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Biology subjects

Hulley, P.

Publications and source records attributed to Hulley, P..

2 recordsLinked to original sources

High-dimensional mass cytometry reveals stemness state heterogeneity in pancreatic ductal adenocarcinoma

Stem-like cancer cells harbour high self-renewal capacity, exhibit enhanced tumourigenicity and have been associated with therapy resistance, metastasis and tumour relapse. Therefore, understanding the molecular features of stem-like cells is critical for targeting them effectively and improving treatment outcomes for cancer patients. Several markers have been used to isolate and study the putative stem-like cells of pancreatic ductal adenocarcinoma (PDAC), but the patterns of marker co-expression and overlap between identified individual subpopulations are yet to be comprehensively studied. Here we developed a mass cytometry antibody panel for simultaneous analysis of 33 stemness-associated markers at single-cell resolution. High-dimensional mass cytometry analysis of PDAC cell lines revealed molecularly heterogeneous stemness states and highlighted the role of genotype in determining the cell line-specific stemness signature. Stemness marker expression lie along a continuum in PDAC cell lines and patient samples indicative of stepwise phenotypic transitions. We also identified a subset of PDAC cells co-expressing high levels of Musashi-2, DCLK1 and CXCR4, and harbouring basal-like and EMT transcriptional programmes associated with highly plastic phenotype. This multiplexed analysis uncovers nuance and complexities of the stemness state in the PDAC.

cancer biology↗

Single nucleus and spatial transcriptomic profiling of human healthy hamstring tendon

The molecular and cellular basis of health in human tendons remains poorly understood. Amongst human tendons, the hamstrings are the least likely to be injured or degenerate, providing a prototypic healthy tendon reference. The aim of this study was to define the transcriptome and location of all cell types in healthy hamstring tendon. We profiled the transcriptomes of 10,533 nuclei from 4 healthy donors using single-nucleus RNA sequencing (snRNA-seq) and identified 12 distinct cell types. We confirmed the presence of two fibroblast cell types, endothelial cells, mural cells, and immune cells, and revealed the presence of cell types previously unreported for tendon sites, including different skeletal muscle cell types, satellite cells, adipocytes, and nerve cells, which are undefined nervous system cells. Location of these cell types within tendon was defined using spatial transcriptomics and imaging, and transcriptional networks and cell-cell interactions were identified. We demonstrate that fibroblasts have a high number of potential cell-cell interactions, are present throughout the whole tendon tissue, and play an important role in the production and organisation of extracellular matrix, thus confirming their role as key regulators of hamstring tendon tissue homeostasis. Overall, our findings highlight the highly complex cellular networks underpinning tendon function and underpins the importance of fibroblasts as key regulators of hamstring tendon tissue homeostasis.

cell biology↗