A single cell can determine whether a cancer patient relapses or a torn muscle heals—and researchers are building a centre to hunt down those rare cells and design therapies around them. The problem is that the human body contains trillions of cells, and most therapies cannot distinguish between the harmless majority and the dangerous few. Circulating tumour cells (CTCs) that seed drug-resistant lung cancers, and stem cells that regenerate damaged muscle, joints, skin and blood vessels, are both vanishingly rare. Current technology cannot reliably isolate, characterise and target them. The University of Manchester will establish a Single Cell Research Centre (SCRC) that creates an integrated pipeline: from clinical sample receipt, through identification of single target cells, to design of treatments that hit those cells specifically. Within three to five years, the team expects to obtain and verify cellular “signatures” that form the basis for new precision therapies. If successful, this could transform treatment for degenerative conditions and untreatable cancers—diseases that are growing rapidly in prevalence. The work is fundamental cell biology with a direct therapeutic goal: turning single-cell analysis into a practical tool for personalised medicine.
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The human body contains trillions of cells of many different lineages and functions, yet all are descended from the same fertilised embryo. Understanding their similarities and differences (cell 'heterogeneity') is a huge barrier to the design of all therapies that need to target particular rare cells within the body. There is an increasing need to analyse the basis of how varying groups of cells arise, as well as the set of characteristics (biomarkers) that mark them out as being different. This may be due to stable changes, or dynamic changes in these cells that lead to repeatedly fluctuating cell characteristics. It is important to understand when and whether each of these possible situations applies. This requires new technical advances that can better analyse these cells to show the basis of this variation and to identify, characterise and manipulate important groups of cells that underly disease processes. We focus on characterising a group of rare cells (called circulating tumour cells, or CTCs) that give rise to drug-resistant cancers such as certain lung cancers and lead to relapse, and specific stem cells (cells with the potential to self-renew or differentiate) that can enable the regeneration of damaged tissues such as muscle, joints, skin and blood vessels. To achieve a 'step-advance' in our ability to design therapies that can specifically target such specific 'progenitor' cell populations, we will establish a ground-breaking Single Cell Research Centre (SCRC) at the University of Manchester. Exploiting and innovating in the very latest single cell technologies, it will comprise a common integrated pipeline from receipt of clinical samples, to identification and characterisation of single target cells within each sample, to the design of treatments that target these specific cells. In this way, it will expedite progress to cell-based and 'personalised' treatments for some of the most challenging diseases and degenerative conditions of man. Our vision for SCRC is that, within the first 3-5 years, the cellular 'signatures' will have been obtained and verified that will form the basis for potent new 'precision' therapies. The establishment of SCRC is thus particularly timely, given the rapidly growing numbers of people with degenerative conditions and untreatable cancers.
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