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Interleukin-17A production in Riemerella anatipestifer infection is independent to IL-23
Flores Rochelle(Flores Rochelle ),Fernandez Cherry(Fernandez Cherry ),Afrin Fahmida(Afrin Fahmida ),Cammayo Paula Leona(Cammayo Paula Leona ),Roy Anindita(Roy Anindita ),Min Wongi(Min Wongi ) 한국예방수의학회 2019 한국예방수의학회 학술대회자료집 Vol.2018 No.-
Rochelle Castillo,Khushboo Sheth,Alan Babigian,Christopher Scola 대한성형외과학회 2018 Archives of Plastic Surgery Vol.45 No.5
While the success or failure of carpal tunnel release ultimately depends on the interplay of a wide array of factors, a broad understanding of the normal anatomy of the carpal tunnel accompanied by awareness of the possible variations of the individual structures that make up its contents is crucial to optimizing surgical outcomes. While anatomic variants such as extension of the flexor digitorum muscle bellies have been described as a cause of primary carpal tunnel syndrome (CTS), there have been no reports depicting its association with recurrent CTS following initially successful carpal tunnel release, a finding with potentially significant prognostic implications that can aid in operative planning. In such cases where muscle extension is identified preoperatively, careful debulking of the muscle belly may be beneficial in improving long-term surgical outcomes.
Multi-level remodeling of transcriptional landscapes in aging and longevity
( Rochelle W. Lai ),( Ryan Lu ),( Prakroothi S. Danthi ),( Juan I. Bravo ),( Alexandre Goumba ),( Nirmal Kumar Sampathkumar ),( Berenice A. Benayoun ) 생화학분자생물학회(구 한국생화학분자생물학회) 2019 BMB Reports Vol.52 No.1
In multi-cellular organisms, the control of gene expression is key not only for development, but also for adult cellular homeostasis, and gene expression has been observed to be deregulated with aging. In this review, we discuss the current knowledge on the transcriptional alterations that have been described to occur with age in metazoans. First, we discuss age-related transcriptional changes in protein-coding genes, the expected functional impact of such changes, and how known pro-longevity interventions impact these changes. Second, we discuss the changes and impact of emerging aspects of transcription in aging, including age-related changes in splicing, lncRNAs and circRNAs. Third, we discuss the changes and potential impact of transcription of transposable elements with aging. Fourth, we highlight small ncRNAs and their potential impact on the regulation of aging phenotypes. Understanding the aging transcriptome will be key to identify important regulatory targets, and ultimately slow-down or reverse aging and extend healthy lifespan in humans. [BMB Reports 2019; 52(1): 86-108]