1.Chemotherapy in Small Cell Lung Cancer with End-Stage Renal Disease on Hemodialysis.
Sang Il CHOI ; Sun Seob PARK ; Eun Jeong KO ; Si Won LEE ; Mihong CHOI ; Kiwon KIM
The Ewha Medical Journal 2014;37(Suppl):S5-S9
Small cell lung cancer is primarily treated with chemotherapy. For patients with end-stage renal disease (ESRD), systemic chemotherapy is often challenging since renal excretion of chemotherapeutic agents might be decreased due to impaired renal function, leading to increased toxicity. No consensus is made so far regarding appropriate dosage and combination of chemotherapeutic agents for patients on hemodialysis. We report two cases of chemotherapy without significant toxicity in small cell lung cancer patients who were on hemodialysis for ESRD.
Consensus
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Drug Therapy*
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Humans
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Kidney Failure, Chronic*
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Renal Dialysis*
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Small Cell Lung Carcinoma*
2.Simultaneous Determination of Four Compounds from Artemisia capillaris using High Performance Liquid Chromatography-Ultraviolet Detector (HPLC-UVD) and Their Quantitative Study in Artemisia Genus
Kiwon KO ; In Kee HONG ; Hyun Jong CHO ; Young Ho KIM ; Heejung YANG
Natural Product Sciences 2018;24(2):109-114
Artemisia capillaris Thunb. (Compositae) is a native herb of East Asian countries and has used for the treatment of jaundice, high liver fever, and digestive diseases for a long time, as well as being developed as the source of herbal preparations until now. The major components from A. capillaris were chlorogenic acid (1) and its derivatives substituted with caffeoyl moieties, such as 3,5-dicaffeoylquinic acid (2) and 4,5-dicaffeoylquinic acid (3), and coumarins, such as scoparone. In the study, four compounds, chlorogenic acid, 3,5-dicaffeoylquinic acid, 4,5-dicaffeoylquinic acid and scoparone (4) in the 70% ethanolic extract of A. capillaris were simultaneously determined by using HPLC-UVD system. This method was validated with the terms of linearity, precious and accuracy according to ICH guidelines. The developed method was successfully applied for the quantitative analysis of Artemisia genus, A. capillaris, A. iwayomogi, A. princeps, and A. argyi, distributed in Korea.
Artemisia
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Asian Continental Ancestry Group
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Chlorogenic Acid
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Coumarins
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Ethanol
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Fever
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Humans
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Jaundice
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Korea
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Liver
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Methods
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Plant Preparations
3.Introduction of the Korea BioData Station (K-BDS) for sharing biological data
Byungwook LEE ; Seungwoo HWANG ; Pan-Gyu KIM ; Gunwhan KO ; Kiwon JANG ; Sangok KIM ; Jong-Hwan KIM ; Jongbum JEON ; Hyerin KIM ; Jaeeun JUNG ; Byoung-Ha YOON ; Iksu BYEON ; Insu JANG ; Wangho SONG ; Jinhyuk CHOI ; Seon-Young KIM
Genomics & Informatics 2023;21(1):e12-
A wave of new technologies has created opportunities for the cost-effective generation of high-throughput profiles of biological systems, foreshadowing a "data-driven science" era. The large variety of data available from biological research is also a rich resource that can be used for innovative endeavors. However, we are facing considerable challenges in big data deposition, integration, and translation due to the complexity of biological data and its production at unprecedented exponential rates. To address these problems, in 2020, the Korean government officially announced a national strategy to collect and manage the biological data produced through national R&D fund allocations and provide the collected data to researchers. To this end, the Korea Bioinformation Center (KOBIC) developed a new biological data repository, the Korea BioData Station (K-BDS), for sharing data from individual researchers and research programs to create a data-driven biological study environment. The K-BDS is dedicated to providing free open access to a suite of featured data resources in support of worldwide activities in both academia and industry.