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result(s) for
"Équipe Ingénierie pour les sciences du vivant (LAAS-ELIA)"
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Macromolecular crowding limits growth under pressure
by
Équipe Ingénierie pour les sciences du vivant (LAAS-ELIA)
,
Holt, Liam, J
,
Formosa-Dague, Cécile
in
142/126
,
631/326
,
Atomic
2022
Cells that grow in confined spaces eventually build up mechanical compressive stress. This growth-induced pressure (GIP) decreases cell growth. GIP is important in a multitude of contexts from cancer, to microbial infections, to biofouling, yet our understanding of its origin and molecular consequences remains limited. Here, we combine microfluidic confinement of the yeast Saccharomyces cerevisiae , with rheological measurements using genetically encoded multimeric nanoparticles (GEMs) to reveal that growth-induced pressure is accompanied with an increase in a key cellular physical property: macromolecular crowding. We develop a fully calibrated model that predicts how increased macromolecular crowding hinders protein expression and thus diminishes cell growth. This model is sufficient to explain the coupling of growth rate to pressure without the need for specific molecular sensors or signaling cascades. As molecular crowding is similar across all domains of life, this could be a deeply conserved mechanism of biomechanical feedback that allows environmental sensing originating from the fundamental physical properties of cells.
Journal Article
Isolation of adipose stromal cells from blood using a two-step microfluidic platform ASCfinder
by
Équipe Ingénierie pour les sciences du vivant (LAAS-ELIA)
,
Baz, Mohammad-H.
,
Laboratoire d'analyse et d'architecture des systèmes (LAAS)
in
631/1647/2230
,
631/1647/277
,
639/166/985
2025
Mesenchymal stromal cells (MSCs) hold significant promise for their therapeutic potential and their possible role as disease biomarkers. While evidence suggests the presence of circulating Adipose-derived MSC (ASC) in peripheral blood (PB), isolating them is particularly challenging due to their low abundance, size variability, and incomplete characterization of their native immunophenotype in PB. Consequently, the relationship between ASC frequency in blood and various physiological or pathological conditions has been underexplored. In this study, we introduce ASC-Finder, a label-free isolation method specifically designed for adipose stromal cells (ASCs), a key MSC population. ASC-Finder integrates two independent modules: a size-dependent hydrodynamic filtration unit for sorting erythrocytes directly from PB and a negative enrichment module based on immunological markers to deplete remaining leukocytes. The device enabled removal of 99.98% of erythrocytes while achieving high recovery rates of spiked ASCs (> 81%) at rare-event concentrations (< 100 ASC/mL blood). Remarkably, ASC-Finder operates without clogging, even after multiple runs with donor blood samples. Crucially, our method bypasses the need for harsh lysis, centrifugation, or dilution buffers, preserving both cell integrity and phenotype—key factors for the discovery of novel cellular events. This work represents a significant advancement in the direct enrichment of circulating ASCs from whole PB without cell lysis, offering a crucial step toward investigating the characterization and role of blood-circulating ASCs.
Journal Article
Impact of down-stream processing on functional properties of yeasts and the implications on gut health of Atlantic salmon (Salmo salar)
by
Horn, Svein Jarle
,
Laboratoire d'analyse et d'architecture des systèmes (LAAS)
,
Pontificia Universidad Católica de Valparaíso (PUCV)
in
631/1647/2204/1262
,
631/1647/664/1257
,
631/1647/664/1467
2021
Yeasts are becoming popular as novel ingredients in fish feeds because of their potential to support better growth and concomitantly ensure good fish health. Here, three species of yeasts ( Cyberlindnera jadinii , Blastobotrys adeninivorans and Wickerhamomyces anomalus ), grown on wood sugars and hydrolysates of chicken were subjected to two down-stream processes, either direct heat-inactivation or autolysis, and the feed potential of the resulting yeast preparations was assessed through a feeding trial with Atlantic salmon fry. Histological examination of distal intestine based on widening of lamina propria, showed that autolyzed W. anomalus was effective in alleviating mild intestinal enteritis, while only limited effects were observed for other yeasts. Our results showed that the functionality of yeast in counteracting intestinal enteritis in Atlantic salmon was dependent on both the type of yeast and the down-stream processing method, and demonstrated that C. jadinii and W. anomalus have promising effects on gut health of Atlantic salmon.
Journal Article
Pili and other surface proteins influence the structure and the nanomechanical properties of Lactococcus lactis biofilms
by
Lafforgue, Christine
,
Équipe Ingénierie pour les sciences du vivant (LAAS-ELIA)
,
INSA
in
631/326/46
,
631/57/2282
,
Atomic force microscopy
2021
Lactic acid bacteria, in particular Lactococcus lactis, are widely used in the food industry, for the control and/or the protection of the manufacturing processes of fermented food. While L. lactis has been reported to form compact and uniform biofilms it was recently shown that certain strains able to display pili at their surface form more complex biofilms exhibiting heterogeneous and aerial structures. As the impact of those biofilm structures on the biomechanical properties of the biofilms is poorly understood, these were investigated using AFM force spectroscopy and imaging. Three types of strains were used i.e., a control strain devoid of pili and surface mucus-binding protein, a strain displaying pili but no mucus-binding proteins and a strain displaying both pili and a mucus-binding protein. To identify potential correlations between the nanomechanical measurements and the biofilm architecture, 24-h old biofilms were characterized by confocal laser scanning microscopy. Globally the strains devoid of pili displayed smoother and stiffer biofilms (Young Modulus of 4-100 kPa) than those of piliated strains (Young Modulus around 0.04-0.1 kPa). Additional display of a mucus-binding protein did not affect the biofilm stiffness but made the biofilm smoother and more compact. Finally, we demonstrated the role of pili in the biofilm cohesiveness by monitoring the homotypic adhesion of bacteria to the biofilm surface. These results will help to understand the role of pili and mucus-binding proteins withstanding external forces.
Journal Article
FabR, a regulator of membrane lipid homeostasis, is involved in Klebsiella pneumoniae biofilm robustness
by
Balestrino, Damien
,
Laboratoire d'analyse et d'architecture des systèmes (LAAS)
,
Unité de Glycobiologie Structurale et Fonctionnelle - UMR 8576 (UGSF)
in
Aggregates
,
Antibiotic resistance
,
Antibiotics
2024
Biofilm is a dynamic structure from which individual bacteria and microaggregates are released to subsequently colonize new niches by either detachment or dispersal. Screening of a transposon mutant library identified genes associated with the alteration of Klebsiella pneumoniae biofilm including fabR, which encodes a transcrip tional regulator involved in membrane lipid homeostasis. An isogenic ∆fabR mutant formed more biofilm than the wild-type (WT) strain and its trans-complemented strain. The thick and round aggregates observed with ∆fabR were resistant to extensive washes, unlike those of the WT strain. Confocal microscopy and BioFlux microfluidic observa tions showed that fabR deletion was associated with biofilm robustness and impaired erosion over time. The genes fabB and yqfA associated with fatty acid metabolism were significantly overexpressed in the ∆fabR strain, in both planktonic and biofilm conditions. Two monounsaturated fatty acids, palmitoleic acid (C16:1) and oleic acid (C18:1), were found in higher proportion in biofilm cells than in planktonic forms, whereas heptadece noic acid (C17:1) and octadecanoic acid, 11-methoxy (C18:0-OCH3) were found in higher proportion in the planktonic lifestyle. The fabR mutation induced variations in the fatty acid composition, with no clear differences in the amounts of saturated fatty acids (SFA) and unsaturated fatty acids for the planktonic lifestyle but lower SFA in the biofilm form. Atomic force microscopy showed that deletion of fabR is associated with decreased K. pneumoniae cell rigidity in the biofilm lifestyle, as well as a softer, more elastic biofilm with increased cell cohesion compared to the wild-type strain.
Journal Article
Extracellular Matrix Mechanical Properties and Regulation of the Intestinal Stem Cells: When Mechanics Control Fate
2020
Intestinal stem cells (ISC) are crucial players in colon epithelium physiology. The accurate control of their auto-renewal, proliferation and differentiation capacities provides a constant flow of regeneration, maintaining the epithelial intestinal barrier integrity. Under stress conditions, colon epithelium homeostasis in disrupted, evolving towards pathologies such as inflammatory bowel diseases or colorectal cancer. A specific environment, namely the ISC niche constituted by the surrounding mesenchymal stem cells, the factors they secrete and the extracellular matrix (ECM), tightly controls ISC homeostasis. Colon ECM exerts physical constraint on the enclosed stem cells through peculiar topography, stiffness and deformability. However, little is known on the molecular and cellular events involved in ECM regulation of the ISC phenotype and fate. To address this question, combining accurately reproduced colon ECM mechanical parameters to primary ISC cultures such as organoids is an appropriated approach. Here, we review colon ECM physical properties at physiological and pathological states and their bioengineered in vitro reproduction applications to ISC studies.
Journal Article
Colon Fibroblasts and Inflammation: Sparring Partners in Colorectal Cancer Initiation?
by
Équipe Ingénierie pour les sciences du vivant (LAAS-ELIA)
,
Laboratoire d'analyse et d'architecture des systèmes (LAAS)
,
Malaquin, Laurent
in
Cancer
,
Cell differentiation
,
Cell proliferation
2021
Colorectal cancer (CRC) is the third most common cause of cancer-related death. Significant improvements in CRC treatment have been made for the last 20 years, on one hand thanks to a better detection, allowing surgical resection of the incriminated area, and on the other hand, thanks to a better knowledge of CRC’s development allowing the improvement of drug strategies. Despite this crucial progress, CRC remains a public health issue. The current model for CRC initiation and progression is based on accumulation of sequential known genetic mutations in the colon epithelial cells’ genome leading to a loss of control over proliferation and survival. However, increasing evidence reveals that CRC initiation is more complex. Indeed, chronic inflammatory contexts, such as inflammatory bowel diseases, have been shown to increase the risk for CRC development in mice and humans. In this manuscript, we review whether colon fibroblasts can go from the main regulators of the ISC homeostasis, regulating not only the renewal process but also the epithelial cells’ differentiation occurring along the colon crypt, to the main player in the initiation of the colorectal cancer process due to chronic inflammation.
Journal Article
Development and Use of a Monoclonal Antibody Specific for the Candida albicans Cell-Surface Protein Hwp1
by
Dague, Etienne
,
Martin-Yken, Hélène
,
Coleman, David A.
in
adhesion
,
Adhesives
,
Antibodies, Monoclonal
2022
The Candida albicans cell-surface protein Hwp1 functions in adhesion to the host and in biofilm formation. A peptide from the Gln-Pro-rich adhesive domain of Hwp1 was used to raise monoclonal antibody (MAb) 2-E8. MAb 2-E8 specificity for Hwp1 was demonstrated using a hwp1/hwp1 C. albicans isolate and strains that expressed at least one HWP1 allele. Immunofluorescence and atomic force microscopy experiments using MAb 2-E8 confirmed C. albicans germ-tube-specific detection of the Hwp1 protein. MAb 2-E8 also immunolabeled the tips of some Candida dubliniensis germ tubes grown under conditions that maximized HWP1 expression. The phylogeny of HWP1 and closely related genes suggested that the Gln-Pro-rich adhesive domain was unique to C. albicans and C. dubliniensis focusing the utility of MAb 2-E8 on these species. This new reagent can be used to address unanswered questions about Hwp1 and its interactions with other proteins in the context of C. albicans biology and pathogenesis.
Journal Article
Differential homotypic and heterotypic interactions of antigen 43 (Ag43) variants in autotransporter-mediated bacterial autoaggregation
2019
Antigen 43 (Ag43) is a cell-surface exposed protein of Escherichia coli secreted by the Type V, subtype a, secretion system (T5aSS) and belonging to the family of self-associating autotransporters (SAATs). These modular proteins, comprising a cleavable N-terminal signal peptide, a surface-exposed central passenger and an outer membrane C-terminal translocator, self-recognise in a Velcro-like handshake mechanism. A phylogenetic network analysis focusing on the passenger revealed for the first time that they actually distribute into four distinct classes, namely C1, C2, C3 and C4. Structural alignment and modelling analyses demonstrated these classes arose from shuffling of two different subdomains within the Ag43 passengers. Functional analyses revealed that homotypic interactions occur for all Ag43 classes but significant differences in the sedimentation kinetics and aggregation state were present when Ag43 C3 was expressed. In contrast, heterotypic interaction occurred in a very limited number of cases. Single cell-force spectroscopy demonstrated the importance of specific as well as nonspecific interactions in mediating Ag43-Ag43 recognition. We propose that structural differences in the subdomains of the Ag43 classes account for different autoaggregation dynamics and propensities to co-interact.
Journal Article
A new methodology for sub‐femtomolar detection of organic molecules through the combination of surface‐enhanced Raman spectroscopy and a superhydrophobic fluidic concentrator
by
Doucet, Jean Baptiste
,
Équipe Ingénierie pour les sciences du vivant (LAAS-ELIA)
,
Louarn, Philippe
in
Biotechnology
,
Computer Science
,
Environmental Sciences
2025
A specific device that combines (1) surface‐enhanced Raman spectroscopy (SERS) and (2) superhydrophobic surfaces is developed to detect traces of analytes diluted at sub‐femtomolar concentration in water solutions. The first step of the analysis consists in the evaporation of a drop of the solution on the device, designed to concentrate all the analytes on a central functionalized small area (80 µm diameter). This analytical zone is covered with Ag nanoparticles dedicated to enhance Raman signals. In a second step, this zone is scanned pixel by pixel to accumulate around 2200 Raman spectra. The third step is an algorithmic analysis of the pile of spectra to identify Raman peaks that are specific to the targeted molecules. We detail an original analysis method that allows (1) to select spectra that are significantly different from those obtained when a pure solvent is evaporated (control experiment), (2) to classify the spectra by a criterion of similarity and, finally, (3) to select the SERS spectra of the analytes. This method uses hierarchical correlation clustering techniques, the originality being to classify the different spectra on the basis of their peak positions, with all peaks being normalized at the same intensity and bandwidth. The method leads to a convincing identification of spectra of the targeted molecules (i.e. rhodamine B), down to atto‐molar concentrations.
Journal Article