1.Strengthening the reporting of observational studies in epidemiology using Mendelian randomization (STROBE-MR): a Korean translation of explanation and elaboration
Veronika W. SKRIVANKOVA ; Rebecca C. RICHMOND ; Benjamin A. R. WOOLF ; Neil M. DAVIES ; Sonja A. SWANSON ; Tyler J. VANDERWEELE ; Nicholas J. TIMPSON ; Julian P. T. HIGGINS ; Niki DIMOU ; Claudia LANGENBERG ; Elizabeth W. LODER ; Robert M. GOLUB ; Matthias EGGER ; George Davey SMITH ; Jeremy Brent RICHARDS
The Ewha Medical Journal 2025;48(4):e68-
멘델 무작위화(Mendelian randomization, MR) 연구는 조절 가능한 노출(modifiable exposure)이 건강결과에 미치는 인과효과(causal effect)를 더 잘 이해하게 해 주지만, 그 근거는 종종 보고가 불충분함으로 인하여연구 결과의 해석과 적용에 한계가 있을 수 있다. 보고지침은 흔히 무슨 연구를 하고 무엇을 발견했는지 독자가 쉽게 이해하도록 돕는다. STROBE-MR(관찰연구의 멘델 무작위화를 활용한 보고지침)은 MR 연구를 명확하고 투명하게 보고하도록 돕는다. STROBE-MR을 논문 작성에 활용하면 독자, 심사자, 학술지 편집인이 MR 연구의 보고 품질과 완성도를 평가하는 데 도움이 될 것이다. 이 글은 STROBE-MR 체크리스트 20개 항목의 의미와 근거를 설명하고, 각 항목마다 사례를 제시해 독자가 잘 이해할 수 있는 논문 작성법을 설명하려고 하였다.
2.Identification of arylamine N-acetyltransferase inhibitors as an approach towards novel anti-tuberculars.
Isaac M WESTWOOD ; Sanjib BHAKTA ; Angela J RUSSELL ; Elizabeth FULLAM ; Matthew C ANDERTON ; Akane KAWAMURA ; Andrew W MULVANEY ; Richard J VICKERS ; Veemal BHOWRUTH ; Gurdyal S BESRA ; Ajit LALVANI ; Stephen G DAVIES ; Edith SIM
Protein & Cell 2010;1(1):82-95
New anti-tubercular drugs and drug targets are urgently needed to reduce the time for treatment and also to identify agents that will be effective against Mycobacterium tuberculosis persisting intracellularly. Mycobacteria have a unique cell wall. Deletion of the gene for arylamine N-acetyltransferase (NAT) decreases mycobacterial cell wall lipids, particularly the distinctive mycolates, and also increases antibiotic susceptibility and killing within macrophage of Mycobacterium bovis BCG. The nat gene and its associated gene cluster are almost identical in sequence in M. bovis BCG and M. tuberculosis. The gene cluster is essential for intracellular survival of mycobacteria. We have therefore used pure NAT protein for high-throughput screening to identify several classes of small molecules that inhibit NAT activity. Here, we characterize one class of such molecules-triazoles-in relation to its effects on the target enzyme and on both M. bovis BCG and M. tuberculosis. The most potent triazole mimics the effects of deletion of the nat gene on growth, lipid disruption and intracellular survival. We also present the structure-activity relationship between NAT inhibition and effects on mycobacterial growth, and use ligand-protein analysis to give further insight into the structure-activity relationships. We conclude that screening a chemical library with NAT protein yields compounds that have high potential as anti-tubercular agents and that the inhibitors will allow further exploration of the biochemical pathway in which NAT is involved.
Antitubercular Agents
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chemistry
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isolation & purification
;
pharmacology
;
Arylamine N-Acetyltransferase
;
antagonists & inhibitors
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chemistry
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Enzyme Inhibitors
;
chemistry
;
isolation & purification
;
pharmacology
;
High-Throughput Screening Assays
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Humans
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Mycobacterium bovis
;
drug effects
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enzymology
;
genetics
;
Mycobacterium tuberculosis
;
drug effects
;
enzymology
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genetics
;
Protein Conformation
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Structure-Activity Relationship
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Triazoles
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chemistry
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isolation & purification
;
pharmacology
3.Simultaneous Pancreas-Kidney Transplantation: Overview of the Ohio State Experience.
Elmahdi A ELKHAMMAS ; Mitchell L HENRY ; Ronald M FERGUSON ; Ginny L BUMGARDNER ; Ronald P PELLETIER ; Amer RAJAB ; Elizabeth A DAVIES
Yonsei Medical Journal 2004;45(6):1095-1100
No abstract available.
Humans
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Immunosuppression
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*Kidney Transplantation/methods
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*Pancreas Transplantation/methods
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Patient Selection
;
Treatment Outcome

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