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Higgins, B.

Publications and source records attributed to Higgins, B..

3 recordsLinked to original sources

Regulatory T cell stability determines the efficiency of bile duct regeneration during cholangitis.

Background and AimsCholangiopathies such as Primary Sclerosing Cholangitis (PSC) cause damage to the bile ducts and fibrosis with no effective cure. A reduction and impairment in the function of regulatory T cells (Tregs) occurs in PSC. Yet, it is currently unknown what consequence this has on bile duct regeneration. We investigate whether Tregs regulate bile duct regeneration and the dynamics of Tregs turnover during bile duct injury. Approach and ResultsWe used the transgenic Foxp3GFPDTR model to mimic reduced Tregs infiltration to the liver during bile duct injury and showed that reduced intrahepatic Tregs limits bile duct regeneration. Fate mapping of Tregs (Foxp3CreERTAi14) showed that Tregs acquire a pro-inflammatory phenotype within the inflammatory microenvironment, even after IL2 mediated Tregs expansion. Ox40L expression correlates with fibrosis in PSC patients. In the 3,5-Diethoxycarbonyl-1,4-Dihydrocollidine (DDC)-diet mouse model of experimental cholangiopathy, combining IL2-complex administration and blocking Ox40L decreases periportal fibrosis level, increases Treg number and reduces the pro-inflammatory phenotype of Tregs. ConclusionsThese results indicate that Tregs mediate cholangiocyte response to biliary injury, and Tregs downregulate Foxp3 and acquire an inflammatory phenotype in an inflammatory microenvironment. Enhancing Treg numbers through IL2 complex administration and blocking Ox40 signalling simultaneously suppress the inflammatory phenotype of Tregs and reduces bile duct damage and fibrosis.

immunology↗

Mitochondrial DNA mutations in human oocytes undergo frequency-dependent selection but do not increase with age

Mitochondria, cellular powerhouses, harbor DNA (mtDNA) inherited from the mothers. MtDNA mutations can cause diseases, yet whether they increase with age in human germline cells--oocytes--remains understudied. Here, using highly accurate duplex sequencing of full-length mtDNA, we detected de novo mutations in single oocytes, blood, and saliva in women between 20 and 42 years of age. We found that, with age, mutations increased in blood and saliva but not in oocytes. In oocytes, mutations with high allele frequencies ([&ge;]1%) were less prevalent in coding than non-coding regions, whereas mutations with low allele frequencies (<1%) were more uniformly distributed along mtDNA, suggesting frequency-dependent purifying selection. In somatic tissues, mutations caused elevated amino acid changes in protein-coding regions, suggesting positive or destructive selection. Thus, mtDNA in human oocytes is protected against accumulation of mutations having functional consequences and with aging. These findings are particularly timely as humans tend to reproduce later in life. Graphical abstract O_FIG O_LINKSMALLFIG WIDTH=200 HEIGHT=200 SRC="FIGDIR/small/627454v1_ufig1.gif" ALT="Figure 1"> View larger version (40K): org.highwire.dtl.DTLVardef@18242f6org.highwire.dtl.DTLVardef@fa5a97org.highwire.dtl.DTLVardef@51a452org.highwire.dtl.DTLVardef@1fb2374_HPS_FORMAT_FIGEXP M_FIG C_FIG

genomics↗

Kynurenine monooxygenase blockade reduces endometriosis-like lesions, improves visceral hyperalgia, and rescues mice from a negative behavioural phenotype in experimental endometriosis

Endometriosis is a common and debilitating neuro-inflammatory disorder that is associated with chronic pain. Definitive diagnosis is based on the presence of endometrial-like tissue (lesions) in sites outside the uterus. Kynurenine monooxygenase (KMO) is a mitochondrial enzyme of tryptophan metabolism that regulates inflammation and immunity. Here, we show that KMO is expressed in epithelial cells in human endometriosis tissue lesions and in corresponding lesions in a mouse model of endometriosis. In mice, oral treatment with the potent KMO inhibitor KNS898 induced a biochemical state of KMO blockade with accumulation of kynurenine, diversion to kynurenic acid and ablation of 3-hydroxykynurenine production. In the mouse model of endometriosis, KMO inhibition improved histological outcomes and endometriosis pain-like behaviours, even when KNS898 treatment commenced one week after initiation of lesions. Taken together, these results suggest that KMO blockade is a promising new non-hormonal therapeutic modality for endometriosis.

pathology↗