Publications by authors named "Regnier C"

Article Synopsis
  • ANV419 Development
  • : ANV419 is a novel fusion protein that combines IL-2 with an antibody to specifically activate certain immune cells while minimizing side effects commonly seen with traditional IL-2, like aldesleukin.
  • Selective Immune Response
  • : The fusion protein preferentially boosts the population of CD8 T cells and natural killer (NK) cells, demonstrating strong anti-tumor effects and improved tolerance levels in clinical testing, especially in mouse models.
  • Clinical Potential
  • : With a favorable half-life and manageable dosing, ANV419 is being tested in Phase 1/2 clinical trials for treating various cancers, potentially offering patients a safer and more effective alternative to existing IL-
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Osteoporosis is a skeletal disease characterized by low bone density and altered microarchitecture, exposing to bone fragility and an increased risk of fracture. Several therapeutic modalities can effectively reduce the risk of fractures both vertebral and non-vertebral. While a significant part of bone strength and structure is genetically determined, it should be recalled that the environment also plays a significant role in these parameters and the risk of fracture, thus offering preventive opportunities thanks to lifestyle.

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Bulk analysis of renal allograft biopsies (rBx) identified RNA transcripts associated with acute cellular rejection (ACR); however, these lacked cellular context critical to mechanistic understanding of how rejection occurs despite immunosuppression (IS). We performed combined single-cell RNA transcriptomic and TCR-α/β sequencing on rBx from patients with ACR under differing IS drugs: tacrolimus, iscalimab, and belatacept. We found distinct CD8+ T cell phenotypes (e.

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Objectives: In our study, we explored the specific subgroup of patients with rheumatoid arthritis (RA) suffering from obstructive lung disease (OLD) and its impact on morbi-mortality.

Methods: Our retrospective study included 309 patients suffering from RA with either obstructive (O-RA) or non-obstructive patterns (non-O-RA). OLD was defined based on the Tiffeneau index at the first available pulmonary functional test (PFT).

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Bulk analysis of renal allograft biopsies (rBx) identified RNA transcripts associated with acute cellular rejection (ACR); however, these lacked cellular context critical to mechanistic understanding. We performed combined single cell RNA transcriptomic and TCRα/β sequencing on rBx from patients with ACR under differing immunosuppression (IS): tacrolimus, iscalimab, and belatacept. TCR analysis revealed a highly restricted CD8 T cell clonal expansion (CD8 ), independent of HLA mismatch or IS type.

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Background And Objective: Rheumatoid arthritis associated-interstitial lung disease (RA-ILD) is the most common pulmonary manifestation of rheumatoid arthritis (RA) and an important cause of mortality. In patients suffering from interstitial lung diseases (ILD) from different etiologies (including RA-ILD), a significant proportion is exhibiting a fibrotic progression despite immunosuppressive therapies, defined as progressive fibrosing interstitial lung disease (PF-ILD). Here, we report the frequency of RA-ILD and PF-ILD in all RA patients' cohort at University Hospital of Liège and compare their characteristics and outcomes.

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We developed a bioinformatics-led substrate discovery workflow to expand the known substrate repertoire of MALT1. Our approach, termed GO-2-Substrates, integrates protein function information, including GO terms from known substrates, with protein sequences to rank substrate candidates by similarity. We applied GO-2-Substrates to MALT1, a paracaspase and master regulator of NF-κB signalling in adaptive immune responses.

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This research compared patient and physician perceptions of quality of life (QoL) in C0-4 chronic venous disease (CVD). Qualitative standardized phone interviews were conducted with 100 patients and 60 specialists from Brazil, China, the Czech Republic, Italy and Russia. In addition to the impact of physical symptoms on QoL, patient interviews revealed a high aesthetic and emotional burden of C0-4 CVD that contributes to social isolation and affects relationships.

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MALT1 plays a central role in immune cell activation by transducing NF-κB signaling, and its proteolytic activity represents a key node for therapeutic intervention. Two cycles of scaffold morphing of a high-throughput biochemical screening hit resulted in the discovery of MLT-231, which enabled the successful pharmacological validation of MALT1 allosteric inhibition in preclinical models of humoral immune responses and B-cell lymphomas. Herein, we report the structural activity relationships (SARs) and analysis of the physicochemical properties of a pyrazolopyrimidine-derived compound series.

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The paracaspase MALT1 has gained increasing interest as a target for the treatment of subsets of lymphomas as well as autoimmune diseases, and there is a need for suitable compounds to explore the therapeutic potential of this target. Here, we report the optimization of the potency of pyrazolopyrimidines, a class of highly selective allosteric MALT1 inhibitors. High doses of the initial lead compound led to tumor stasis in an activated B-cell-like (ABC) diffuse large B-cell lymphoma (DLBCL) xenograft model, but this compound suffered from a short half-life and suboptimal potency in whole blood.

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This international study assessed the characteristics and treatment of individuals with hemorrhoids. Online survey among nationally representative populations of adults from Brazil, Czech Republic, France, Hungary, Italy, Romania, Russia and Spain, that identified participants who self-reported having hemorrhoidal disease. Hemorrhoid prevalence was 11% (1725/16015); most respondents had low-severity disease (71%).

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This study assessed the characteristics of individuals with chronic venous disease (CVD) and their treatment pathways. A web-based survey enrolled representative populations of adults from Brazil, Czech Republic, France, Hungary, Italy, Romania, Russia and Spain, and identified those self-reporting CVD. A total of 22% of respondents had signs/symptoms of CVD.

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Objective: Fcγ receptors (FcγR) play important roles in both protective and pathogenic immune responses. The assembly of the CBM signalosome encompassing caspase recruitment domain-containing protein 9, B cell CLL/lymphoma 10, and mucosa-associated lymphoid tissue lymphoma translocation protein 1 (MALT-1) is required for optimal FcγR-induced canonical NF-κB activation and proinflammatory cytokine release. This study was undertaken to clarify the relevance of MALT-1 protease activity in FcγR-driven events and evaluate the therapeutic potential of selective MALT-1 protease inhibitors in FcγR-mediated diseases.

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Starting from a weak screening hit, potent and selective inhibitors of the MALT1 protease function were elaborated. Advanced compounds displayed high potency in biochemical and cellular assays. Compounds showed activity in a mechanistic Jurkat T cell activation assay as well as in the B-cell lymphoma line OCI-Ly3, which suggests potential use of MALT1 inhibitors in the treatment of autoimmune diseases as well as B-cell lymphomas with a dysregulated NF-κB pathway.

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Mucosa-associated lymphoid tissue lymphoma translocation protein 1 (MALT1) is essential for immune responses triggered by antigen receptors but the contribution of its paracaspase activity is not fully understood. Here, we studied how MALT1 proteolytic function regulates T-cell activation and fate after engagement of the T-cell receptor pathway. We show that MLT-827, a potent and selective MALT1 paracaspase inhibitor, does not prevent the initial phase of T-cell activation, in contrast to the pan-protein kinase C inhibitor AEB071.

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The paracaspase MALT1 has arginine-directed proteolytic activity triggered by engagement of immune receptors. Recruitment of MALT1 into activation complexes is required for MALT1 proteolytic function. Here, co-expression of MALT1 in HEK293 cells, either with activated CARD11 and BCL10 or with TRAF6, was used to explore the mechanism of MALT1 activation at the molecular level.

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Interleukin-2 (IL-2) immunotherapy is an attractive approach in treating advanced cancer. However, by binding to its IL-2 receptor α (CD25) subunit, IL-2 exerts unwanted effects, including stimulation of immunosuppressive regulatory T cells (T) and contribution to vascular leak syndrome. We used a rational approach to develop a monoclonal antibody to human IL-2, termed NARA1, which acts as a high-affinity CD25 mimic, thereby minimizing association of IL-2 with CD25.

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Antigen receptor signalling activates the canonical NF-κB pathway via the CARD11/BCL10/MALT1 (CBM) signalosome involving key, yet ill-defined roles for linear ubiquitination. The paracaspase MALT1 cleaves and removes negative checkpoint proteins, amplifying lymphocyte responses in NF-κB activation and in B-cell lymphoma subtypes. To identify new human MALT1 substrates, we compare B cells from the only known living MALT1(mut/mut) patient with healthy MALT1(+/mut) family members using 10-plex Tandem Mass Tag TAILS N-terminal peptide proteomics.

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Article Synopsis
  • The IUCN Red List reports 832 species extinct since 1600, but this is a small percentage of overall biodiversity, particularly since most invertebrates remain data deficient.
  • A study on Hawaiian land snails (Amastridae) evaluated 325 species and found that 88 were extinct and 15 were still living, while 179 lacked sufficient evidence but likely are extinct.
  • The research indicated a rising extinction rate for amastrid snails over time, estimating an average of about 5% per decade since the mid-1800s, highlighting the vulnerability of oceanic island species to extinction.
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Article Synopsis
  • Many believe we're facing a massive extinction crisis, but only a tiny fraction (0.04%) of known species have been officially recorded as extinct since the 1980s, leading to skepticism about the crisis' severity.
  • The low extinction figure largely arises because most invertebrates, which make up a significant part of biodiversity, haven't been properly evaluated.
  • New research suggests that around 7% of species on Earth, equivalent to about 130,000 extinctions, may have already occurred, emphasizing the need to include invertebrates in extinction assessments for a clearer understanding of biodiversity loss.
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The paracaspase MALT1 plays an important role in immune receptor-driven signaling pathways leading to NF-κB activation. MALT1 promotes signaling by acting as a scaffold, recruiting downstream signaling proteins, as well as by proteolytic cleavage of multiple substrates. However, the relative contributions of these two different activities to T and B cell function are not well understood.

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Background: The JAK-STAT pathway is an important signaling pathway downstream of multiple cytokine and growth factor receptors. Dysregulated JAK-STAT signaling has been implicated in the pathogenesis of multiple human malignancies.

Objective: Given this pivotal role of JAK-STAT dysregulation, it is important to identify patients with an overactive JAK-STAT pathway for possible treatment with JAK inhibitors.

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Janus kinase (JAK) inhibitors are being developed for the treatment of rheumatoid arthritis, psoriasis, myeloproliferative neoplasms, and leukemias. Most of these drugs target the ATP-binding pocket and stabilize the active conformation of the JAK kinases. This type I binding mode can lead to an increase in JAK activation loop phosphorylation, despite blockade of kinase function.

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We detected clonal mosaicism for large chromosomal anomalies (duplications, deletions and uniparental disomy) using SNP microarray data from over 50,000 subjects recruited for genome-wide association studies. This detection method requires a relatively high frequency of cells with the same abnormal karyotype (>5-10%; presumably of clonal origin) in the presence of normal cells. The frequency of detectable clonal mosaicism in peripheral blood is low (<0.

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