Publications by authors named "Bozec L"

Squamous cell carcinomas of the oral cavity in young adults represent a heterogeneous entity. New prognostic biomarkers are described in the literature. The aim of this review was to identify emerging biomarkers and prognostic stratification factors of young population.

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  • Chronic lung disease of prematurity, known as bronchopulmonary dysplasia (BPD), currently lacks effective treatments, highlighting the need for preclinical testing methods that accurately mimic human lungs to identify causes and test new drugs.
  • The study explored how the presence of mesenchymal cells and simulated fetal lung movements contribute to the formation of alveolar organoids from human pluripotent stem cells, testing various co-culture methods and mechanical deformation.
  • Results showed that mesenchymal progenitor cells enhance differentiation of alveolar epithelial type 2 cells in the organoids, and that mimicking fetal respiratory movements further boosts this differentiation process.
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Ehlers-Danlos syndromes (EDS) represent a group of rare genetic disorders affecting connective tissues. Globally, approximately 1.5 million individuals suffer from EDS, with 10,000 reported cases in Canada alone.

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Purpose: Physiological and erosive wear reported in clinical studies were reviewed, and in vitro aging models were developed to simulate and compare the effect of aging on human teeth with the review data obtained from clinical studies.

Methods: A review of clinical studies and randomized clinical trials that quantify enamel wear was performed in the PubMed database. The first in vitro analysis evaluated the effect of mechanical chewing simulation only.

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Purpose: The study of cell-free DNA (cfDNA) enables sequential analysis of tumor cell-specific genetic alterations in patients with neuroblastoma.

Experimental Design: Eighteen patients with relapsing neuroblastoma having received lorlatinib, a third-generation ALK inhibitor, were identified (SACHA national registry and/or in the institution). cfDNA was analyzed at relapse for nine patients and sequentially for five patients (blood/bone marrow plasma) by performing whole-genome sequencing library construction followed by ALK-targeted ddPCR of the hotspot mutations [F1174L, R1275Q, and I1170N; variant allele fraction (VAF) detection limit 0.

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Background: A standard treatment for fit, older patients with recurrent or metastatic head and neck squamous cell carcinoma (HNSCC) is yet to be established. In the previous EXTREME trial, few older patients were included. We aimed to evaluate the efficacy and tolerance of an adapted EXTREME regimen in fit, older patients with recurrent or metastatic HNSCC.

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Background: Perivascular epithelioid cell neoplasms (PEComas) encompass a heterogeneous family of mesenchymal tumors. Previously described clinicopathologic features aimed at distinguishing benign from malignant variants but lacked prognostic value.

Methods: This retrospective analysis examined clinicopathologic data from patients who had localized PEComa across French Sarcoma Network centers.

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Background: At present, there is no established standard treatment for frail older patients with recurrent or metastatic head and neck squamous cell carcinoma. We aimed to compare the efficacy and safety of cetuximab to those of methotrexate (the reference regimen) in this population.

Methods: This randomised, open-label, phase 3 trial was done at 20 hospitals in France.

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Objective: Uterine sarcomas are rare tumors with a poor prognosis. Their diagnosis is often incidental, following surgery. Our goal was to examine the early management strategies for uterine sarcomas, and to assess the impact of guideline adherence and expert center referral on both the management approaches and the clinical outcomes in patients with uterine sarcomas.

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  • Type I collagen is a crucial component of the extracellular matrix, providing strength and stability to various tissues like tendons, bones, and skin.
  • The study presents a new method that uses Fast Fourier Transform (FFT) and Atomic Force Microscopy (AFM) to analyze collagen fibril morphology at the nanoscale, enhancing our understanding of collagen-related diseases.
  • Findings from examining collagen in Ehlers Danlos Syndrome (EDS) revealed significant morphological differences, suggesting that this approach can aid in diagnosing connective tissue disorders.
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Background: SMARCB1, also known as INI1, is a member of a large protein complex involved in chromatin remodeling and thus the regulation of gene expression. It is located on chromosome 22q11.2.

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  • The skin is the body's largest organ, crucial for protection against environmental threats, and undergoes changes due to intrinsic and extrinsic factors as we age, impacting its function and appearance.
  • Advanced techniques like Atomic Force Microscopy (AFM) allow for detailed analysis of dermal collagen structure across different age groups and body areas, providing insight into skin health and aging.
  • The study utilized quantitative nanohistology to assess collagen's structural markers and performed extensive nanoindentation, revealing distinct differences in dermal collagen based on age and anatomical site, aiding in understanding biological aging.
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Maximizing the safe removal of hexavalent chromium (Cr) from waste streams is an increasing demand due to the environmental, economic and health benefits. The integrated adsorption and bio-reduction method can be applied for the elimination of the highly toxic Cr and its detoxification. This work describes a synthetic method for achieving the best chemical composition of spherical and flower-like manganese ferrite (MnFeO) nanostructures (NS) for Cr adsorption.

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The adhesion of initial colonizers such as to collagen is critical for dentinal and root caries progression. One of the most described pathological and aging-associated changes in collagen-including dentinal collagen-is the generation of advanced glycation end-products (AGEs) such as methylglyoxal (MGO)-derived AGEs. Despite previous reports suggesting that AGEs alter bacterial adhesion to collagen, the biophysics driving oral streptococcal attachment to MGO-modified collagen remains largely understudied.

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  • The study examines how different aging methods impact the optical and crystalline properties of high-translucency zirconia.
  • Thirty-six zirconia specimens were tested under no treatment, hydrothermal aging, and clinically related aging, with various analyses conducted to determine effects on translucency and structure.
  • Results showed that while hydrothermal aging influenced the crystalline structure of HT-zirconia, clinically related aging primarily affected optical properties, with no significant changes in translucency or surface roughness observed.
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The structural and functional properties of collagen are modulated by the presence of intramolecular and intermolecular crosslinks. Advanced Glycation End-products (AGEs) can produce intermolecular crosslinks by bonding the free amino groups of neighbouring proteins. In this research, the following hypothesis is explored: The accumulation of AGEs in collagen decreases its proteolytic degradation rates while increasing its stiffness.

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The aim of the current work is twofold: to demonstrate the application of in situ non-invasive imaging by portable atomic force microscopy (AFM) on the surfaces of a violin and to integrate compositional and mechanical analysis at the nano scale level on model samples of varnished wood. These samples were prepared according to traditional recipes by an Italian lute-maker family well practised in the art. Samples of oil and spirit-based varnishes on maple wood, naturally and accelerated light aged, were studied.

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Background: To analyze the outcomes of patients with brain metastases (BM) from non-small cell lung cancer (NSCLC) treated with immunotherapy (IT) and stereotactic radiotherapy (SRT) and to study the impact of the sequence between the two modalities.

Methods: The authors reviewed the records of 51 patients with 84 BM from NSCLC treated at Institut Curie with IT and SRT. BM were categorized into three groups: 'SRT before IT', 'concurrent SRT and IT', and 'SRT after IT.

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The biophysical microenvironment of the cell is being increasingly used to control cell signaling and to direct cell function. Herein, engineered 3D tuneable biomimetic scaffolds are used to control the cell microenvironment of Adipose-derived Mesenchymal Stromal Cells (AMSC), which exhibit a collagen density-specific profile for early and late stage bone cell lineage status. Cell potency was enhanced when AMSCs were cultured within low collagen density environments in hypoxic conditions.

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Background: The early identification of children who have experienced adversity is critical for the timely delivery of interventions to improve coping and reduce negative consequences. Self-report is the usual practice for identifying children with exposure to adversity. However, physiological characteristics that signal the presence of disease or other exposures may provide a more objective identification strategy.

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Background: As a result of progress in diagnosis and treatment, there is a growing prevalence of metastatic breast cancer (MBC) with isolated CNS metastases. This study describes the largest-to-date real-life cohort of this clinical setting and compares it to other clinical presentations.

Methods: We retrospectively analysed the French Epidemiological Strategy and Medical Economics (ESME) MBC database including patients who initiated treatment for MBC between 2008 and 2016.

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Methylglyoxal (MGO) is an important molecule derived from glucose metabolism with the capacity of attaching to collagen and generating advanced glycation end products (AGEs), which accumulate in tissues over time and are associated with aging and diseases. However, the accumulation of MGO-derived AGEs in dentin and their effect on the nanomechanical properties of dentinal collagen remain unknown. Thus, the aim of the present study was to quantify MGO-based AGEs in the organic matrix of human dentin as a function of age and associate these changes with alterations in the nanomechanical and ultrastructural properties of dentinal collagen.

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Within the oral cavity, dental biofilms experience dynamic environments, in part due to changes in dietary content, frequency of intake and health conditions. This can impact bacterial diversity and morpho-mechanical properties. While phenotypic properties of oral biofilms are closely related to their composition, these can readily change according to dynamic variations in the growth environment and nutrient availability.

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The Curie Institute exclusively cares for cancer patients, who were considered particularly "vulnerable" from the start of the SARS-CoV 2 pandemic. This pandemic, which took the medical world by surprise, suddenly required the Institute's hospital to undergo rapid and multimodal restructuring, while having an impact on everyone to varying degrees. We will examine here how this hospital has coped, with the concern for a new benefit-risk balance, in times of greater medical uncertainty and scarcity of certain resources, for these "vulnerable" patients but also for their relatives and staff.

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