• Title/Summary/Keyword: transformation by-products

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Methanol-involved heterogeneous transformation of ginsenoside Rb1 to rare ginsenosides using heteropolyacids embedded in mesoporous silica with HPLC-MS investigation

  • Mengya Zhao;Yusheng Xiao;Yanyan Chang;Lu Tian;Yujiang Zhou;Shuying Liu;Huanxi Zhao;Yang Xiu
    • Journal of Ginseng Research
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    • v.48 no.4
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    • pp.366-372
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    • 2024
  • Background: The biological activity and pharmacological effects of rare ginsenosides have been proven to be superior to those of the major ginsenosides, but they are rarely found in ginseng. Methods: Ginsenoside Rb1 was chemically transformed with the involvement of methanol molecules by a synthesized heterogeneous catalyst 12-HPW@MeSi, which was obtained by the immobilization of 12-phosphotungstic acid on a mesoporous silica framework. High-performance liquid chromatography coupled with mass spectrometry was used to identify the transformation products. Results: A total of 18 transformation products were obtained and identified. Methanol was found to be involved in the formation of 8 products formed by the addition of methanol molecules to the C-24 (25), C-20 (21) or C-20 (22) double bonds of the aglycone. The transformation pathways of ginsenoside Rb1 involved deglycosylation, addition, elimination, cycloaddition, and epimerization reactions. These pathways could be elucidated in terms of the stability of the generated carbenium ion. In addition, 12-HPW@MeSi was able to maintain a 60.5% conversion rate of Rb1 after 5 cycles. Conclusion: Tandem and high-resolution mass spectrometry analysis allowed rapid and accurate identification of the transformation products through the characteristic fragment ions and neutral loss. Rare ginsenosides with methoxyl groups grafted at the C-25 and C-20 positions were obtained for the first time by chemical transformation using the composite catalyst 12-HPW@MeSi, which also enabled cyclic heterogeneous transformation and facile centrifugal separation of ginsenosides. This work provides an efficient and recyclable strategy for the preparation of rare ginsenosides with the involvement of organic molecules.

Case Study on the Success Factors of NPD Process Transformation : From IT to Automotive Product Development Process (신제품 개발 프로세스 변환의 성공 요인에 관한 사례연구 : IT제품에서 Automotive 제품으로)

  • Lee, Hyun Wook;Han, Jung Hee;Kim, Byung Keun
    • Journal of Information Technology Services
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    • v.15 no.4
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    • pp.175-191
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    • 2016
  • This paper investigates changing processes of new product development (NPD) systems. In order to continuously develop first-class products, world wide super-class products and hit products, R&D (Research & Development) must be competitive. Firms must achieve competitiveness in terms of quality and cost by launching new products. Most films focus on improving effectiveness and efficiency of NPD process. However, sometimes, they face to the critical challenge of transforming NPD processes entirely reflecting dramatic change of their core products. Transforming of NPD process is difficult in that it involves technological and organizational changes in marketing, R&D, Engineering and manufacturing systems. The purpose of this paper is to shed light on processes and factors affecting successful transformation of new product development systems. We present a case study on the changing processes of S company's NPD process. S company has changed new product development systems successfully from a major IT equipment supplier to an automotive supplier. Empirical results show successful changes of 10 core NPD processes from understanding the market and customers process to after sales process. In case of transformation of NPD, adaption of attribute of business is crucial for success factors in the process innovation. This paper shows the bridging the gap between IT and automotive industrial dynamics and growth through adaption of two processes in the NPD.

Synthesis of Pyrimidopyrimidine by Ring Transformation of s-Triazine (s-Triazine의 Ring Transfromation에 의한 Pyrimidopyrimidine의 합성)

  • 정원근;김상기;천문우;김득준
    • YAKHAK HOEJI
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    • v.28 no.2
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    • pp.97-100
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    • 1984
  • We have investigated the feasibility of using cyclic ambident nucleophiles in s-triazine ring transformation reaction and found that they can replace the $N_{1}-C_{2-N_{3}$ fragment of s-triazine directly in basic conditions, yielding the corresponding bicyclic products. In this paper, we described the reaction and mechanistic aspects of s-triazine to pyrimidopyrimidine transformation by 6-aminouracil derivatives. This type of ring transformation is supposed to be first attempt that deals with the successful s-triazine to bicyclic heterocycle transformation.

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How to Apply the New Quality Dimensions to the New Business in the Digital Transformation Era? (디지털 전환 시대의 새로운 품질 차원 적용 사례연구)

  • Park, Min Seo;Bae, Kyung Mi;Kim, Youn Sung
    • Journal of Korean Society for Quality Management
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    • v.49 no.4
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    • pp.609-622
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    • 2021
  • Purpose: In recent years, several new attempts have been made to offer products and services based on servitization and customization for comparative advantage and customer satisfaction. Apparently, these attempts are empowered by new digital technologies. Therefore, this study aims to present new business cases with features of digital transformation era in Korea on the perspective of new quality dimensions. Methods: The study approaches the subject by presenting a number of recent business cases in multiple fields in Korea. All cases are analyzed and compared with "10 Quality Dimensions" and several related implications such as servitization, customization, digitalization and differentiated value. Results: The results of this study are as follows; the common core quality dimensions of case are customization, aesthetic and convenience. Furthermore, the critical role of technology is deduced as the core quality dimensions are built on new digital technologies. Lastly, businesses in the age of digital transformation must focus on the core performance of their products and services for customer satisfaction while delivering new core quality dimensions. Conclusion: Recent digital technologies are capable to realize servitization and empower companies to provide differentiated and customized products, services, and experience to their customers. However, it is significant to retain other factors for customer satisfactions rather than customization.

망간산화물을 이용한 TNT 환원부산물의 산화-공유결합 반응

  • 강기훈;임동민;신현상
    • Proceedings of the Korean Society of Soil and Groundwater Environment Conference
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    • 2004.04a
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    • pp.43-46
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    • 2004
  • Explosive chemicals have been major soil and groundwater contaminants especially in the nations with active military activities. Of these explosives, 2,4,6-trinitrotoluene (TNT) is the most refractory one due to its structural characteristics. Although its efficient reduction by Fe(0) is well-known, the reduction products - mainly aminotoluenes - still possess toxicities to terrestrial biota, and are resistant to biological degradation. In this study, therefore, abiotic transformation of TNT reduction products via oxidative-coupling reaction was evaluated using Mn oxide which is ubiquitous in natural soils. The transformation efficiency is increased with the number of amino groups. Considering the very efficient reduction rate of TNT by Fe(0), Mn oxide can be successfully used for the removal of TNT reduction products.

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The transformation of ginsenosides by acid catalysis in gastric pH

  • Han, Byung-Hoon;Park, Myung-Hwan;Han, Yong-Nam;Woo, Lin-Keun;Ushio-Sankawa;Shoji-Yahara;Osamu-Tanaka
    • Archives of Pharmacal Research
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    • v.4 no.1
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    • pp.25-31
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    • 1981
  • The ginsenosides of Korean ginseng decomposed profoundly to produce artifact products of prosapogenin $A_{1}$, $A_{2}$ and $A_{3}$ from ginsenoside Rg$_{1}$, prosapogenin $C_{1}$, $C_{2}$ and $C_{3}$ from ginsenoside Re, and prosapogenin E$_{1}$, E$_{2}$ and E$_{3}$ from ginsenoside Rb$_{1}$ by the acid treatment under physiological condition such as 37.deg.C incubation in 0.1 N HCI. 2. The chemical structures of the artifact substances were determined by the analysis CMR and mass spectra of TMS derivatives as following; table omitted.

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Physical property control for a batch polymerization reactor

  • Kim, In-Sun;Ahn, Sung-Mo;Rhee, Hyun-Ku
    • 제어로봇시스템학회:학술대회논문집
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    • 1996.10a
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    • pp.263-266
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    • 1996
  • A method to determine an optimal temperature trajectory that guarantees polymer products having controlled molecular weight distribution and desired values of molecular weight is presented. The coordinate transformation method and the optimal control theory are applied to a batch PMMA polymerization system to calculate the optimal temperature trajectory. Coordinate transformation method converts the original fixed-end-point, free-end-time problem to a free-end-point, fixed-end-time problem. The idea is that by making the reactor temperature track the optimal temperature trajectory one may be able to produce polymer products having the prespecified physical property in a minimum time. The on-line control experiments with the PID control algorithm have been conducted to establish the validity of the scheme proposed in this study. The experimental results show that prespecified polymer product could be obtained with tracking the calculated optimal temperature trajectory.

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Transformation of the Diatom Phaeodactylum tricornutum with its Endogenous (E)-4-Hydroxy-3-methylbut-2-enyl Diphosphate Reductase Gene (Phaeodactylum tricornutum의 (E)-4-Hydroxy-3-methylbut-2-enyl Diphosphate Reductase 유전자의 형질전환)

  • Shin, Bok-Kyu;Jung, Yu-Jin;Kim, Sang-Min;Pan, Cheol-Ho
    • Journal of Applied Biological Chemistry
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    • v.58 no.3
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    • pp.273-279
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    • 2015
  • Phaeodactylum tricornutum is a model diatom that its genomic information and biological tools are well established. In this study, a gene encoding (E)-4-hydroxy-3-methylbut-2-enyl diphosphate reductase (PtHDR), a terminal enzyme of the methylerythritol phosphate pathway regulating chlorophyll and carotenoid biosynthesis, was isolated from P. tricornutum. The isolated gene was cloned into pPha-T1 vector containing fcpA promoter to prepare pPha-T1-HDR plasmid. As a positive control, pPha-T1-eGFP plasmid was constructed with egfp gene. Stable nuclear transformation was carried out with these plasmids by particle bombardment method and zeocin resistant colonies of P. tricornutum were selected on f/2 agar plate. In result, transformation efficiency was evaluated according to the amount of plasmid DNA coated with gold particles. Integration of introduced plasmids was confirmed with genomic DNA of each transformant by polymerase chain reaction. The eGFP fluorescence was visible in the cytoplasm, indicating that eGFP was successively expressed in P. tricornutum system. The transcript level of exogenous Pthdr gene was evaluated with the obtained transformants. The results presented here demonstrated that introduction of Pthdr gene into P. tricornutum chromosome succeeded and expression of PtHDR was enhanced under the fcpA promoter.

Enzymatic Transformation of Ginsenoside Rb1 by Lactobacillus pentosus Strain 6105 from Kimchi

  • Kim, Se-Hwa;Min, Jin-Woo;Quan, Lin-Hu;Lee, Sung-Young;Yang, Dong-Uk;Yang, Deok-Chun
    • Journal of Ginseng Research
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    • v.36 no.3
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    • pp.291-297
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    • 2012
  • Ginsenoside (ginseng saponin), the principal component of ginseng, is responsible for the pharmacological and biological activities of ginseng. We isolated lactic acid bacteria from Kimchi using esculin agar, to produce ${\beta}$-glucosidase. We focused on the bio-transformation of ginsenoside. Phylogenetic analysis was performed by comparing the 16S rRNA sequences. We identified the strain as Lactobacillus (strain 6105). In order to determine the optimal conditions for enzyme activity, the crude enzyme was incubated with 1 mM ginsenoside Rb1 to catalyse the reaction. A carbon substrate, such as cellobiose, lactose, and sucrose, resulted in the highest yields of ${\beta}$-glucosidase activity. Biotransformations of ginsenoside Rb1 were analyzed using TLC and HPLC. Our results confirmed that the microbial enzyme of strain 6105 significantly transformed ginsenoside as follows: Rb1${\rightarrow}$gypenoside XVII, Rd${\rightarrow}$F2 into compound K. Our results indicate that this is the best possible way to obtain specific ginsenosides using microbial enzymes from 6105 culture.

Development of Market Distribution through Digital Marketing Transformation Trends to Maximize Sales Turnover for Traditional Beverage Products

  • Basrowi;Pertiwi UTAMI
    • Journal of Distribution Science
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    • v.21 no.8
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    • pp.57-68
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    • 2023
  • Purpose: The research aims to investigate the development of market distribution through digital marketing transformation trends with the support of universities. This development strategy is to maximize sales turnover of limited liability companies' typical traditional beverage products. Research design, data, and methodology: The research design uses descriptive qualitative methods. Data were obtained by participatory observation, in-depth interviews, FGDs, and documentation. Results: The result shows that the partner's traditional product market distribution strategy has been carried out by adopting science and technology and expertise possessed by partner universities. Universities that are Partners have benefited from the implementation of the Independent Campus program. Conclusions: The conclusion from the findings is that business actors must collaborate with universities through the Kedaireka Matchmaking Fund Program. The collaboration will create the right strategy development for the business. The government needs to provide more access to finance in the future. The hope is that the traditional beverage industry and higher education can realize the ease of synergy contributing to national development and the vision of the Indonesian Ministry of Education and Culture's independent campus.