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C Stubberfield

Publications and source records attributed to C Stubberfield.

3 recordsLinked to original sources

Identification and Validation of Novel Combinatorial Genetic Risk Factors for Endometriosis across Multiple UK and US Patient Cohorts.

BACKGROUND: Endometriosis affects about 10% of women usually of reproductive age. It often has severe negative impacts on patients' quality of life, but the average time to a definitive diagnosis remains 7-9 years, and there are few effective therapeutic options. Relatively little is known about the genetic drivers of the disease even though its heritability is fairly high. A recent large genome wide association study (GWAS) meta-analysis identified 42 genomic loci associated with risk of endometriosis, but together these explain only 5% of disease variance. METHODS: We used the PrecisionLife&#xae; combinatorial analytics platform to identify multi-SNP disease signatures significantly associated with endometriosis in a white European UK Biobank (UKB) cohort. We assessed the reproducibility of these multi-SNP disease signatures as well as 35 of the 42 meta-GWAS SNPs in a multi-ancestry American endometriosis cohort from All of Us (AoU) after controlling for population structure. RESULTS: We identified 1,709 disease signatures, comprising 2,957 unique SNPs in combinations of 2-5 SNPs, that were associated with increased prevalence of endometriosis in UKB. Pathways enriched in the disease signatures included cell adhesion, proliferation and migration, cytoskeleton remodeling, angiogenesis as well as biological processes involved in fibrosis and neuropathic pain.We observed a significant enrichment of these signatures (58-88%, p<0.04) that are also positively associated with endometriosis in the AoU cohort, including one 2-SNP signature that is individually significant. Reproducibility rates were greatest for higher frequency signatures, ranging from 80-88% for signatures with greater than 9% frequency (p<0.01) in AoU. Encouragingly, the disease signatures also show high reproducibility rates in non-white European AoU sub-cohorts (66-76%, p<0.04 for signatures with greater than 4% frequency).A total of 195 unique SNPs mapping to 98 genes were identified in the high frequency reproducing signatures (>9%). Of these, 7 genes were previously identified in the endometriosis meta-GWAS study and 16 genes have a previous association with endometriosis. 75 novel genes were identified in this study.We characterized 9 novel genes that occur at the highest frequency in reproducing signatures and that do not contain any SNPs linked to known GWAS genes, providing new evidence for links between endometriosis and autophagy and macrophage biology. Reproducibility rates, ranging between 73% to 85%. are especially strong for the signatures that contain these 9 genes independently of any SNPs mapping to the meta-GWAS genes. CONCLUSION: Although using much smaller, less well-characterized datasets than the previous whole genome meta-GWAS study, combinatorial analysis has provided important new insights into the genetics and biology of endometriosis including reproducible biologically relevant genes that are overlooked by GWAS approaches.The 75 novel gene associations provide new insights and routes for study of the disease and potential new therapies. Several of the novel genes identified are credible targets for drug discovery, repurposing and/or repositioning. Using the disease signatures identified as genetic biomarkers in trials of candidates drugs targeting specific mechanisms will enable precision medicine-based approaches. We hope this will encourage new targeted therapy discovery efforts.

Endometriosis

T-lymphocyte responses to Pneumocystis carinii in healthy and HIV-positive individuals.

Pneumocystis carinii pneumonia (PCP) is a well-recognized cause of morbidity in patients with impaired T-cell function. In this study of cellular immunity to P. carinii, peripheral blood mononuclear cells from 25 HIV antibody-positive (HIV+) patients and 11 healthy individuals were stimulated in vitro with P. carinii antigen. The responding T-cell blasts were cocultured with autologous P. carinii antigen-pulsed macrophages to measure P. carinii-specific cytolytic T-lymphocyte activity (CTL). T-cell blasts from two healthy donors were used to generate P. carinii-specific clones by limiting dilution. T cells from HIV+ patients proliferated less to P. carinii antigen than T cells from healthy volunteers. In contrast, the level of specific cytotoxicity was identical in all groups when equal numbers of CTLs were used. Within the group of symptomatic patients, CTL activity was higher in those with a history of PCP (p = 0.033). Pneumocystis carinii antigen-specific T-cell clones proved to be CD4+ and MHC class II restricted; six of eight clones tested showed P. carinii-specific cytolytic activity. Cell-mediated immune response to P. carinii in healthy individuals include CD4+, class II MHC-restricted T cells with P. carinii-specific cytotoxicity. There is an increasing loss of P. carinii-specific proliferative responses in HIV+ patients as disease progresses, but a cytotoxic response is still detected in the absence of proliferation.

Adolescent

In-vitro interaction of human macrophages with Pneumocystis carinii.

Pneumocystis carinii is an important opportunistic pathogen in patients with compromised cell-mediated immunity. T-cell and macrophage function are believed to be of prime importance in defence against this organism. The present ultrastructural study is aimed at the analysis of the interaction between human macrophages and P. carinii in vitro. Adherent peripheral blood mononuclear cells from healthy volunteers were exposed in vitro to Pneumocystis derived from lungs of steroid-treated rats. The macrophages were harvested at different intervals and studied by transmission and scanning electron microscopy. The material used for inoculation of macrophages was of identical morphology to previously described P. carinii. When mixed with Pneumocystis in vitro, the macrophages appeared to move towards the organism, extended pseudopods and ingested trophozoites and cysts. Within 24 h, intracellular Pneumocystis underwent progressive degeneration inside macrophage vacuoles. This study highlights the possible role of macrophages in host defence against P. carinii.

Animals