Publications by authors named "Giraud G"

Robust preclinical models of asymmetric ventricular loading in late gestation reflecting conditions such as hypoplastic left heart syndrome are lacking. We characterized the morphometry and microvascular function of the hypoplastic left ventricle (LV) and remaining right ventricle (RV) in a sham-controlled late gestation fetal lamb model of impaired left ventricular inflow (ILVI). Singleton fetuses were instrumented at ∼120 days gestational age (dGA; term is ∼147 days) with vascular catheters, an aortic flow probe and a deflated left atrial balloon.

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  • The liver contains diverse populations of monocytes and macrophages, including liver-resident macrophages called Kupffer cells (KCs).
  • This text outlines a protocol for isolating KCs from human liver tissue removed during surgeries, detailing steps for tissue dissociation and cell separation.
  • It also includes instructions for validating the isolation process through immunofluorescence to confirm the presence of KCs by detecting the CD163 marker.
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Chronic hepatitis B virus infection is a major health burden worldwide. Although efficient in maintaining the infection under control, current treatments are unable to fully eradicate the virus due to the persistence of its minichromosome, the so-called cccDNA. In the context of emerging antiviral and combinatorial therapies aiming at decreasing the cccDNA pool or at silencing its transcriptional activity, the detection and quantification of viral RNAs have gained increasing interest as a way to monitor the HBV reservoir.

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  • The ChiCaP study investigates the role of childhood cancer predisposition (ChiCaP) syndromes and how integrating germline whole-genome sequencing (gWGS) with tumor sequencing can improve diagnosis and treatment strategies for children with solid tumors.
  • Out of 309 children tested, 11% were diagnosed with ChiCaP syndromes, often missed before, showing significant diagnostic yield especially in certain cancers like retinoblastomas and high-grade astrocytomas.
  • The findings underscore the importance of combining systematic phenotyping and genomic diagnostics, as it enables personalized care and tailored treatment recommendations for a substantial number of affected patients.
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Background & Aims: Transcription termination fine-tunes gene expression and contributes to the specification of RNA function in eukaryotic cells. Transcription termination of HBV is subject to the recognition of the canonical polyadenylation signal (cPAS) common to all viral transcripts. However, the regulation of this cPAS and its impact on viral gene expression and replication is currently unknown.

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Medulloblastomas comprise a molecularly diverse set of malignant pediatric brain tumors in which patients are stratified according to different prognostic risk groups that span from very good to very poor. Metastasis at diagnosis is most often a marker of poor prognosis and the relapse incidence is higher in these children. Medulloblastoma relapse is almost always fatal and recurring cells have, apart from resistance to standard of care, acquired genetic and epigenetic changes that correlate with an increased dormancy state, cell state reprogramming and immune escape.

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  • - The study investigates how selgantolimod (SLGN), a toll-like receptor 8 agonist, affects immune cells in the liver to aid in curing chronic hepatitis B (CHB) through new therapy combinations.
  • - Researchers characterized the changes in liver immune cell activity and gene expression induced by SLGN, finding that it changes Kupffer cell (KC) markers and affects HBV virus entry into liver cells.
  • - The findings suggest that SLGN not only impacts existing HBV infections but also alters the immune environment in the liver, highlighting its potential as part of future treatment strategies for HBV.
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Chronic hepatitis B (CHB) virus infection is a major public health burden and the leading cause of hepatocellular carcinoma. Despite the efficacy of current treatments, hepatitis B virus (HBV) cannot be fully eradicated due to the persistence of its minichromosome, or covalently closed circular DNA (cccDNA). The HBV community is investing large human and financial resources to develop new therapeutic strategies that either silence or ideally degrade cccDNA, to cure HBV completely or functionally.

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  • Low-grade gliomas (LGGs) are the most common brain tumors in children, and they require molecular profiling for accurate diagnosis and treatment planning, making liquid biopsy tests crucial for early detection.
  • Researchers analyzed cerebrospinal fluid (CSF) and plasma samples from patients with pilocytic astrocytoma using advanced droplet digital PCR techniques to identify tumor-related genetic changes.
  • The study found circulating tumor DNA (ctDNA) in 5 out of 13 CSF samples, revealing important genetic variations, although most samples had low levels of cell-free DNA, indicating the need for improved analysis methods in understanding LGGs.
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Objective: The in utero no flow/no grow hypothesis postulates that reduced inflow of blood into the left ventricle due to a stenotic mitral valve could lead to ventricular hypoplasia and hypoplastic left heart syndrome. This has been demonstrated in chick embryos, but less so in large animals. We investigated the impact of mitral obstruction on left and right ventricular growth in fetal lambs.

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Phase separation regulates fundamental processes in gene expression and is mediated by the local concentration of proteins and nucleic acids, as well as nucleic acid secondary structures such as G-quadruplexes (G4s). These structures play fundamental roles in both host gene expression and in viral replication due to their peculiar localisation in regulatory sequences. Hepatitis B virus (HBV) covalently closed circular DNA (cccDNA) is an episomal minichromosome whose persistence is at the basis of chronic infection.

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Developmental programming of chronic adverse cardiovascular health outcomes has been studied both using numerous human populations and an array of animal models. However, the mechanisms that produce transgenerational effects have been difficult to study due to a lack of developmentally relevant models. As such, how increased disease risk is carried to the second generation has been poorly studied.

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This paper presents a conceptual model describing the medium and long term co-evolution of natural and socio-economic subsystems of Earth. An economy is viewed as an out-of-equilibrium dissipative structure that can only be maintained with a flow of energy and matter. The distinctive approach emphasized here consists in capturing the economic impact of natural ecosystems' depletion by human activities via a pinch of thermodynamic potentials.

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Hox genes encode Homeodomain-containing transcription factors, which specify segmental identities along the anterior-posterior axis. Functional changes in Hox genes have been directly implicated in the evolution of body plans across the metazoan lineage. The Hox protein Ultrabithorax (Ubx) is expressed and required in developing third thoracic (T3) segments in holometabolous insects studied so far, particularly, of the order Coleoptera, Lepidoptera and Diptera.

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Contraction of cardiomyocytes is initiated at subcellular elements called dyads, where L-type Ca channels in t-tubules are located within close proximity to ryanodine receptors in the sarcoplasmic reticulum. While evidence from small rodents indicates that dyads are assembled gradually in the developing heart, it is unclear how this process occurs in large mammals. We presently examined dyadic formation in fetal and newborn sheep (Ovis aries), and the regulation of this process by fetal cardiac workload.

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Unlabelled: Relapse is the leading cause of death in patients with medulloblastoma, the most common malignant pediatric brain tumor. A better understanding of the mechanisms underlying recurrence could lead to more effective therapies for targeting tumor relapses. Here, we observed that SOX9, a transcription factor and stem cell/glial fate marker, is limited to rare, quiescent cells in high-risk medulloblastoma with MYC amplification.

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Climate change impacts-including flooding, wildfires, and crop failures-are destroying ecosystems, homes, infrastructure, farms, and businesses. Regulators around the globe are paying increasing attention to what these events mean for banks and the financial system, with several attending not only to bank impacts from, but also bank contributions to, climate change. The European Central Bank, for example, is signaling to banks that they must plan and make their transition away from financing of fossil fuels-to respond not only to their own risks but also to the science pointing to the necessity of this transition for the planet and financial system.

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  • DDX5 and DDX17 are RNA helicases that play important roles in gene expression, particularly in regulating transcription and splicing, though their exact mechanisms are not fully known.
  • Analysis of human cells lacking DDX5 and DDX17 showed significant disruptions in splicing and 3' end processing of RNA.
  • The study suggests that DDX5 and DDX17 help form chromatin loops that connect specific gene regions to their promoters, influencing how RNA is spliced and processed.
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  • Treating a type of cancer called acute myeloid leukaemia (AML) usually involves a mix of medicines, but many patients can’t be cured because some medicine doesn’t work well for them.
  • In this study, doctors tested if adding a medicine called hydroxyurea could help the main treatment work better and keep patients safe.
  • The results were positive: every patient got better, and the treatment didn’t cause any unexpected problems, making it seem like a good option for helping people with this type of cancer.
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Contraception is increasingly used to control wild animal populations. However, as reproductive condition influences social interactions in primates, the absence of new offspring could influence the females' social integration. We studied two groups of wild macaques () including females recently sterilized in the Ubud Monkey Forest, Indonesia.

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Worldwide, primates, and humans increasingly share habitats and often enter in conflict when primates thrive in human-dominated environments, calling for special management measures. Reproductive control is increasingly used to manage population growth but very few monitoring data are available. Therefore, the efficiency and implications of such programs require a careful examination.

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Chromatin domains and loops are important elements of chromatin structure and dynamics, but much remains to be learned about their exact biological role and nature. Topological associated domains and functional loops are key to gene expression and hold the answer to many questions regarding developmental decisions and diseases. Here, we discuss new findings, which have linked chromatin conformation with development, differentiation and diseases and hypothesized on various models while integrating all recent findings on how chromatin architecture affects gene expression during development, evolution and disease.

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Developmental processes have to be robust but also flexible enough to respond to genetic and environmental variations. Different mechanisms have been described to explain the apparent antagonistic nature of developmental robustness and plasticity. Here, we present a "self-sufficient" molecular model to explain the development of a particular flight organ that is under the control of the Hox gene () in the fruit fly .

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This study aims at examining the consumers' preferences and drivers affecting the choice of quality-labelled food products, i.e., protected designation of origin (PDO) labelled cheese.

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