional studies to gain a better understanding of the fermentation process and beneficial effects of kimchi. The use of starter cultures has been considered for the industrial production of high quality, standardized kimchi. Here, we review the composition and biochemistry of kimchi microflora communities, functional and genomic studies of kimchi LAB, and perspectives for industrial kimchi production.
Muffins enriched with dietary fiber from kimchi by‐product: Baking properties, physical–chemical properties, and consumer acceptance
This study aimed to evaluate the effects of dietary fiber from Chinese cabbage outer‐leaf powder, which is a main by‐product of kimchi, on the quality, texture properties, and sensory evaluation of muffins. The kimchi by‐product powder (KBP, 36.2% dietary fiber) was added at 1%–4% dietary fiber content, by replacing wheat flour (w/w basis). The physico‐chemical and sensory properties of the baked muffins were measured. The height and volume of the muffins decreased with the addition of KBP. Increasing the KBP content resulted in increased hardness and reduced chewiness. No significant difference was observed in the overall acceptance among the muffins, up to the 2% added dietary fiber group, and the positive effect of the incorporated KBP was also confirmed in the sensory evaluation. These results indicate that it is possible to produce functional muffins with increased dietary fiber content by adding KBP in place of flour. Though muffins are a favorite bakery product among consumers owing to their soft texture and good taste, they have high fat and low dietary fiber. Nowadays, demanding for the mass production of kimchi has been increasing owing to the expansion of the catering industry, and a large amount of by‐products is generated from kimchi factories. Because kimchi by‐product (KBP) contains various nutritional compounds, as well as dietary fiber, we tried to use it as a source of dietary fiber. In this study, we aimed to produce muffins using dietary fiber of Chinese cabbage outer‐leaf powder, which is a main KBP. Based on the results of this study, muffins with up to 2% dietary fiber from KBP had optimal sensory preferences and showed a possibility to produce functional muffins with increased dietary fiber.
Slippery, spicy, tingly : a kimchi mystery
A child's eccentric grandmother comes for a surprise visit and does some odd things involving a giant jar, large amounts of cabbage, and a deep hole in the backyard.
Kimchi and ILeuconostoc mesenteroides/I DRC 1506 Alleviate Dextran Sulfate Sodium -Induced Colitis via Attenuating Inflammatory Responses
Ulcerative colitis (UC) is caused by inflammation only in the mucosa of the colon, and its incidence is increasing worldwide. The intake of probiotics is known to have a beneficial effect on the development of UC. In this study, we investigated the alleviating effects of kimchi (KC), a fermented food rich in probiotics, and Leuconostoc mesenteroides DRC 1506 (DRC) isolated from kimchi on UC. A freeze-dried kimchi suspension and DRC were orally given to mice at a dose of 1 × 10[sup.9] CFU/day for 3 weeks. Furthermore, 3% dextran sulfate sodium (DSS) in drinking water was given to induce UC. The KC and DRC groups reduced symptoms of colitis, such as disease activity index, decrease in colon length, colon weight-to-length ratio, and pathological damage to the colon caused by DSS treatment. The KC and DRC groups decreased the levels of pro-inflammatory cytokine (TNF-α) and increased anti-inflammatory cytokine (IL-10) in the colon tissues. At the mRNA and protein expression levels in the colon tissue, KC and DRC groups downregulated inflammatory factors and upregulated tight junction-related factors. Therefore, DRC, as well as KC supplementation, are potent in alleviating UC by improving the inflammatory response and mucosal barrier function in the colon.
Reduction in Biogenic Amine Content in Baechu (Napa Cabbage) Kimchi by Biogenic Amine-Degrading Lactic Acid Bacteria
This study was performed to mine biogenic amine (BA)-degrading lactic acid bacteria (LAB) from kimchi and to investigate the effects of the LAB strains on BA reduction in Baechu kimchi fermentation. Among 1448 LAB strains isolated from various kimchi varieties, five strains capable of considerably degrading histamine and/or tyramine were selected through in vitro tests and identified as Levilactobacillus brevis PK08, Lactiplantibacillus pentosus PK05, Leuconostoc mesenteroides YM20, L. plantarum KD15, and Latilactobacillus sakei YM21. The selected strains were used to ferment five groups of Baechu kimchi, respectively. The LB group inoculated with L. brevis PK08 showed the highest reduction in tyramine content, 66.65% and 81.89%, compared to the control group and the positive control group, respectively. Other BA content was also considerably reduced, by 3.76–89.26% (five BAs) and 7.87–23.27% (four BAs), compared to the two control groups, respectively. The other inoculated groups showed similar or less BA reduction than the LB group. Meanwhile, a multicopper oxidase gene was detected in L. brevis PK08 when pursuing the BA degradation mechanism. Consequently, L. brevis PK08 could be applied to kimchi fermentation as a starter or protective culture to improve the BA-related safety of kimchi where prolific tyramine-producing LAB strains are present.