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"Smith, Kayleigh"
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Identity leadership and adherence to COVID-19 safety guidance in hospital settings
2024
COVID-19 presents unique and complex challenges to the Scottish National Health Service (NHS). As COVID-19 preventative measures are effective at reducing disease spread, promoting staff adherence in high-risk workplaces is vital. The present research explored the role of identity leadership on (a) staff’s appraisals of leadership and (b) staff’s adherence to and attitudes towards COVID-19 guidance. Semi-structured interviews ( N = 25) were conducted with NHS staff across two Scottish hospitals. Using Reflexive Thematic Analysis, two over-arching themes were generated: leadership presence and approachable leadership who act on group concerns, where both created positive appraisals of leadership and were seen to facilitate adherence. Guidance from present leaders was perceived as both practical and applicable. Approachable leaders were viewed to facilitate information sharing, clarify guidance, and allow staff to raise concerns. Leaders who were seen to act on group concerns provided resources or updated guidance to promote adherence. The present study provides theoretical and practical advancements to (a) expand the known role of identity leadership in promoting safety in workplaces and (b) facilitate routes for adherence to safety guidance beyond COVID-19.
Journal Article
Comprehensive analysis of differentially expressed miRNAs in hepatocellular carcinoma: Prognostic, predictive significance and pathway insights
by
Smith, Kayleigh
,
Balazs, Gyorffy
,
Silva, Roger
in
Analysis
,
Biology and life sciences
,
Care and treatment
2024
Robust prognostic and predictive factors for hepatocellular carcinoma, a leading cause of cancer-related deaths worldwide, have not yet been identified. Previous studies have identified potential HCC determinants such as genetic mutations, epigenetic alterations, and pathway dysregulation. However, the clinical significance of these molecular alterations remains elusive. MicroRNAs are major regulators of protein expression. MiRNA functions are frequently altered in cancer. In this study, we aimed to explore the prognostic value of differentially expressed miRNAs in HCC, to elucidate their associated pathways and their impact on treatment response. To this aim, bioinformatics techniques and clinical dataset analyses were employed to identify differentially expressed miRNAs in HCC compared to normal hepatic tissue. We validated known associations and identified a novel miRNA signature with potential prognostic significance. Our comprehensive analysis identified new miRNA-targeted pathways and showed that some of these protein coding genes predict HCC patients’ response to the tyrosine kinase inhibitor sorafenib.
Journal Article
Model for MLL translocations in therapy-related leukemia involving topoisomerase IIβ-mediated DNA strand breaks and gene proximity
by
Smith, Kayleigh
,
Austin, Caroline A.
,
Lee, Ka Cheong
in
Biological Sciences
,
Cell lines
,
Cell nucleus
2012
Topoisomerase poisons such as the epipodophyllotoxin etoposide are widely used effective cytotoxic anticancer agents. However, they are associated with the development of therapy-related acute myeloid leukemias (t-AMLs), which display characteristic balanced chromosome translocations, most often involving the mixed lineage leukemia (MLL) locus at 11q23. MLL translocation breakpoints in t-AMLs cluster in a DNase I hypersensitive region, which possesses cryptic promoter activity, implicating transcription as well as topoisomerase II activity in the translocation mechanism. We find that 2-3% of MLL alleles undergoing transcription do so in close proximity to one of its recurrent translocation partner genes, AF9 or AF4, consistent with their sharing transcription factories. We show that most etoposide-induced chromosome breaks in the MLL locus and the overall genotoxicity of etoposide are dependent on topoisomerase IIβ, but that topoisomerase lia and -β occupancy and etoposide-induced DNA cleavage data suggest factors other than local topoisomerase II concentration determine specific clustering of MLL translocation breakpoints in t-AML. We propose a model where DNA double-strand breaks (DSBs) introduced by topoisomerase IIβ into pairs of genes undergoing transcription within a common transcription factory become stabilized by antitopoisomerase II drugs such as etoposide, providing the opportunity for illegitimate end joining and translocation.
Journal Article
Genome-wide ChIP-seq analysis of human TOP2B occupancy in MCF7 breast cancer epithelial cells
by
Smith, Kayleigh
,
Austin, Caroline A.
,
Manville, Catriona M.
in
17β-Estradiol
,
Axon guidance
,
Axonogenesis
2015
We report the whole genome ChIP seq for human TOP2B from MCF7 cells. Using three different peak calling methods, regions of binding were identified in the presence or absence of the nuclear hormone estradiol, as TOP2B has been reported to play a role in ligand-induced transcription. TOP2B peaks were found across the whole genome, 50% of the peaks fell either within a gene or within 5 kb of a transcription start site. TOP2B peaks coincident with gene promoters were less frequently associated with epigenetic features marking active promoters in estradiol treated than in untreated cells. Significantly enriched transcription factor motifs within the DNA sequences underlying the peaks were identified. These included SP1, KLF4, TFAP2A, MYF, REST, CTCF, ESR1 and ESR2. Gene ontology analysis of genes associated with TOP2B peaks found neuronal development terms including axonogenesis and axon guidance were significantly enriched. In the absence of functional TOP2B there are errors in axon guidance in the zebrafish eye. Specific heparin sulphate structures are involved in retinal axon targeting. The glycosaminoglycan biosynthesis–heparin sulphate/heparin pathway is significantly enriched in the TOP2B gene ontology analysis, suggesting changes in this pathway in the absence of TOP2B may cause the axon guidance faults.
Journal Article
Model for MLL translocations in therapy-related leukemia involving topoisomerase IIBeta-mediated DNA strand breaks and gene proximity
by
Smith, Kayleigh
,
Lee, Ka Cheong
,
Rance, Holly Ashlene
in
Chromosomes
,
Deoxyribonucleic acid
,
Genes
2012
Topoisomerase poisons such as the epipodophyllotoxin etoposide are widely used effective cytotoxic anticancer agents. However, they are associated with the development of therapy-related acute myeloid leukemias (t-AMLs), which display characteristic balanced chromosome translocations, most often involving the mixed lineage leukemia (MLL) locus at 11q23. MLL translocation breakpoints in t-AMLs cluster in a DNase I hypersensitive region, which possesses cryptic promoter activity, implicating transcription as well as topoisomerase II activity in the translocation mechanism. We find that 2-3% of MLL alleles undergoing transcription do so in close proximity to one of its recurrent translocation partner genes, AF9 or AF4, consistent with their sharing transcription factories. We show that most etoposide-induced chromosome breaks in the MLL locus and the overall genotoxicity of etoposide are dependent on topoisomerase IIβ, but that topoisomerase IIα and -β occupancy and etoposide-induced DNA cleavage data suggest factors other than local topoisomerase II concentration determine specific clustering of MLL translocation breakpoints in t-AML. We propose a model where DNA double-strand breaks (DSBs) introduced by topoisomerase IIβ into pairs of genes undergoing transcription within a common transcription factory become stabilized by antitopoisomerase II drugs such as etoposide, providing the opportunity for illegitimate end joining and translocation. [PUBLICATION ABSTRACT]
Journal Article
WRIGHT GLOBAL GRAPHICS: SAILING FAR WITH CONTINUOUS IMPROVEMENT STRATEGIES
2016
Trade Publication Article